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Clasa a 7-a (Problemă)
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Control de lectura Capítulo I: Antes que nada… (Preguntas 1–50) 1. ¿Qué es una técnica de investigación? Respuesta: Procedimiento sistemático para recopilar y analizar información. 2. ¿Qué es un instrumento de investigación? Respuesta: Herramienta específica para recolectar y analizar datos. 3. Ejemplo de técnica de investigación. Respuesta: Encuesta. 4. Ejemplo de instrumento de investigación. Respuesta: Cuestionario. 5. ¿Qué diferencia hay entre técnica e instrumento? Respuesta: La técnica es el procedimiento; el instrumento es la herramienta. 6. ¿Qué diferencia hay entre método e instrumento? Respuesta: El método es el proceso completo; el instrumento es una parte de este. 7. ¿Para qué sirve un instrumento de investigación? Respuesta: Para recopilar datos precisos y confiables. 8. ¿Todos los instrumentos se validan? Respuesta: No, pero es recomendable. 9. ¿Qué es la validez de un instrumento? Respuesta: Capacidad para medir lo que se propone. 10. ¿Qué es la confiabilidad de un instrumento? Respuesta: Capacidad de obtener resultados consistentes. 11. ¿Qué es la validez de contenido? Respuesta: Cobertura adecuada del tema de estudio. 12. ¿Qué es la validez de criterio? Respuesta: Relación con otras medidas conocidas. 13. ¿Qué es la validez concurrente? Respuesta: Coincidencia con otros instrumentos similares. 14. ¿Qué es la validez predictiva? Respuesta: Capacidad para anticipar resultados futuros. 15. ¿Qué prueba mide confiabilidad? Respuesta: Prueba-retest. 16. ¿Qué tipo de análisis evalúa la estructura del instrumento? Respuesta: Análisis factorial. 17. ¿Qué diferencia hay entre instrumento cuantitativo y cualitativo? Respuesta: El cuantitativo mide en números; el cualitativo describe. 18. Ejemplo de instrumento cuantitativo. Respuesta: Escala de Likert. 19. Ejemplo de instrumento cualitativo. Respuesta: Entrevista abierta. 20. ¿Qué son los instrumentos mixtos? Respuesta: Combinan datos cuantitativos y cualitativos. 21. Ejemplo de instrumento mixto. Respuesta: Encuesta con preguntas cerradas y abiertas. 22. ¿Qué es la recolección de datos? Respuesta: Proceso de obtención de información. 23. Menciona una técnica de recolección de datos. Respuesta: Observación. 24. ¿Qué asegura la validez de un resultado? Respuesta: La precisión del instrumento. 25. ¿Qué asegura la confiabilidad de un resultado? Respuesta: La consistencia del instrumento. 26. ¿Qué técnica se basa en la percepción directa del investigador? Respuesta: Observación participante. 27. ¿Qué se usa para medir variables numéricas? Respuesta: Instrumentos cuantitativos. 28. ¿Qué permite una entrevista abierta? Respuesta: Ampliar las respuestas libremente. 29. ¿Cuál es el primer paso en el método científico? Respuesta: Identificación del problema. 30. ¿Qué garantiza que el instrumento mida igual en diferentes momentos? Respuesta: Confiabilidad. 31. ¿Qué tipo de instrumento se usa para comparar poblaciones? Respuesta: Cuestionario. 32. ¿Qué se necesita para aplicar bien un instrumento? Respuesta: Elegirlo adecuadamente según el objetivo. 33. ¿Qué puede incluir un instrumento? Respuesta: Escalas, fichas, pruebas. 34. ¿Qué hace el análisis estadístico en la validación? Respuesta: Evalúa la precisión y coherencia. 35. ¿Qué se busca con la recolección ética de datos? Respuesta: Respeto y confidencialidad. 36. ¿Qué implica la observación directa? Respuesta: Ver al sujeto en su entorno. 37. ¿Qué implica la observación indirecta? Respuesta: Uso de fotografías, grabaciones o planos. 38. ¿Qué se debe evitar en las preguntas del instrumento? Respuesta: Sesgo. 39. ¿Qué permite un instrumento validado? Respuesta: Resultados confiables. 40. ¿Qué garantiza la consistencia de los datos? Respuesta: Instrumentos estandarizados. 41. ¿Qué analiza el análisis de fiabilidad? Respuesta: La estabilidad de los resultados. 42. ¿Qué mide la validez de criterio? Respuesta: Relación con otros indicadores. 43. ¿Qué evalúa el análisis factorial? Respuesta: Coherencia entre los ítems. 44. ¿Qué significa que un instrumento sea fiable? Respuesta: Que da los mismos resultados en condiciones similares. 45. ¿Qué relación hay entre confiabilidad y validez? Respuesta: Ambas son necesarias para resultados útiles. 46. ¿Qué variable usan los instrumentos cuantitativos? Respuesta: Numéricas. 47. ¿Qué variable usan los instrumentos cualitativos? Respuesta: Narrativas o descriptivas. 48. ¿Qué tipo de instrumento es una prueba estandarizada? Respuesta: Cuantitativo. 49. ¿Qué diferencia hay entre validez concurrente y predictiva? Respuesta: La concurrente compara con otro instrumento; la predictiva anticipa resultados. 50. ¿Qué deben incluir los instrumentos mixtos? Respuesta: Elementos cualitativos y cuantitativos. ________________________________________ ¿Deseas que continúe con el siguiente bloque de 100 preguntas del Capítulo II (Técnicas de investigación) o prefieres ajustar el estilo, la cantidad o el formato? Tú dijiste: si continua para todos los bloques ChatGPT Plus Perfecto. Continuaremos con bloques de 100 preguntas y respuestas breves de control de lectura, basadas en el contenido del libro "Metodología de la investigación: Técnicas e instrumentos de investigación". ________________________________________ 📘 Capítulo II: Técnicas de investigación (Preguntas 51–150) 🔍 Observación (51–70) 51. ¿Qué es la técnica de observación? R: Método para registrar y analizar comportamientos en su entorno. 52. ¿En qué campos se utiliza la observación? R: Psicología, sociología, educación, antropología. 53. ¿Qué observa la técnica de observación? R: Conductas, actitudes, eventos. 54. ¿Qué tipos de observación existen? R: Participante y no participante. 55. ¿Qué implica la observación participante? R: El investigador se involucra en la actividad. 56. ¿Qué implica la observación no participante? R: El investigador no se involucra. 57. Ventaja de la observación directa. R: Recoge datos de primera mano. 58. ¿Qué sesgo puede tener la observación? R: Subjetividad del observador. 59. ¿Qué se recomienda para minimizar el sesgo? R: Técnicas rigurosas y sistemáticas. 60. ¿Es útil para actitudes y opiniones? R: Sí, porque observa comportamiento real. 🗳 Encuesta (71–90) 71. ¿Qué es una encuesta? R: Técnica para obtener información de un grupo. 72. ¿Cómo se aplican las encuestas? R: Cuestionarios presenciales, en línea o telefónicos. 73. ¿Qué tipo de datos recoge una encuesta? R: Cuantitativos o cualitativos. 74. ¿Cuál es el soporte común de una encuesta? R: Cuestionario. 75. ¿Qué requiere una encuesta cuantitativa? R: Datos numéricos y prueba de hipótesis. 76. ¿Qué debe tener el instrumento? R: Confiabilidad y validez. 77. ¿Cómo se procesan las preguntas abiertas? R: Se agrupan por categorías. 78. ¿Qué técnicas estadísticas se usan? R: Descriptiva e inferencial. 79. ¿Qué se recomienda para interpretar resultados? R: Tablas de frecuencia y gráficos. 80. ¿Qué ventajas tiene la encuesta? R: Rapidez, amplitud de muestra, análisis estadístico. 🗣 Entrevista (91–110) 91. ¿Qué es una entrevista? R: Técnica de interacción directa para recolectar datos. 92. ¿Cuántos tipos de entrevista hay? R: Estructurada, semiestructurada y no estructurada. 93. ¿Qué es una entrevista estructurada? R: Preguntas fijas en orden específico. 94. ¿Qué permite la entrevista no estructurada? R: Respuestas libres y espontáneas. 95. ¿Qué ventaja tiene la entrevista? R: Profundiza en opiniones. 96. ¿Qué sesgo puede haber en entrevistas? R: Subjetividad del entrevistador. 97. ¿Qué debe evitarse en una entrevista? R: Preguntas discriminatorias. 98. ¿Qué medio puede usarse para entrevistas? R: Teléfono, correo electrónico, plataformas online. 99. ¿Qué es una guía de entrevista? R: Documento con temas y preguntas clave. 100. ¿Qué papel tiene el entrevistador? R: Facilitar, escuchar y registrar sin sesgo. 📄 Análisis de documentos y discurso (111–130) 101. ¿Qué es el análisis documental? R: Revisión de textos escritos para obtener información. 102. ¿Qué documentos pueden analizarse? R: Informes, actas, libros, publicaciones. 103. ¿Qué aporta esta técnica? R: Evidencia histórica y comparativa. 104. ¿Qué se busca en el análisis? R: Patrones, coincidencias, contradicciones. 105. ¿Qué es el análisis de discurso? R: Estudio del lenguaje en contexto. 106. ¿Qué se analiza en el discurso? R: Palabras, significados, intenciones. 107. ¿Dónde se aplica esta técnica? R: Política, medios, educación, sociología. 108. ¿Qué método puede apoyar el análisis de discurso? R: Codificación temática. 109. ¿Qué debe evitarse en el análisis documental? R: Interpretación subjetiva. 110. ¿Cuál es una ventaja clave? R: Bajo costo y acceso a fuentes históricas. 🧪 Test, Historia de vida y Focus Group (131–150) 131. ¿Qué es un test? R: Prueba para evaluar habilidades o características. 132. ¿Qué tipo de test hay? R: Psicológicos, educativos, clínicos. 133. ¿Qué debe tener un buen test? R: Validez y confiabilidad. 134. ¿Qué es la historia de vida? R: Técnica cualitativa centrada en la experiencia personal. 135. ¿Qué recopila la historia de vida? R: Narración detallada de eventos significativos. 136. ¿Qué técnica la complementa? R: Entrevista. 137. ¿Qué permite el enfoque de historia de vida? R: Comprensión profunda del contexto. 138. ¿Qué es un grupo focal? R: Reunión de personas para discutir un tema. 139. ¿Cuántos tipos de focus group hay? R: Tradicional, en línea, mixto, doble, monógrafo. 140. ¿Qué función tiene el moderador? R: Guiar el diálogo sin influir en opiniones. 141. ¿Qué se hace con los resultados? R: Se graban, transcriben y analizan. 142. ¿Qué tipo de preguntas se usan? R: Abiertas. 143. ¿Para qué se usa un grupo focal? R: Conocer opiniones o reacciones sobre un tema. 144. ¿Qué ventaja tiene el focus group? R: Permite interacción y retroalimentación entre participantes. 145. ¿Qué debe evitarse en el grupo focal? R: Opiniones dominantes. 146. ¿Qué se debe definir antes del grupo focal? R: El problema de investigación. 147. ¿Cómo se elige a los participantes? R: Según criterios relacionados con el tema. 148. ¿Qué recursos se necesitan? R: Espacio, grabadora, guía, consentimiento. 149. ¿Qué tipo de análisis se aplica después? R: Análisis cualitativo del contenido. 150. ¿Qué permite conocer el grupo focal? R: Expectativas, percepciones y emociones del grupo. ________________________________________ ¿Deseas que continúe con el siguiente bloque (151–250) sobre el Capítulo III: Instrumentos de investigación? Puedo incluir cuestionario, rúbrica, fichas, escalas y más. Tú dijiste: si por su puesto ChatGPT Plus Perfecto. Aquí tienes el siguiente bloque: ________________________________________ 📘 Capítulo III: Instrumentos de investigación (Preguntas 151–250) 📝 Cuestionario (151–180) 151. ¿Qué es un cuestionario? R: Instrumento para recopilar información mediante preguntas. 152. ¿Para qué se usa el cuestionario? R: Recoger datos de una muestra o población. 153. ¿Qué debe tener un buen cuestionario? R: Preguntas claras, ordenadas y no sesgadas. 154. ¿Qué garantiza la confidencialidad? R: Protección de datos personales. 155. ¿Qué tipo de escalas se pueden usar en un cuestionario? R: Likert o diferencial semántico. 156. ¿Qué es un cuestionario dicotómico? R: Preguntas con dos opciones, como Sí/No. 157. ¿Qué es un cuestionario politómico? R: Preguntas con tres o más respuestas. 158. ¿Qué es una pregunta abierta? R: Pregunta sin respuestas predefinidas. 159. ¿Qué es una pregunta cerrada? R: Pregunta con opciones predeterminadas. 160. ¿Cuál es una ventaja del cuestionario? R: Permite recolectar datos de forma rápida. 161. ¿Qué limita un cuestionario cerrado? R: La profundidad de las respuestas. 162. ¿Cómo se aplica un cuestionario? R: En persona, por correo, en línea. 163. ¿Qué tipo de datos proporciona? R: Cuantitativos o cualitativos. 164. ¿Qué tipo de análisis requiere? R: Estadístico para los cuantitativos. 165. ¿Qué es una escala tipo Likert? R: Escala que mide el grado de acuerdo o frecuencia. 166. ¿Qué es una escala diferencial semántica? R: Escala que mide opiniones entre dos extremos. 167. ¿Qué debe evitar un cuestionario? R: Ambigüedad y doble sentido. 168. ¿Qué tipo de diseño debe tener? R: Coherente, lógico y temáticamente agrupado. 169. ¿Qué garantiza la validez del cuestionario? R: Que mida lo que debe medir. 170. ¿Qué asegura la confiabilidad? R: Resultados consistentes en diferentes momentos. 171. ¿Qué es un cuestionario de perfil? R: Recolecta información demográfica. 172. ¿Qué es un cuestionario de evaluación? R: Mide desempeño o progreso. 173. ¿Qué es un cuestionario de satisfacción? R: Evalúa percepción de usuarios o clientes. 174. ¿Qué se necesita para validar un cuestionario? R: Pruebas estadísticas y revisión de expertos. 175. ¿Qué es un cuestionario autoaplicado? R: Lo responde el participante sin ayuda. 176. ¿Qué tipo de escalas usa un cuestionario cuantitativo? R: Numéricas, como la escala Likert. 177. ¿Qué tipo de escalas usa un cualitativo? R: Preguntas abiertas o categóricas. 178. ¿Qué facilita la tabulación de datos? R: Preguntas cerradas. 179. ¿Qué mejora la profundidad del análisis? R: Preguntas abiertas. 180. ¿Qué se debe pilotar antes de aplicar? R: El cuestionario. ________________________________________ 📊 Rúbrica de evaluación (181–200) 181. ¿Qué es una rúbrica? R: Instrumento para evaluar con criterios definidos. 182. ¿Qué contiene una rúbrica? R: Categorías, niveles de logro y descripciones. 183. ¿Qué evalúa una rúbrica de desempeño? R: Calidad en la ejecución de una tarea. 184. ¿Qué evalúa una rúbrica de producto? R: El resultado final del trabajo. 185. ¿Qué evalúa una rúbrica de proceso? R: Los pasos seguidos para desarrollar una tarea. 186. ¿Qué evalúa una rúbrica de participación? R: Involucramiento en actividades grupales. 187. ¿Qué evalúa una rúbrica de habilidades? R: Capacidades como trabajo en equipo o creatividad. 188. ¿Cuál es una ventaja de la rúbrica? R: Claridad en los criterios de evaluación. 189. ¿Qué fomenta el uso de rúbricas? R: Transparencia y retroalimentación. 190. ¿Quién puede usar una rúbrica? R: Docentes, evaluadores o el propio estudiante. 191. ¿Qué debe evitarse en una rúbrica? R: Criterios vagos o subjetivos. 192. ¿Qué permite una rúbrica bien construida? R: Evaluación objetiva. 193. ¿Qué hace una rúbrica con los aprendizajes? R: Los evidencia y sistematiza. 194. ¿Qué relación tiene con la técnica de observación? R: Es un instrumento de esta técnica. 195. ¿Cómo deben ser los niveles de logro? R: Claros y diferenciados. 196. ¿Qué es un descriptor en una rúbrica? R: Definición específica de cada nivel. 197. ¿Qué se necesita para diseñar una rúbrica? R: Claridad de objetivos y criterios. 198. ¿Qué aporta una rúbrica al proceso de evaluación? R: Estandarización. 199. ¿Qué mejora en el estudiante una buena rúbrica? R: Comprensión de expectativas. 200. ¿Qué fortalece en el docente? R: Capacidad de evaluación justa. ________________________________________ En el siguiente bloque (251–350) incluiré: • Fichas de observación • Fichas de entrevista • Escalas de valoración • Pruebas objetivas • Fichas de análisis documental y de chequeo • Instrumentos mixtos ¿Continuamos con ese bloque ahora? Tú dijiste: continua ChatGPT Plus Perfecto. Continuamos con el siguiente bloque de 100 preguntas del Capítulo III: Instrumentos de investigación, ahora con los instrumentos restantes. ________________________________________ 📘 Capítulo III: Instrumentos de investigación (Preguntas 251–350) 👁 Ficha de observación (251–270) 251. ¿Qué es una ficha de observación? R: Instrumento para registrar comportamientos observados. 252. ¿Qué campos la utilizan? R: Educación, psicología, ciencias sociales. 253. ¿Qué se anota en la ficha? R: Comportamientos, fechas, contexto. 254. ¿Qué ventaja ofrece? R: Registro sistemático y objetivo. 255. ¿Qué puede limitar su efectividad? R: Mal diseño o sesgo del observador. 256. ¿Qué ayuda a reducir el sesgo? R: Categorías claras y criterios definidos. 257. ¿Qué tipo de ficha se usa para conducta? R: Ficha de observación de comportamiento. 258. ¿Qué ficha se usa en el aula? R: Ficha de desempeño o aprendizaje. 259. ¿Qué se observa en una ficha naturalista? R: Animales o personas en su entorno natural. 260. ¿Qué debe incluir una ficha? R: Fecha, hora, lugar, observación, observador. 🎙 Ficha de entrevista (271–290) 271. ¿Qué es una ficha de entrevista? R: Guía para registrar respuestas en una entrevista. 272. ¿Qué contiene? R: Datos del entrevistado, preguntas y respuestas. 273. ¿Qué tipos existen? R: Abierta, cerrada y semiestructurada. 274. ¿Qué garantiza su uso? R: Registro ordenado y coherente. 275. ¿Qué evita una ficha bien diseñada? R: Omisión o tergiversación de respuestas. 276. ¿Qué permite la ficha abierta? R: Respuestas libres y extensas. 277. ¿Qué exige la ficha estructurada? R: Preguntas fijas y respuestas codificadas. 278. ¿Qué se recomienda al aplicarla? R: Escuchar activamente y anotar con fidelidad. 279. ¿Qué instrumento acompaña esta ficha? R: Grabadora (opcional) para respaldo. 280. ¿Qué facilita el análisis posterior? R: Transcripción clara y segmentación por temas. 📁 Ficha de análisis de documentos (291–310) 291. ¿Qué es esta ficha? R: Herramienta para registrar información extraída de documentos. 292. ¿Qué documentos se pueden analizar? R: Informes, leyes, artículos, cartas. 293. ¿Qué datos se registran? R: Autor, fecha, tema, citas relevantes. 294. ¿Qué tipo de análisis se hace? R: Categorización temática y crítica. 295. ¿Qué ventaja tiene? R: Acceso a información histórica o institucional. 296. ¿Qué riesgo existe? R: Subjetividad en la interpretación. 297. ¿Qué tipo de fuente se recomienda? R: Confiable, actual y pertinente. 298. ¿Qué ayuda a validar el análisis? R: Triangulación con otros instrumentos. 299. ¿Qué debe evitarse? R: Inferencias sin fundamento. 300. ¿Qué mejora el rigor del análisis? R: Sistematización y codificación clara. 📈 Escala de valoración (311–330) 311. ¿Qué es una escala de valoración? R: Instrumento que mide el nivel de una variable. 312. ¿Qué tipo de respuestas tiene? R: Categorizadas (como "siempre, a veces, nunca"). 313. ¿Qué mide una escala tipo Likert? R: Frecuencia, acuerdo o intensidad. 314. ¿Qué ventaja tiene? R: Permite análisis cuantitativo de actitudes. 315. ¿Qué aspecto debe cuidar? R: Redacción clara y unidimensional de los ítems. 316. ¿Qué evita el uso de escalas numéricas? R: Ambigüedad en la interpretación. 317. ¿Qué permite una escala con 5 opciones? R: Neutralidad en la respuesta central. 318. ¿Qué se analiza con la escala? R: Tendencias y niveles de respuesta. 319. ¿Qué se requiere para su uso? R: Validación y confiabilidad estadística. 320. ¿Dónde se aplican comúnmente? R: Encuestas, evaluaciones educativas, psicología. 🧪 Prueba objetiva (331–340) 331. ¿Qué es una prueba objetiva? R: Instrumento con respuestas únicas correctas. 332. ¿Qué tipo de preguntas incluye? R: Opción múltiple, verdadero/falso, emparejamiento. 333. ¿Qué ventaja tiene? R: Facilita corrección automática. 334. ¿Qué se recomienda en su diseño? R: Claridad, precisión y nivel de dificultad adecuado. 335. ¿Qué mide esta prueba? R: Conocimientos específicos o habilidades. 336. ¿Qué evita una buena redacción? R: Ambigüedad y confusión en la respuesta. 337. ¿Qué se debe evitar en las opciones? R: Distractores poco plausibles. 338. ¿Qué se analiza después de aplicar? R: Resultados y patrones de error. 339. ¿Qué prueba puede validarla? R: Análisis de ítems. 340. ¿Qué fortalece su confiabilidad? R: Coherencia interna y revisión por pares. ✅ Ficha de comprobación (Check List) (341–345) 341. ¿Qué es una ficha de chequeo? R: Lista para marcar cumplimiento de aspectos observables. 342. ¿Qué se marca en ella? R: Presencia o ausencia de indicadores. 343. ¿Qué ventaja ofrece? R: Rapidez y claridad en la observación. 344. ¿Qué instrumento la usa? R: Observación directa o sistemática. 345. ¿Qué debe tener? R: Indicadores precisos y relevantes. ⚖️ Instrumentos mixtos (346–350) 346. ¿Qué son los instrumentos mixtos? R: Combinan preguntas cerradas y abiertas. 347. ¿Qué permiten analizar? R: Datos cuantitativos y cualitativos. 348. Ejemplo de instrumento mixto. R: Encuesta con escala Likert y preguntas abiertas. 349. ¿Qué ventaja tiene? R: Información más rica y contextualizada. 350. ¿Qué exige su análisis? R: Métodos estadísticos y análisis de contenido. ________________________________________ ¿Deseas que continúe con el último bloque (351–500) incluyendo temas integradores, aplicación práctica, validación, confiabilidad, análisis de resultados y ejemplos de uso de instrumentos según el texto? Tú dijiste: continua ChatGPT Plus Perfecto. A continuación te presento el bloque final de preguntas, del número 351 al 500, que abordan temas integradores, validación, confiabilidad, aplicación práctica, análisis de resultados y ejemplos de uso, siempre basados en el libro Metodología de la investigación: Técnicas e instrumentos de investigación. ________________________________________ 📘 Aplicación, validación, análisis y uso práctico (Preguntas 351–500) 🔬 Validación y confiabilidad (351–380) 351. ¿Qué es la validación de un instrumento? R: Proceso para asegurar que mide lo que debe medir. 352. ¿Qué es la confiabilidad de un instrumento? R: Estabilidad y consistencia de sus resultados. 353. ¿Qué prueba mide la confiabilidad en el tiempo? R: Prueba-retest. 354. ¿Qué mide el análisis de consistencia interna? R: Homogeneidad de los ítems. 355. ¿Qué técnica evalúa la estructura interna? R: Análisis factorial. 356. ¿Qué es la validez de contenido? R: Cubre adecuadamente el tema estudiado. 357. ¿Qué es la validez de criterio? R: Relación con resultados conocidos. 358. ¿Qué es la validez predictiva? R: Predice eventos futuros. 359. ¿Qué es la validez concurrente? R: Coincide con otros instrumentos similares. 360. ¿Qué tipo de validez se evalúa con expertos? R: Validez de contenido. 361. ¿Qué instrumento requiere validación previa? R: Cuestionario tipo escala. 362. ¿Qué implica validar empíricamente? R: Aplicar prueba piloto y analizar resultados. 363. ¿Qué se busca con la validación? R: Confianza en los resultados obtenidos. 364. ¿Cuándo se debe validar un instrumento? R: Antes de su aplicación definitiva. 365. ¿Qué garantiza la confiabilidad? R: Resultados estables en condiciones similares. 366. ¿Qué es un coeficiente alfa de Cronbach? R: Mide la consistencia interna de un instrumento. 367. ¿Qué valor mínimo es aceptable en el alfa? R: 0.70 368. ¿Qué instrumentos deben ser confiables? R: Todos los que se usen para tomar decisiones. 369. ¿Qué pasa si un instrumento no es válido? R: Los resultados pueden ser erróneos. 370. ¿Qué pasa si un instrumento no es confiable? R: Los resultados serán inconsistentes. 371. ¿Qué análisis combina confiabilidad y validez? R: Análisis factorial confirmatorio. 372. ¿Qué instrumento se prueba con análisis de ítems? R: Pruebas objetivas. 373. ¿Qué se debe revisar en cada ítem? R: Claridad, relevancia, comprensión. 374. ¿Qué asegura el juicio de expertos? R: Validez de contenido. 375. ¿Qué implica una prueba piloto? R: Aplicar el instrumento a una muestra pequeña. 376. ¿Qué se hace después de la prueba piloto? R: Ajustar ítems según resultados. 377. ¿Qué análisis requiere una escala Likert? R: Coeficiente de confiabilidad. 378. ¿Qué prueba compara instrumentos? R: Correlación entre instrumentos similares. 379. ¿Qué se usa para validar predictivamente? R: Regresión o correlación. 380. ¿Qué se hace si un ítem tiene baja correlación? R: Se modifica o elimina. ________________________________________ 🧪 Aplicación práctica y ejemplos (381–420) 381. ¿Qué instrumento se usa para medir actitudes? R: Escala de valoración tipo Likert. 382. ¿Qué técnica usa un cuestionario? R: Encuesta. 383. ¿Qué instrumento se usa para observar clase? R: Ficha de observación. 384. ¿Qué instrumento se usa en grupos focales? R: Guía o ficha de entrevista. 385. ¿Qué técnica requiere un moderador? R: Grupo focal. 386. ¿Qué instrumento se usa para analizar textos? R: Ficha de análisis de documentos. 387. ¿Qué técnica usa más la historia de vida? R: Entrevista a profundidad. 388. ¿Qué instrumento es útil en evaluaciones docentes? R: Rúbrica de desempeño. 389. ¿Qué técnica es mejor para explorar opiniones? R: Entrevista abierta. 390. ¿Qué instrumento permite codificación numérica? R: Cuestionario politómico. 391. ¿Qué técnica se usa para comparar poblaciones? R: Encuesta con escalas. 392. ¿Qué instrumento se usa en pruebas de ingreso? R: Test de rendimiento. 393. ¿Qué técnica permite estudiar interacciones sociales? R: Observación participante. 394. ¿Qué instrumento se usa en análisis cuantitativo? R: Escala Likert. 395. ¿Qué se usa para evaluar una presentación? R: Rúbrica de evaluación oral. 396. ¿Qué instrumento evalúa variables emocionales? R: Cuestionario con indicadores psicológicos. 397. ¿Qué técnica recoge experiencias de vida? R: Historia de vida. 398. ¿Qué técnica puede usarse en entornos educativos? R: Observación sistemática. 399. ¿Qué instrumento permite autoevaluación? R: Escala de valoración personal. 400. ¿Qué técnica usa entrevistas semiestructuradas? R: Investigación cualitativa. 401. ¿Qué se requiere antes de aplicar un test? R: Instrucciones claras y control de ambiente. 402. ¿Qué puede invalidar un instrumento? R: Preguntas sesgadas. 403. ¿Qué ayuda a mejorar la aplicación del instrumento? R: Capacitación del aplicador. 404. ¿Qué debe tener una ficha de chequeo? R: Indicadores observables y verificables. 405. ¿Qué técnica es útil para explorar lenguaje? R: Análisis de discurso. 406. ¿Qué instrumento puede tener preguntas dicotómicas? R: Cuestionario cerrado. 407. ¿Qué permite comparar datos entre grupos? R: Escalas estandarizadas. 408. ¿Qué instrumento se adapta mejor a encuestas en línea? R: Cuestionario digital. 409. ¿Qué se recomienda al transcribir entrevistas? R: Textualidad y fidelidad. 410. ¿Qué permite una ficha de entrevista semiestructurada? R: Flexibilidad y orientación temática. 411. ¿Qué mejora la claridad del instrumento? R: Revisión lingüística. 412. ¿Qué aporta la observación sistemática? R: Datos detallados con categorías previas. 413. ¿Qué se hace tras aplicar el instrumento? R: Sistematizar y analizar los datos. 414. ¿Qué técnica facilita la triangulación? R: Uso de múltiples instrumentos. 415. ¿Qué mejora la calidad de la recolección? R: Uso combinado de técnicas. 416. ¿Qué garantiza la ética en la aplicación? R: Consentimiento informado. 417. ¿Qué se debe hacer si un instrumento falla? R: Revisar y rediseñar. 418. ¿Qué evalúa una rúbrica de proceso? R: Etapas del trabajo realizado. 419. ¿Qué instrumento combina cuali y cuantitativo? R: Cuestionario mixto. 420. ¿Qué técnica permite identificar patrones narrativos? R: Historia de vida o discurso. ________________________________________ 🧩 Integración final y metacognición (421–500) 421. ¿Qué significa "triangular" instrumentos? R: Usar varios métodos para validar resultados. 422. ¿Qué se considera al seleccionar un instrumento? R: Tipo de variable y objetivo. 423. ¿Qué instrumento ayuda a recolectar percepciones? R: Encuesta con escala. 424. ¿Qué implica un análisis de contenido? R: Interpretar significados en narrativas. 425. ¿Qué se evalúa antes de usar un instrumento? R: Validez, confiabilidad y pertinencia. 426. ¿Qué técnica se basa en la interacción grupal? R: Focus group. 427. ¿Qué técnica requiere observador entrenado? R: Observación sistemática. 428. ¿Qué aporta una guía de observación? R: Foco en categorías clave. 429. ¿Qué permite la escala tipo Likert? R: Medir grados de opinión o actitud. 430. ¿Qué se busca con un test psicométrico? R: Medición objetiva de habilidades o rasgos. 431. ¿Qué técnica apoya mejor a estudios exploratorios? R: Entrevista abierta. 432. ¿Qué se mide con una rúbrica? R: Criterios previamente definidos. 433. ¿Qué se requiere para un test confiable? R: Condiciones estandarizadas. 434. ¿Qué instrumento aporta más control? R: Prueba objetiva. 435. ¿Qué técnica apoya la etnografía? R: Observación participante. 436. ¿Qué se obtiene del análisis de documentos? R: Datos históricos, legales o institucionales. 437. ¿Qué mejora la precisión del cuestionario? R: Redacción revisada por expertos. 438. ¿Qué puede invalidar un grupo focal? R: Falta de moderación efectiva. 439. ¿Qué hace el análisis de resultados? R: Organiza y da sentido a los datos. 440. ¿Qué herramienta puede usarse para codificación? R: Software cualitativo (ej. Atlas.ti, NVivo). 441. ¿Qué implica un enfoque mixto? R: Uso combinado de métodos cuantitativos y cualitativos. 442. ¿Qué instrumento recoge evidencia de aprendizaje? R: Rúbrica de evaluación. 443. ¿Qué instrumento se usa para describir un fenómeno? R: Entrevista abierta o historia de vida. 444. ¿Qué se debe hacer con los datos recogidos? R: Analizar, interpretar y presentar resultados. 445. ¿Qué garantiza un diseño metodológico sólido? R: Selección adecuada de técnicas e instrumentos. 446. ¿Qué instrumento recopila respuestas numéricas? R: Cuestionario con escala Likert. 447. ¿Qué técnica favorece la espontaneidad? R: Focus group. 448. ¿Qué permite contrastar hipótesis? R: Instrumentos cuantitativos validados. 449. ¿Qué técnica analiza lenguaje, poder e ideología? R: Análisis crítico del discurso. 450. ¿Qué instrumento evalúa competencias? R: Rúbrica por niveles. 451. ¿Qué se debe cuidar en preguntas sensibles? R: Ética y privacidad. 452. ¿Qué técnica combina lenguaje verbal y no verbal? R: Observación participante. 453. ¿Qué se hace tras recolectar los datos? R: Procesarlos y analizarlos. 454. ¿Qué significa codificar datos cualitativos? R: Agrupar por categorías. 455. ¿Qué elemento es común en todo instrumento? R: Claridad. 456. ¿Qué mejora la calidad de la investigación? R: Uso de instrumentos adecuados y validados. 457. ¿Qué instrumento es más flexible? R: Entrevista no estructurada. 458. ¿Qué técnica ayuda a generar hipótesis? R: Investigación cualitativa. 459. ¿Qué instrumento ofrece comparación directa? R: Cuestionario cerrado. 460. ¿Qué se requiere al aplicar una encuesta? R: Muestra representativa. 461. ¿Qué permite ver la evolución de datos? R: Aplicación longitudinal de instrumentos. 462. ¿Qué se recomienda antes de cada aplicación? R: Ensayo o prueba piloto. 463. ¿Qué tipo de escala se usa más en educación? R: Escala tipo Likert. 464. ¿Qué instrumento se adapta mejor a autoevaluación? R: Rúbrica o escala de valoración. 465. ¿Qué fortalece el rigor científico? R: Validación metodológica. 466. ¿Qué técnica requiere empatía del investigador? R: Historia de vida. 467. ¿Qué es un instrumento adaptado? R: Uno modificado para contexto específico. 468. ¿Qué es saturación en cualitativa? R: Cuando ya no emergen nuevos datos. 469. ¿Qué asegura la representatividad? R: Muestreo adecuado. 470. ¿Qué debe incluir el informe de instrumentos? R: Justificación, aplicación y validación. 471. ¿Qué debe revisarse después del análisis? R: Coherencia con los objetivos. 472. ¿Qué fortalece la ética de investigación? R: Transparencia en el uso de instrumentos. 473. ¿Qué indica la dispersión de respuestas? R: Variabilidad en opiniones. 474. ¿Qué técnica se recomienda para detectar discursos ocultos? R: Análisis crítico del discurso. 475. ¿Qué instrumento revela conocimientos previos? R: Test diagnóstico. 476. ¿Qué instrumento puede usarse al final del curso? R: Encuesta de satisfacción o evaluación. 477. ¿Qué técnica facilita comprender realidades complejas? R: Investigación cualitativa. 478. ¿Qué técnica complementa una encuesta? R: Entrevista a profundidad. 479. ¿Qué permite la mezcla de datos cuali y cuanti? R: Mayor comprensión del fenómeno. 480. ¿Qué se busca con un buen diseño instrumental? R: Datos útiles y relevantes. 481. ¿Qué se recomienda para redactar ítems? R: Precisión y simplicidad. 482. ¿Qué instrumento mide comportamientos observables? R: Ficha de observación. 483. ¿Qué técnica se centra en la experiencia subjetiva? R: Historia de vida. 484. ¿Qué aporta la codificación en investigación? R: Organización conceptual de datos. 485. ¿Qué técnica se basa en preguntas? R: Entrevista. 486. ¿Qué requiere una entrevista profunda? R: Tiempo, confianza y preparación. 487. ¿Qué instrumento ayuda a mejorar el aprendizaje? R: Rúbrica de retroalimentación. 488. ¿Qué mejora la presentación de resultados? R: Uso de gráficos, tablas y citas. 489. ¿Qué fortalece la interpretación de resultados? R: Marco teórico bien definido. 490. ¿Qué se debe tener para aplicar instrumentos en niños? R: Consentimiento de padres y lenguaje adecuado. 491. ¿Qué requiere analizar los datos de un cuestionario? R: Codificación, tabulación y análisis. 492. ¿Qué debe indicar cada instrumento? R: Propósito, población y modo de aplicación. 493. ¿Qué diferencia hay entre ficha y escala? R: La ficha registra hechos; la escala mide nivel. 494. ¿Qué instrumento permite evaluar procesos? R: Rúbrica de evaluación de proceso. 495. ¿Qué técnica usa registro audiovisual? R: Observación o entrevista grabada. 496. ¿Qué favorece una redacción efectiva de preguntas? R: Evitar tecnicismos y ambigüedad. 497. ¿Qué debe usarse para medir variables psicológicas? R: Test o escalas validadas. 498. ¿Qué instrumento se adapta al entorno virtual? R: Cuestionario digital. 499. ¿Qué instrumento permite medir satisfacción? R: Encuesta. 500. ¿Qué es un control de lectura? R: Evaluación para verificar comprensión de un texto.
Q1. A teacher designs a lesson where students compute real-life percentages such as discounts and savings. 👉 A student calculates 15% of 200 to determine savings in a purchase. What is the correct result? A. 20 B. 25 C. 30 D. 35 Q2. In a classroom activity, learners compare numbers to find the highest common factor for grouping materials evenly. 👉 What is the GCF of 24 and 36? A. 6 B. 8 C. 12 D. 18 📘 FRACTIONS, DECIMALS, AND POWERS Q3. A learner converts fractions into percentages for data interpretation. 👉 What is 3/4 expressed as a percentage? A. 50% B. 60% C. 75% D. 80% Q4. A student models exponential growth using repeated multiplication. 👉 What is the value of 252^525? A. 25 B. 30 C. 32 D. 64 📘 ALGEBRA (EQUATIONS AND EXPRESSIONS) Q5. A teacher guides students to solve equations that represent real-life situations. 👉 Solve: 2x+8=202x + 8 = 202x+8=20 A. x = 4 B. x = 6 C. x = 8 D. x = 10 Q6. Students simplify expressions to understand relationships between quantities. 👉 Simplify: 3(x+4)−2x3(x + 4) - 2x3(x+4)−2x A. x + 12 B. x + 4 C. 5x + 4 D. 5x + 12 📘 FUNCTIONS AND GRAPHING Q7. A student analyzes a linear equation to determine its rate of change. 👉 What is the slope of y=3x−5y = 3x - 5y=3x−5? A. -5 B. -3 C. 3 D. 5 Q8. A learner evaluates functions to predict outcomes. 👉 If f(x)=2x+3f(x) = 2x + 3f(x)=2x+3, what is f(4)f(4)f(4)? A. 7 B. 9 C. 11 D. 14 📘 GEOMETRY Q9. Students explore geometric shapes and their properties through visual models. 👉 What is the sum of interior angles of a triangle? A. 90° B. 180° C. 270° D. 360° Q10. A student calculates the area of a classroom table with dimensions 8 cm by 5 cm. 👉 What is the area? A. 26 sq cm B. 30 sq cm C. 40 sq cm D. 48 sq cm 📘 MEASUREMENT AND FIGURES Q11. A learner determines the volume of a cube used in a science experiment. 👉 What is the volume of a cube with side 4 cm? A. 16 cubic cm B. 32 cubic cm C. 48 cubic cm D. 64 cubic cm Q12. Students identify shapes used in design projects. 👉 How many sides does a hexagon have? A. 5 B. 6 C. 7 D. 8 📘 STATISTICS AND PROBABILITY Q13. A teacher helps students interpret data sets using measures of central tendency. 👉 What is the mean of 4, 6, 8, 10, 12? A. 6 B. 8 C. 10 D. 12 Q14. A class experiment involves flipping a fair coin. 👉 What is the probability of getting heads? A. 1/4 B. 1/3 C. 1/2 D. 2/3 📘 WORD PROBLEMS (APPLICATION) Q15. A car travels 180 km in 3 hours during a learning task on speed. 👉 What is its average speed? A. 45 km/h B. 60 km/h C. 75 km/h D. 90 km/h Q16. Students analyze work efficiency in a project. 👉 If 5 workers complete a task in 12 days, how long will 10 workers take? A. 3 days B. 6 days C. 8 days D. 12 days Q17. A student solves a problem involving ratios in a classroom population. 👉 If the ratio of boys to girls is 3:2 and there are 30 students, how many boys are there? A. 12 B. 15 C. 18 D. 20 Q18. A learner determines the duration of a scheduled trip. 👉 A journey starts at 8:30 AM and ends at 11:15 AM. How long is the trip? A. 2 hrs 15 mins B. 2 hrs 30 mins C. 2 hrs 45 mins D. 3 hrs 15 mins Q19. A student computes simple interest for financial literacy. 👉 What is the simple interest on ₱1000 at 5% for 2 years? A. ₱50 B. ₱75 C. ₱100 D. ₱150 Q20. A learner solves a perimeter problem involving a rectangle. 👉 A rectangle has a length of 12 cm and perimeter of 34 cm. What is the width? A. 5 cm B. 7 cm C. 10 cm D. 11 cm ✅ ANSWER KEY (BASED ON YOUR REVIEWER) (All verified from your uploaded file) [ilide.info...002acd4e5a | PDF] QAnswer1C2C3C4C5B6A7C8C9B10C11D12B13B14C15B16B17C18C19C20A
Chapter 22 Antihypertensive Drugs Hypertension Defined (JNC-8) Pharmacology Overview 7 main categories of drugs to treat HTN Adrenergic drugs (old friend) Angiotensin-converting enzyme (ACE) inhibitors Angiotensin II receptor blockers (ARBs) Calcium channel blockers (CCBs) Diuretics Vasodilators Direct renin inhibitors A. Adrenergic Drugs: 5 Subcategories and where they act A1. Adrenergic neuron blockers (central and peripheral)- we won’t talk about this A2. Alpha1 receptor blockers (peripheral) A3. Alpha2 receptor agonists (central) A4. Beta receptor blockers (peripheral) A5. Combined α and β receptor blockers (peripheral) A2. Peripherally Acting Adrenergic DrugAlpha1 Blockers (we’ve met these) Doxazosin, prazosin, alfuzosin Block alpha1-receptors which causes BP to decrease Reduces peripheral vascular resistance and BP by dilating both arterial and venous blood vessels Main Use: benign prostatic hyperplasia (BPH) Alpha1 Blockers REMEMBER Tamsulosin (Flomax)* is an α1 blocker BUT *Tamsulosin is not used to control BP, just for BPH. A3. Centrally Acting Adrenergic DrugsAlpha 2 agonist Clonidine and methyldopa 1- Stimulate alpha2-adrenergic receptors. in the brain Decreases sympathetic outflow from the CNS which decreases NE production 2. Stimulate alpha2-adrenergic receptors in kidneys remember alpha 2 opposes alpha 1 Dilates peripheral blood vessels → lowers peripheral resistance → Results in decreased BP So ….Clonidine (Catapres) Used primarily for its ability to decrease blood pressure in an urgent setting Also use in opioid withdrawal as previously discussed Oral (multiple times a day), and topical patch formulations Do not stop abruptly as it may lead to rebound hypertension In reality, Clonidine and methyldopa Not prescribed as first-line home antiHTN drugs High incidence of unwanted adverse effects: orthostatic hypotension, fatigue, and dizziness MIGHT be uses as adjunct drugs after other drugs have failed, in conjunction with other antiHTN such as diuretics A4. Adrenergic Drugs Selective Beta 1 Blockers Metoprolol, Atenolol Reduction of HR through β1 receptor blockade (remember adrenergic blocking of this receptor???) HR results in BP Cause reduced secretion of renin = BP A4. Adrenergic Drugs Selective Beta1 Blockers Nebivolol (Bystolic) Uses: hypertension and HF Action: blocks β1 receptors and produces vasodilatation, which results in a decrease in SVR High doses loses selectivity and blocks both β1 and β2 Less sexual dysfunction All BB- Do not stop abruptly; must be tapered over 1 to 2 weeks A4. Adrenergic Drugs NONSelective Beta Blockers Propranolol Acts equally on β1 and β2 Other uses include situational anxiety associated with public speaking, test taking As mentioned on previous slide, nebivolol at high doses becomes beta nonselective A5. Dual-Action Adrenergic Drugs α1 and β Receptor Blockers Dual antihypertensive effects of reduction in heart rate (beta1 receptor blockade) and vasodilation (alpha1 receptor blockade) Examples are carvedilol (common) and labetalol (not as common) A5. Dual-Action Adrenergic Drugs α1 and β Receptor Blockers Carvedilol (Coreg) Widely used drug that is well tolerated Uses: HTN, mild to moderate HF in conjunction with digoxin, diuretics, and ACE inhibitors Contraindications: severe bradycardia or unstable HF, bronchospastic conditions such as asthma, and various cardiac conduction problems Adrenergic Drugs Indications - HTN But also for Glaucoma (topical) BPH: doxazosin, prazosin, and terazosin (2 for 1) Management of severe HF when used with cardiac glycosides and diuretics Contraindications Acute HF- have to stabilize first MOAIs- yeah doesn’t everything interact with MAOIs? Peptic ulcers Severe liver/kidney disease Asthma (with beta blockers) Adrenergic Drugs: Adverse Effects Orthostatic hypotension 1st-dose syncope Rebound hypertension with abrupt discontinuation Most common: Dry mouth, drowsiness, constipation, sedation Interactions- always check for specific drug interactions Can cause additive CNS depression with alcohol, benzodiazepines, opioids Question #1 When administering an alpha-adrenergic drug for hypertension, it is most important for the nurse to assess the patient for the development of what response? Hypotension Hyperkalemia Oliguria Respiratory distress Answer A Hypotension This is a key point in patient education These drugs have strong vasodilating properties and may cause severe hypotension, especially at the beginning of therapy. B. Angiotensin-Converting Enzyme Inhibitorsaka ACE Inhibitors or ACEi Large group of safe and effective drugs Currently are 10 ACEi Often used as first-line drugs for HF and hypertension May be combined with a thiazide diuretic, loop diuretic, or Calcium Channel Blocker (CCB) You need to understand the basics ACE Inhibitors: Review RAAS ACE converts angiotensin I, formed through the action of renin, to angiotensin II Angiotensin 2 is a potent vasoconstrictor and also induces aldosterone secretion by the adrenal glands Aldosterone stimulates sodium resorption (H20 follows Na Both act to raise BP which causes kidneys to reduce renin production ACEi= Great drug to treat HTN BUT contraindicated in pregnancy (2nd,3rd trimester due to fetal renal damage) and breastfeeding first few weeks after birth B. ACE Inhibitors - PRIL Lisinopril (Prinivil) super common, often the 1st drug Enalapril (Vasotec) also common Captopril (Capoten) great if liver disease present Benazepril (Lotensin) Fosinopril (Monopril) Perindopril (Aceon) Quinapril (Accupril) Ramipril (Altace) Trandolapril (Mavik) Primary Effects of the ACE Inhibitors Prevent Na (and H2O) resorption by inhibiting aldosterone secretion (volume reduction) (GO BACK TO RAAS DIAGRAM) blood volume decreases work of the heart preload, or the left ventricular end-diastolic volume which is important in HF ACE SUMMARY OF ACTIVITY 1) Prevent vasoconstriction caused by angiotensin 2 (2) Prevent aldosterone secretion less sodium and water resorption Cardioprotective Effects of ACEi They slow progression of left ventricular hypertrophy (ventricular remodeling) after MI so considered cardioprotective ACE inhibitors have been shown to decrease morbidity and mortality in patients with HF Renal Protective Effects of ACEi ACE inhibitors: reduce glomerular filtration pressure by volume reduction Cardiovascular drug of choice for patients with diabetes since it helps protect kidneys by reducing pressure. Sometimes used low dose for kidney protection with DM without HTN B. ACEi Enalapril (Vasotec) Only ACEi available in both oral and IV Enalapril IV does not require cardiac monitoring Oral enalapril: prodrug (metabolized in liver) Improves patient’s chances of survival after an MI Reduces the incidence of HF B. ACEi Captopril (Capoten) Uses: prevention of ventricular remodeling after MI; reduce the risk of HF after MI Shortest half-life Must be administered multiple times throughout the day so this limits its use Not a prodrug so good for patient with liver disease Question #2 A patient with diabetes has a new prescription for the ACE inhibitor lisinopril. She questions this order because her provider has never told her that she has hypertension. What is the best explanation for this order? The doctor knows best The patient is confused This medication has cardioprotective properties This medication has a protective effect on the kidneys for patients with diabetes Answer D ACE inhibitors have been shown to have a protective effect on the kidneys because they reduce glomerular filtration pressure. This property makes them the cardiovascular drug of choice for patients with diabetes. Question #3 A patient with a history of pancreatitis and cirrhosis is also being treated for hypertension. Which drug will most likely be ordered for this patient? Clonidine Prazosin Diltiazem Captopril Answer D Captopril Captopril is not a prodrug; therefore, it does not need to be metabolized by the liver to be effective. This is an advantage in patients with liver disease. ACE Inhibitors: Adverse Effects *Dry, nonproductive cough, which reverses when therapy is stopped. This is a class effect Dizziness- Note: First-dose hypotensive effect may occur Headache & Fatigue Possible hyperkalemia ** Angioedema: rare but potentially fatal Not safe in pregnancy-are contraindicated during the second and third trimesters of pregnancy because of increased risk of fetal renal damage C. Angiotensin II Receptor Blockers(ARB) Considered an alternative to ACEi Less likely to cause a dry cough and hyper K+ that is common with ACE inhibitors Angiotensin II Receptor Blockers: Mechanism of Action Go back to RAAS diagram! ARBs affect primarily 2 places 1. Vascular smooth muscle - blocks vasoconstriction 2. Adrenal gland -Selectively blocks the binding of Ang 2 to certain Ang 2 receptors inhibiting secretion of aldosterone Lowers volume retention and BP Angiotensin II Receptor Blockers -ARTAN Losartan (Cozaar)- very common Eprosartan (Teveten) Valsartan (Diovan) Irbesartan (Avapro) Candesartan (Atacand) Olmesartan (Benicar) Telmisartan (Micardis) Azilsartan (Edarbi) C. ARB Losartan (Cozaar) Beneficial in patients with HTN and HF Used with caution in patients with kidney or liver dysfunction and in patients with renal artery stenosis ***Not safe for breastfeeding women and should not be used in pregnancy (Cat C 1st trimester, Cat D 2nd-3rd trimester), potential fetal toxicity Appear to be equally effective for the treatment of hypertension and well tolerated ARBs less likely to cause cough and hyperK+ but can still happen Evidence that ARBs are associated with lower mortality after MI than ACE inhibitors Never take ACEi and ARBs at the same time* 5. Calcium Channel Blockers (CCB) Primary use: HTN, angina, some dysrhythmias Cause smooth muscle relaxation by blocking the binding of calcium to its receptors, preventing muscle contraction Results in: Relaxed blood vessels to the heart Decreased peripheral smooth muscle tone Decreased SVResistance Decreased BP E. Diuretics First-line antiHTN in JNC 8 guidelines Decreases fluid volume The results from diuresis: preload, Peripheral resistance Overall effect Decreased workload of the heart and decreased BP Thiazide diuretics are the most commonly used diuretics for HTN Ie hydrochlorothiazide (HCTZ), chlorthalidone We will discuss diuretics further in the chapter on diuretics F. Vasodilators Directly relax arterial or venous smooth muscle (or both) Results in: Decreased SVR Decreased afterload Peripheral vasodilation Indicated for treatment of HTN May be used in combination with other drugs F. Vasodilators Hydralazine (Apresoline) Orally: routine cases of essential hypertension Injectable: hypertensive emergencies BiDil: specifically indicated as an adjunct for treatment of HF in African-American patients F. Vasodilators Sodium Nitroprusside (Nitropress) *Sodium nitroprusside and IV diazoxide are reserved for the management of hypertensive emergencies. Contraindications: severe HF, known inadequate cerebral perfusion (especially during neurosurgical procedures) F. Vasodilators Adverse Effects Hydralazine: dizziness, headache, tachycardia, edema, dyspnea, N/V/D, vitamin B6 deficiency, rash Sodium nitroprusside: hypotension, bradycardia, decreased platelet aggregation, rash G. Direct Renin Inhibitors Aliskirin (Tekturna) Blocks the RAS pathway at the point of activation. Inhibiting renin production prevents the downstream production of Ang II (potent vasoconstrictor) Adverse effects: N/V, severe hypotension, hyponatremia, hyperkalemia… Contraindicated in patients with DM taking ACEi or ARB Miscellaneous Antihypertensives Eplerenone (Inspra) Newer class of drugs called selective aldosterone blockers (remember RAAS?) Reduces BP by blocking the actions of aldosterone at its corresponding receptors in the kidney, heart, blood vessels, and brain Indications: routine treatment of hypertension and for post-MI HF Contraindicated if serum potassium levels are high (above 5.6 mEq/L) A Special Form of HTNTreatment of Pulmonary Hypertension Sildenafil and Tadalafil Commonly used for erectile dysfunction Used for pulmonary hypertension but with different trade names Sildenafil: Revatio* (Viagra for ED) Tadalafil: Adcirca* (Cialis for ED)
GRADE 4 Module 6 Lesson 3. Interpret Remainders This PowerPoint file contains instructional aids for teachers who have purchased Into Math. It is intended to be projected to students and used in conjunction with the Student Edition and manipulatives as needed. These slides can be used to move the conversation forward in the classroom, but they should not serve as a replacement for student-centered, collaborative conversations in which students have the space they need to find an entry point, construct meaning, and build understanding. About the Slide Presentation Presenter View: Use the Presenter view to see notes while presenting. Customization: Add or delete content or notes to get the best learning experience for your classroom. 1 Problem of the Day. Which equations can be used to solve the following problem? Rita makes 40 bracelets and gives an equal number to 8 friends, including Veronica. Veronica gives 2 of the bracelets that she received to her sister. How many bracelets does Veronica have left? A. 40 – 8 = 32 32 ÷ 2 = 16 B. 40 ÷ 8 = 5 5 + 2 = 7 C. 8 + 2 = 10 40 ÷ 10 = 4 D. 40 ÷ 8 = 5 5 – 2 = 3 2 I Can. I Can solve a division problem and interpret the remainder in the context of the problem. 3 Spark Your Learning. Aiden is building solar toy cars in his science club. The cars collect and use energy from the sun for power. Aiden buys 18 wheels. Each car needs 4 wheels. How many cars can Aiden build? Show your thinking. 4 Turn and Talk. What is the remainder in this problem? What does the remainder mean? Professional Development note: Use the Professional Learning Cards to provide language routines that may help students access the meaning of the problem. 5 Build Understanding • Task 1 ACTIVITY. There are 57 students going to the science museum. Each van can take 5 students. How many vans are needed to take all the students? Use a visual model to show how the students are divided into groups of 5. 6 Turn and Talk. How can you use the whole-number quotient and remainder to answer these questions? How many vans will be full? How many students will ride in the van that is not full? Professional Development note: Use the Professional Learning Cards to provide language routines that may help students access the meaning of the problem. 7 Step It Out • Task 2 ACTIVITY.. Amanda has 73 inches of wire for a science experiment. She needs to cut all the wire into 8 identical pieces. How many inches long will each piece be? 8 Turn and Talk. Why is this problem a good situation to write the remainder as a fraction? Professional Development note: Use the Professional Learning Cards to provide language routines that may help students access the meaning of the problem. 9 Check Understanding. 1. Maya needs 44 batteries for smoke alarms. The batteries come in packs of 6. How many packs does Maya need to buy? For 44 ÷ 6, the whole-number quotient is ____ and the remainder is ____. Maya needs to buy ____ packs. Circle how you interpreted the remainder to solve the problem. 10 I Can Scale. 4 I can explain how to solve a division problem and interpret the remainder in the context of the problem. 3 I can solve a division problem and interpret the remainder in the context of the problem. 2 I can solve a division problem and identify the whole-number quotient and the remainder. 1 I can solve a division problem with a remainder. 11 Exit Ticket. Mr. Jenkins’ class is giving speeches during a 46-minute class. Each student will be able to talk for 4 minutes. How many students can give speeches? Justify your answer.
ILLINOIS PROFESSIONAL TEACHING STANDARDS (2013) Standard 1 - Teaching Diverse Students – The competent teacher understands the diverse characteristics and abilities of each student and how individuals develop and learn within the context of their social, economic, cultural, linguistic, and academic experiences. The teacher uses these experiences to create instructional opportunities that maximize student learning. Knowledge Indicators – The competent teacher: 1A) understands the spectrum of student diversity (e.g., race and ethnicity, socioeconomic status, special education, gifted, English language learners (ELL), sexual orientation, gender, gender identity) and the assets that each student brings to learning across the curriculum; 1B) understands how each student constructs knowledge, acquires skills, and develops effective and efficient critical thinking and problem-solving capabilities; 1C) understands how teaching and student learning are influenced by development (physical, social and emotional, cognitive, linguistic), past experiences, talents, prior knowledge, economic circumstances and diversity within the community; 1D) understands the impact of cognitive, emotional, physical, and sensory disabilities on learning and communication pursuant to the Individuals with Disabilities Education Improvement Act (also referred to as “IDEA”) (20 USC 1400 et seq.), its implementing regulations (34 CFR 300; 2006), Article 14 of the School Code [105 ILCS 5/Art.14] and 23 Ill. Adm. Code 226 (Special Education); 1E) understands the impact of linguistic and cultural diversity on learning and communication; 1F) understands his or her personal perspectives and biases and their effects on one’s teaching; and 1G) understands how to identify individual needs and how to locate and access technology, services, and resources to address those needs. Performance Indicators – The competent teacher: 1H) analyzes and uses student information to design instruction that meets the diverse needs of students and leads to ongoing growth and achievement; 1I) stimulates prior knowledge and links new ideas to already familiar ideas and experiences; 1J) differentiates strategies, materials, pace, levels of complexity, and language to introduce concepts and principles so that they are meaningful to students at varying levels of development and to students with diverse learning needs; 1K) facilitates a learning community in which individual differences are respected; and 1L) uses information about students’ individual experiences, families, cultures, and communities to create meaningful learning opportunities and enrich instruction for all students. Standard 2 - Content Area and Pedagogical Knowledge – The competent teacher has in-depth understanding of content area knowledge that includes central concepts, methods of inquiry, structures of the disciplines, and content area literacy. The teacher creates meaningful learning experiences for each student based upon interactions among content area and pedagogical knowledge, and evidence-based practice. Knowledge Indicators – The competent teacher: 2A) understands theories and philosophies of learning and human development as they relate to the range of students in the classroom; 2B) understands major concepts, assumptions, debates, and principles; processes of inquiry; and theories that are central to the disciplines; 2C) understands the cognitive processes associated with various kinds of learning (e.g., critical and creative thinking, problem-structuring and problem-solving, invention, memorization, and recall) 2 and ensures attention to these learning processes so that students can master content standards; 2D) understands the relationship of knowledge within the disciplines to other content areas and to life applications; 2E) understands how diverse student characteristics and abilities affect processes of inquiry and influence patterns of learning; 2F) knows how to access the tools and knowledge related to latest findings (e.g., research, practice, methodologies) and technologies in the disciplines; 2G) understands the theory behind and the process for providing support to promote learning when concepts and skills are first being introduced; and 2H) understands the relationship among language acquisition (first and second), literacy development, and acquisition of academic content and skills. Performance Indicators – The competent teacher: 2I) evaluates teaching resources and materials for appropriateness as related to curricular content and each student’s needs; 2J) uses differing viewpoints, theories, and methods of inquiry in teaching subject matter concepts; 2K) engages students in the processes of critical thinking and inquiry and addresses standards of evidence of the disciplines; 2L) demonstrates fluency in technology systems, uses technology to support instruction and enhance student learning, and designs learning experiences to develop student skills in the application of technology appropriate to the disciplines; 2M) uses a variety of explanations and multiple representations of concepts that capture key ideas to help each student develop conceptual understanding and address common misunderstandings; 2N) facilitates learning experiences that make connections to other content areas and to life experiences; 2O) designs learning experiences and utilizes assistive technology and digital tools to provide access to general curricular content to individuals with disabilities; 2P) adjusts practice to meet the needs of each student in the content areas; and 2Q) applies and adapts an array of content area literacy strategies to make all subject matter accessible to each student. Standard 3 - Planning for Differentiated Instruction – The competent teacher plans and designs instruction based on content area knowledge, diverse student characteristics, student performance data, curriculum goals, and the community context. The teacher plans for ongoing student growth and achievement. Knowledge Indicators – The competent teacher: 3A) understands the Illinois Learning Standards (23 Ill. Adm. Code 1.Appendix D), curriculum development process, content, learning theory, assessment, and student development and knows how to incorporate this knowledge in planning differentiated instruction; 3B) understands how to develop short- and long-range plans, including transition plans, consistent with curriculum goals, student diversity, and learning theory; 3C) understands cultural, linguistic, cognitive, physical, and social and emotional differences, and considers the needs of each student when planning instruction; 3D) understands when and how to adjust plans based on outcome data, as well as student needs, goals, and responses; 3E) understands the appropriate role of technology, including assistive technology, to address student needs, as well as how to incorporate contemporary tools and resources to maximize student learning; 3 3F) understands how to co-plan with other classroom teachers, parents or guardians, paraprofessionals, school specialists, and community representatives to design learning experiences; and 3G) understands how research and data guide instructional planning, delivery, and adaptation. Performance Indicators – The competent teacher: 3H) establishes high expectations for each student’s learning and behavior; 3I) creates short-term and long-term plans to achieve the expectations for student learning; 3J) uses data to plan for differentiated instruction to allow for variations in individual learning needs; 3K) incorporates experiences into instructional practices that relate to a student’s current life experiences and to future life experiences; 3L) creates approaches to learning that are interdisciplinary and that integrate multiple content areas; 3M) develops plans based on student responses and provides for different pathways based on student needs; 3N) accesses and uses a wide range of information and instructional technologies to enhance a student’s ongoing growth and achievement; 3O) when planning instruction, addresses goals and objectives contained in plans developed under Section 504 of the Rehabilitation Act of 1973 (29 USC 794), individualized education programs (IEP) (see 23 Ill. Adm. Code 226 (Special Education)) or individual family service plans (IFSP) (see 23 Ill. Adm. Code 226 and 34 CFR 300.24; 2006); 3P) works with others to adapt and modify instruction to meet individual student needs; and 3Q) develops or selects relevant instructional content, materials, resources, and strategies (e.g., project-based learning) for differentiating instruction. Standard 4 - Learning Environment – The competent teacher structures a safe and healthy learning environment that facilitates cultural and linguistic responsiveness, emotional well-being, self-efficacy, positive social interaction, mutual respect, active engagement, academic risk-taking, self-motivation, and personal goal-setting. Knowledge Indicators – The competent teacher: 4A) understands principles of and strategies for effective classroom and behavior management; 4B) understands how individuals influence groups and how groups function in society; 4C) understands how to help students work cooperatively and productively in groups; 4D) understands factors (e.g., self-efficacy, positive social interaction) that influence motivation and engagement; 4E) knows how to assess the instructional environment to determine how best to meet a student’s individual needs; 4F) understands laws, rules, and ethical considerations regarding behavior intervention planning and behavior management (e.g., bullying, crisis intervention, physical restraint); 4G) knows strategies to implement behavior management and behavior intervention planning to ensure a safe and productive learning environment; and 4H) understands the use of student data (formative and summative) to design and implement behavior management strategies. Performance Indicators – The competent teacher: 4I) creates a safe and healthy environment that maximizes student learning; 4J) creates clear expectations and procedures for communication and behavior and a physical setting conducive to achieving classroom goals; 4K) uses strategies to create a smoothly functioning learning community in which students assume responsibility for themselves and one another, participate in decision-making, work collaboratively and independently, use appropriate technology, and engage in purposeful learning activities; 4 4L) analyzes the classroom environment and makes decisions to enhance cultural and linguistic responsiveness, mutual respect, positive social relationships, student motivation, and classroom engagement; 4M) organizes, allocates, and manages time, materials, technology, and physical space to provide active and equitable engagement of students in productive learning activities; 4N) engages students in and monitors individual and group-learning activities that help them develop the motivation to learn; 4O) uses a variety of effective behavioral management techniques appropriate to the needs of all students that include positive behavior interventions and supports; 4P) modifies the learning environment (including the schedule and physical arrangement) to facilitate appropriate behaviors and learning for students with diverse learning characteristics; and 4Q) analyzes student behavior data to develop and support positive behavior. Standard 5 - Instructional Delivery – The competent teacher differentiates instruction by using a variety of strategies that support critical and creative thinking, problem-solving, and continuous growth and learning. This teacher understands that the classroom is a dynamic environment requiring ongoing modification of instruction to enhance learning for each student. Knowledge Indicators – The competent teacher: 5A) understands the cognitive processes associated with various kinds of learning; 5B) understands principles and techniques, along with advantages and limitations, associated with a wide range of evidence-based instructional practices; 5C) knows how to implement effective differentiated instruction through the use of a wide variety of materials, technologies, and resources; 5D) understands disciplinary and interdisciplinary instructional approaches and how they relate to life and career experiences; 5E) knows techniques for modifying instructional methods, materials, and the environment to facilitate learning for students with diverse learning characteristics; 5F) knows strategies to maximize student attentiveness and engagement; 5G) knows how to evaluate and use student performance data to adjust instruction while teaching; and 5H) understands when and how to adapt or modify instruction based on outcome data, as well as student needs, goals, and responses. Performance Indicators – The competent teacher: 5I) uses multiple teaching strategies, including adjusted pacing and flexible grouping, to engage students in active learning opportunities that promote the development of critical and creative thinking, problem-solving, and performance capabilities; 5J) monitors and adjusts strategies in response to feedback from the student; 5K) varies his or her role in the instructional process as instructor, facilitator, coach, or audience in relation to the content and purposes of instruction and the needs of students; 5L) develops a variety of clear, accurate presentations and representations of concepts, using alternative explanations to assist students’ understanding and presenting diverse perspectives to encourage critical and creative thinking; 5M) uses strategies and techniques for facilitating meaningful inclusion of individuals with a range of abilities and experiences; 5N) uses technology to accomplish differentiated instructional objectives that enhance learning for each student; 5O) models and facilitates effective use of current and emerging digital tools to locate, analyze, evaluate, and use information resources to support research and learning; 5P) uses student data to adapt the curriculum and implement instructional strategies and materials according to the characteristics of each student; 5 5Q) uses effective co-planning and co-teaching techniques to deliver instruction to all students; 5R) maximizes instructional time (e.g., minimizes transitional time); and 5S) implements appropriate evidence-based instructional strategies. Standard 6 - Reading, Writing, and Oral Communication – The competent teacher has foundational knowledge of reading, writing, and oral communication within the content area and recognizes and addresses student reading, writing, and oral communication needs to facilitate the acquisition of content knowledge. Knowledge Indicators – The competent teacher: 6A) understands appropriate and varied instructional approaches used before, during, and after reading, including those that develop word knowledge, vocabulary, comprehension, fluency, and strategy use in the content areas; 6B) understands that the reading process involves the construction of meaning through the interactions of the reader's background knowledge and experiences, the information in the text, and the purpose of the reading situation; 6C) understands communication theory, language development, and the role of language in learning; 6D) understands writing processes and their importance to content learning; 6E) knows and models standard conventions of written and oral communications; 6F) recognizes the relationships among reading, writing, and oral communication and understands how to integrate these components to increase content learning; 6G) understands how to design, select, modify, and evaluate a wide range of materials for the content areas and the reading needs of the student; 6H) understands how to use a variety of formal and informal assessments to recognize and address the reading, writing, and oral communication needs of each student; and 6I) knows appropriate and varied instructional approaches, including those that develop word knowledge, vocabulary, comprehension, fluency, and strategy use in the content areas. Performance Indicators – The competent teacher: 6J) selects, modifies, and uses a wide range of printed, visual, or auditory materials, and online resources appropriate to the content areas and the reading needs and levels of each student (including ELLs, and struggling and advanced readers); 6K) uses assessment data, student work samples, and observations from continuous monitoring of student progress to plan and evaluate effective content area reading, writing, and oral communication instruction; 6L) facilitates the use of appropriate word identification and vocabulary strategies to develop each student’s understanding of content; 6M) teaches fluency strategies to facilitate comprehension of content; 6N) uses modeling, explanation, practice, and feedback to teach students to monitor and apply comprehension strategies independently, appropriate to the content learning; 6O) teaches students to analyze, evaluate, synthesize, and summarize information in single texts and across multiple texts, including electronic resources; 6P) teaches students to develop written text appropriate to the content areas that utilizes organization (e.g., compare/contrast, problem/solution), focus, elaboration, word choice, and standard conventions (e.g., punctuation, grammar); 6Q) integrates reading, writing, and oral communication to engage students in content learning; 6R) works with other teachers and support personnel to design, adjust, and modify instruction to meet students’ reading, writing, and oral communication needs; and 6S) stimulates discussion in the content areas for varied instructional and conversational purposes. Standard 7 - Assessment – The competent teacher understands and uses appropriate formative and summative assessments for determining student needs, monitoring student progress, measuring student 6 growth, and evaluating student outcomes. The teacher makes decisions driven by data about curricular and instructional effectiveness and adjusts practices to meet the needs of each student. Knowledge Indicators – The competent teacher: 7A) understands the purposes, characteristics, and limitations of different types of assessments, including standardized assessments, universal screening, curriculum-based assessment, and progress monitoring tools; 7B) understands that assessment is a means of evaluating how students learn and what they know and are able to do in order to meet the Illinois Learning Standards; 7C) understands measurement theory and assessment-related issues, such as validity, reliability, bias, and appropriate and accurate scoring; 7D) understands current terminology and procedures necessary for the appropriate analysis and interpretation of assessment data; 7E) understands how to select, construct, and use assessment strategies and instruments for diagnosis and evaluation of learning and instruction; 7F) knows research-based assessment strategies appropriate for each student; 7G) understands how to make data-driven decisions using assessment results to adjust practices to meet the needs of each student; 7H) knows legal provisions, rules, and guidelines regarding assessment and assessment accommodations for all student populations; and 7I) knows assessment and progress monitoring techniques to assess the effectiveness of instruction for each student. Performance Indicators – The competent teacher: 7J) uses assessment results to determine student performance levels, identify learning targets, select appropriate research-based instructional strategies, and implement instruction to enhance learning outcomes; 7K) appropriately uses a variety of formal and informal assessments to evaluate the understanding, progress, and performance of an individual student and the class as a whole; 7L) involves students in self-assessment activities to help them become aware of their strengths and needs and encourages them to establish goals for learning; 7M) maintains useful and accurate records of student work and performance; 7N) accurately interprets and clearly communicates aggregate student performance data to students, parents or guardians, colleagues, and the community in a manner that complies with the requirements of the Illinois School Student Records Act [105 ILCS 10], 23 Ill. Adm. Code 375 (Student Records), the Family Educational Rights and Privacy Act (FERPA) (20 USC 1232g) and its implementing regulations (34 CFR 99; December 9, 2008); 7O) effectively uses appropriate technologies to conduct assessments, monitor performance, and assess student progress; 7P) collaborates with families and other professionals involved in the assessment of each student; 7Q) uses various types of assessment procedures appropriately, including making accommodations for individual students in specific contexts; and 7R) uses assessment strategies and devices that are nondiscriminatory, and take into consideration the impact of disabilities, methods of communication, cultural background, and primary language on measuring knowledge and performance of students. Standard 8 - Collaborative Relationships – The competent teacher builds and maintains collaborative relationships to foster cognitive, linguistic, physical, and social and emotional development. This teacher works as a team member with professional colleagues, students, parents or guardians, and community members. Knowledge Indicators – The competent teacher: 8A) understands schools as organizations within the larger community context; 7 8B) understands the collaborative process and the skills necessary to initiate and carry out that process; 8C) collaborates with others in the use of data to design and implement effective school interventions that benefit all students; 8D) understands the benefits, barriers, and techniques involved in parent and family collaborations; 8E) understands school- and work-based learning environments and the need for collaboration with all organizations (e.g., businesses, community agencies, nonprofit organizations) to enhance student learning; 8F) understands the importance of participating on collaborative and problem-solving teams to create effective academic and behavioral interventions for all students; 8G) understands the various models of co-teaching and the procedures for implementing them across the curriculum; 8H) understands concerns of families of students with disabilities and knows appropriate strategies to collaborate with students and their families in addressing these concerns; and 8I) understands the roles and the importance of including students with disabilities, as appropriate, and all team members in planning individualized education programs (i.e, IEP, IFSP, Section 504 plan) for students with disabilities. Performance Indicators – The competent teacher: 8J) works with all school personnel (e.g., support staff, teachers, paraprofessionals) to develop learning climates for the school that encourage unity, support a sense of shared purpose, show trust in one another, and value individuals; 8K) participates in collaborative decision-making and problem-solving with colleagues and other professionals to achieve success for all students; 8L) initiates collaboration with others to create opportunities that enhance student learning; 8M) uses digital tools and resources to promote collaborative interactions; 8N) uses effective co-planning and co-teaching techniques to deliver instruction to each student; 8O) collaborates with school personnel in the implementation of appropriate assessment and instruction for designated students; 8P) develops professional relationships with parents and guardians that result in fair and equitable treatment of each student to support growth and learning; 8Q) establishes respectful and productive relationships with parents or guardians and seeks to develop cooperative partnerships to promote student learning and well-being; 8R) uses conflict resolution skills to enhance the effectiveness of collaboration and teamwork; 8S) participates in the design and implementation of individualized instruction for students with special needs (i.e., IEPs, IFSP, transition plans, Section 504 plans), ELLs, and students who are gifted; and 8T) identifies and utilizes community resources to enhance student learning and to provide opportunities for students to explore career opportunities. Standard 9 - Professionalism, Leadership, and Advocacy – The competent teacher is an ethical and reflective practitioner who exhibits professionalism; provides leadership in the learning community; and advocates for students, parents or guardians, and the profession. Knowledge Indicators – The competent teacher: 9A) evaluates best practices and research-based materials against benchmarks within the disciplines; 9B) knows laws and rules (e.g., mandatory reporting, sexual misconduct, corporal punishment) as a foundation for the fair and just treatment of all students and their families in the classroom and school; 9C) understands emergency response procedures as required under the School Safety Drill Act [105 ILCS 128/1], including school safety and crisis intervention protocol, initial response 8 actions (e.g., whether to stay in or evacuate a building), and first response to medical emergencies (e.g., first aid and life-saving techniques); 9D) identifies paths for continuous professional growth and improvement, including the design of a professional growth plan; 9E) is cognizant of his or her emerging and developed leadership skills and the applicability of those skills within a variety of learning communities; 9F) understands the roles of an advocate, the process of advocacy, and its place in combating or promoting certain school district practices affecting students; 9G) understands local and global societal issues and responsibilities in an evolving digital culture; and 9H) understands the importance of modeling appropriate dispositions in the classroom. Performance Indicators – The competent teacher: 9I) models professional behavior that reflects honesty, integrity, personal responsibility, confidentiality, altruism and respect; 9J) maintains accurate records, manages data effectively, and protects the confidentiality of information pertaining to each student and family; 9K) reflects on professional practice and resulting outcomes; engages in self-assessment; and adjusts practices to improve student performance, school goals, and professional growth; 9L) communicates with families, responds to concerns, and contributes to enhanced family participation in student education; 9M) communicates relevant information and ideas effectively to students, parents or guardians, and peers, using a variety of technology and digital-age media and formats; 9N) collaborates with other teachers, students, parents or guardians, specialists, administrators, and community partners to enhance students’ learning and school improvement; 9O) participates in professional development, professional organizations, and learning communities, and engages in peer coaching and mentoring activities to enhance personal growth and development; 9P) uses leadership skills that contribute to individual and collegial growth and development, school improvement, and the advancement of knowledge in the teaching profession; 9Q) proactively serves all students and their families with equity and honor and advocates on their behalf, ensuring the learning and well-being of each child in the classroom; 9R) is aware of and complies with the mandatory reporter provisions of Section 4 of the Abused and Neglected Child Reporting Act [325 ILCS 5/4]; 9S) models digital etiquette and responsible social actions in the use of digital technology; and 9T) models and teaches safe, legal, and ethical use of digital information and technology, including respect for copyright, intellectual property, and the appropriate documentation of sources.
Chapter 7 - Review Data and Decision Making *Glow bus due at midnight, name and student number: answer questions using content in class People have created wonderful things for centuries, and management Management can be traced as far back as 500 bc when the ancient Sumerians used written records to improve government and business activities Why is it important to lean from the past Not to repeat our mistakes Classical management approaches Scientific management Administrative Principles Bureaucratic organisation Behavioural Management Approaches Follett’s Organizations as communities The Hawthorne studies Maslow’s theory of human needs Mcgregor’s Theory x and Theory Y Argyris Personality and organisation Modern Management foundations Organises as systems Contingency thinking Quality management Quantitative and analysis and tools Evidence-based management Contributions Frederick Taylor - Father of Scientific management He noticed that workers often did their jobs with wasted motions and without a constant approach. His resulted in inefficiency and low performance He believed the problem could be fixed if workers were taught to do their jobs in the best ways and ten were helped and guided by supervisors Four guiding principles of scientific management Rules of motion, standardized work and proper working conditions Select workers with the right abilities Train workers and give them incentives Support workers by planning and smoothing the way as they do their work Frank and Lillian Gilbreth Pioneered use of motitono studies as a management tool In one famous case, the gilbreaths cut down the number of motions used by bricklayers adn tripled their productivity Contributions from scientific management Make results-based compensation a performance incentive Carefully design jobs with efficient work methods Carefully select workers with the ability to perform the job Trian workers to execute activities to the best of their abilities Train supervisors to support workers so they can perform jobs to the best of their abilities Classical Management Adiminstative principle (Henro Fayol) 1919, after a career in French industry, Henri F published “adminisration Industrielle et Generale” (General and industrial management) in which we out like his views on the management of organiztion and workers Rules and duties in management Foresight - to complete a plan of action for the future Organization - To provide and mobilize resources to implement the plan Common- to lead, select and evaluate workers to get the best work toward the plan Coordination- to fit diverse efforts together and ensure information is shared and problems solved Control- to make sure things happen according to plan and to take necessary corrective action Classical management Bureacratic organiztion (Max Weber) Max weber (Bureaucrativ organization) - late 19th century German political economist who had a major impact in the fields of management and sociology Bureaucratic Organization An ideal, intentionally rational adn very efficient form of organization Based on the principles of logic, order and legitimate authority Characteristics of BO Clear division of labour Clear hierarchy of authority Formal rules and procedure Impersonality Careers based on merit What are some disadvantages of bureaucracy Takes a long time for problems to become solved bec there are procedures and there is a chain of people in command Having the power Rules have to follow Excessive paperwork or “red tape” Slowness in handling problems Rigidity in the face of shifting needs Resistance to change Employee apathy Behavioural Management Approaches (focus on understanding the elements that affect human behaviour in organisations) Follett’s Organizations as communites Mary park follett contributed to the transition from classical thinking inot behavioural management Groups and human cooperation Groups allow individuales too combine their talents for a greater good Organizations are cooperating “communites” of managers adn workers Managers job is to help people copperate and achive an integration of goals and intrests Forward-looking managment insight: Making every emploee an owner creates a sense of collective responsibility Prescursor of employrr ownership, profit sharing and gain sharing Buniess problems invovle a varity of inter realted factors Prescursor of systems thinking Private profits realtive to public good Precursor of managerial ethics and social respinsibility Hawthorne studies Took place at western electric chicago plan, a tran led by Harvards Elton Mayo set out to learn how econmic incentives and workplace conditions affected workers output Maing objective Intial study examined how ecomoin incentives adn physical conditions affected worker output (productivity) No consistent relationship found During experientmetn they had 2 groups The expertiant groups (impoved wokring ocnditions ) The control group ( no changes to original working conidtions) No consitant relationship found, perfomance in both groups increased even after removing incentives Social setting and human relations Concluded New “social setting” led workers to do good job Good “Human relations” = higher productivity The contect - The Great Depression (1929-1940) Employee attitudes and groups processes Osme thinsf satisifed some workers but not others People resticited output to adhere to groups norms (Avoid layoffs) Lessons from he hawthrone stufirs Social and human concerns are keys to prductivity Hawthrone effect - People who are singled out for special attention perform as expected Maslow’s Theory of human needs Human needs The work of psychologist Abraham Maslow in the area if human “needs,” also has had a major impact in the behavioual apporach to management Maslow’s hierarchy of human needs Self actualization needs Higherst level: need foe self fulfillment to grow and use abilites to fullest and most creative extent Esteem needs Needs fro esteem in eyes of others need for respect, prestige, recognition; need for self esteem, personal sense of competence, mastery Social needs Need for love, affection, sense of belongingness in ones relationship either other people Safett needs Need for security, protection and stability in teh events of day to day life Physiological needs Most basic of all human needs: need for biological maintence; food, water and phydical well being Principles Defict principle: A satidifed need is not a motivator of behaviour Progress principles: A need becomes a motivator once the preceding lower-level need is satisfied Both principles cease to operate at self actulilzation level McGregor’s Theories Thepry x assumes that workers; Dislike work Lack ambition Are irresponsible Resist change Prefer to be led Theoyry y assumes that workers are Willing to work Willing to accept responsibility Capable of self control Capable of self direction Imaginative and creative According to McGregor, Managers create: Self fulfilling prophecies Implications of Theory x and y Theory x managers: Create situations where workers become dependent, passive and reluctant Theory y managers create situations where workers respond with initiative and high performance Central to notions of empowerment and self management Argyris’s theory of adult personality Classical management principles and practices inhibit worker maturation and are inconsistent with the mature adult personality Management practices should accommodate the mature personality: Increasing task responsibility Increasing task variety Using participative decision making Modern Management Foundation Quantitative analysis and Tools Analytics: the use of large data bases and mathematics to solve problems and make informed decision using systematic analysis Organization as systems System Collection of interrelated parts that function together to achieve a common purpose Subsystem A smaller component of a larger system Open systems Organisations that interact with their environment Contingency thinking Tires to maths managerial responses with problem (situation) No “one best way” to manage The “appropriate way to to manage depends on the situations Quality management Qality anc competitive advantafe are linked Total quality managment (TQM) Comprehensive approach to contiou impovment on teh entire organization ISO certification Gloval quality management standards Refine and upgrade quality to meet ISO requirments Evidednce Based Managment Making management decision on “hard facts” about what really works
The advantage of direct method is that the teacher can control the class and fit in a lot of activity into a short class period. This leaves plenty of opportunities for the students to hone their skills, especially new ones. On the other hand, because the class is centered around the teacher, some students may not receive proper feedback, and creativity is limited. Also, the lesser talented athletes often tend to get lost in the shuffle while the great athletes shine. However, there are now a multitude of various teaching strategies that can be employed in addition to that method. Ex: Announcements, Module/Unit introductions, Descriptions/modeling of assignments and learning activities, Written or video lectures, Demonstration videos, Presentations, Discussions moderated by instructors, Interactive tutorials. Indirect Method The Indirect Teaching Style allows students to be involved in their own learning through experience and other peer’s knowledge. Students can use critical thinking to expand their learning capabilities by seeing what others may be doing correct and adjusting this to their own knowledge. The Indirect approach is the opposite of what the direct style suggests, but they are both strictly related, meaning you can’t have one without the other. Direct teaching: The instructor stands in front of the class or group and lectures or advises. Indirect teaching: The instructor assumes a more passive role and guides the student interactions. Movement exploration: Incorporates the use of equipment that involves movement. Movement Exploration The movement exploration class is founded on developing a strong, positive association to physical activity. Classes are aimed at developing movement skills and foundational strength through fun and engaging activities. The activities are age appropriate and include games, challenges, and exploration that positively challenge children’s competency while improving their physical capabilities. Skills such as the ability to climb, hold animal shapes, gymnastic style activities, and the introduction to athletic motor skill competencies are the foundations to youth training. This class provides the introduction to strength training to give children the opportunity to learn the skills required to safely and confidently engage in resistance training. Cooperative Skills Cooperative activities teach students to work together for their group's common good. By participating in these activities, students can learn the skills of listening, discussing, thinking as a group, group decision making, and sacrificing individual wants for the common good. There are two primary objectives guiding the teaching of cooperative activities. First, cooperative activities allow students to apply a variety of fundamental motor skills in a unique setting. Students are typically asked to perform motor skills in a specific way, such as “skip in general space” or “balance on one foot and one elbow.” Cooperative activities ask students to perform different activities such as skip with their hands on the shoulders of someone in front of them, walk with big steps while placing their feet on small spots, or walk across an area blindfolded while someone directs their moves. Due to the uniqueness of such experiences, students often find cooperative activities exciting and motivating. Second, cooperative activities are a wonderful medium for teaching social and emotional learning (SEL). SEL offers students an opportunity to understand and manage their emotions. In addition, such activities offer an opportunity to show empathy for others and develop positive relationships. Cooperative activities demand that all students play a role in completing the task or solving the movement problem. Every student, regardless of ability level, is important and contributes to group goals. 9 traits a PE teacher often needs Here are nine essential traits of an effective PE teacher: 1. Athletic ability Athletic ability is an essential trait for a PE teacher because they're often showing kids how to perform exercises. To demonstrate proper form and encourage the kids to continue their fitness education, it's important they can perform the exercises themselves. Having experience with fitness training can enhance a PE teacher's lesson planning because they're familiar with how each exercise affects a person's body. Athletic ability can also refer to an aptitude for sports and games. PE teachers can instruct students on how to play these games or lead after-school activities involving them, like soccer or basketball. An aptitude for sports and games can help a PE teacher encourage students to participate in the activities during class. If the PE teacher enjoys physical activity, they may make the lessons more enjoyable for the student. 2. Teaching ability A PE teacher is a member of a school faculty, so it's essential they have the teaching ability that allows them to communicate lessons to students. There are various skills involved in teaching, including the technical capabilities associated with each professional's particular field. Learning these skills can help PE teacher plan their lessons effectively and connect with their students, meaning they can encourage students to practice fitness skills in optimal ways for their health. Here are some important teaching skills for PE teachers: Having an engaging classroom presence Real-world learning Project building Lesson planning Technology 3. Interpersonal skills PE coaches are part of faculty teams, so working alongside other teachers is an essential part of their job. They often collaborate with a student's general education teacher to address any behavioral issues that arise. They can also team up with other classes to plan activities for students, like field days and special field trips. Communicating with peers can ensure these interactions remain productive and create opportunities for more fulfilling lessons. Teachers can also model emotional skills for their students by displaying positive social interactions. Interpersonal skills can also help PE teachers interact with students and their families. If a student can make a student feel comfortable expressing their needs and preferences, they can often perform physical exercises or play games to the best of their individual capacities. Understanding how to soothe nerves and support students' emotional needs are important examples of interpersonal skills. When interacting with family members, you may use some of these same techniques to communicate effectively and best uplift students. 4. Written and verbal communication Both verbal and written communication is important for PE teachers because they often communicate with students, families and various personnel on a day-to-day basis. For example, a PE teacher uses their communication skills in a lesson plan to describe any student assignments or expectations accurately. They may also write instructions in a document, then explain them in a classroom lecture. They also use communication skills to share their lesson plans with other PE teachers during conferences or classroom development exercises. Many teachers continue to learn their trade even after working as a teacher for many years. They may share tips with each other or special lessons they've developed if they feel another teacher may benefit from it. Creating a community can help PE teachers continue to expand their teaching methodology and receive feedback on their lessons. 5. Patience and adaptability Working with children can require patience and adaptability because they're encountering many new concepts at the same time and learning how to regulate their emotions. As a result, it's important to treat them with patience and care while they're in your class so they can feel comfortable and feel motivated to complete assignments. As children become teenagers, they may require patience and adaptability to account for their changing bodies and attention spans. Like any job where you perform tasks in real-time, certain circumstances may occur that require you to adapt lesson plans. For example, if the weather turns from sunshine to rain on a day you planned for students to run a mile outside, you may need to adapt the lesson plan so they can practice endurance sports inside a gymnasium instead. 6. Organization PE teachers can use organization skills to improve their lesson planning sessions. For example, they can keep their plans in one place, and determine which parts of a semester or quarter to introduce new concepts. Throughout the year, these objectives may change because of unforeseen setbacks, but organizational skills can help PE teachers control the trajectory of their class curriculum. PE teachers can also use organizational skills to maintain their classroom space. Physical education frequently requires balls, equipment and tools to play games that may be on a lesson plan. They also organize equipment and decide where to store it within their classroom or storage space. 7. Creativity Creativity can help a PE teacher develop fun ways to introduce new material to their students or reinforce previous lessons. They can teach new games or devise interesting ideas to change the rules of a game to help keep students engaged. To find inspiration for their lesson plans, they can turn to personal hobbies or media aspects they enjoy, like movie scenes, songs or dances. A varied lesson plan can foster more engagement among students who prefer action- based learning activities, rather than lectures. 8. Focus Focus is an essential trait of a PE teacher because students often require their full attention during class, especially if they're learning a complicated physical task. You can focus your lesson plans around specific elements of physical education you believe are essential for students of a certain age group or skill level. If students require mentorship, you can also focus on each student's needs to supply them with a steady support system. Focusing on your students can help guide your career purpose. It can give you a core value system that informs your lesson plans and mentorship activities. This passion for your student's well-being can also help you become an advocate for each student in your class. You can also help organize funding for different field trips or establish after-school activities to support their interests. 9. Enthusiasm for teaching sports and fitness Enthusiasm is essential for a PE teacher. Many physical education activities require high energy and may suit someone who enjoys teaching them to others. Being an effective PE teacher also requires an enthusiasm for working with kids and making a positive impact on their lives.
Semana 1: Introducción a las Ondas Temas: - Definición y clasificación de ondas: mecánicas vs electromagnéticas, longitudinales vs transversales. - Características básicas de las ondas: longitud de onda, frecuencia, amplitud, velocidad. Actividades: - Clase teórica sobre los conceptos básicos. - Ejercicios de clasificación y caracterización de diferentes tipos de ondas. - Experimentos simples para observar ondas longitudinales y transversales (por ejemplo, usando un resorte y agua). Semana 2: Propagación del Sonido Temas: - Ondas sonoras como ondas mecánicas. - Medios de propagación del sonido. - Reflexión y refracción del sonido. Actividades: - Demostraciones en clase utilizando diferentes medios (aire, agua, sólidos). - Análisis de casos prácticos de reflexión y refracción del sonido. - Ejercicios prácticos de cálculo de velocidad del sonido en distintos medios. Semana 3: Propagación de la Luz **Temas:** - Ondas luminosas como ondas electromagnéticas. - Reflexión y refracción de la luz. - Principio de Huygens. Actividades: - Clase teórica sobre la naturaleza de la luz. - Experimentos con espejos y lentes para observar la reflexión y la refracción. - Problemas y ejercicios aplicando el principio de Huygens. Semana 4: Fenómenos Ondulatorios Temas - Interferencia, difracción y polarización de la luz y el sonido. Actividades: - Experimentos demostrativos de interferencia (usando agua y luz). - Ejercicios sobre difracción y su relación con la longitud de onda. - Actividades prácticas para observar la polarización de la luz. Semana 5: Cualidades del Sonido y la Luz Temas: - Tono, intensidad y audibilidad del sonido. - Color y visibilidad de la luz. Actividades: - Clase teórica sobre las cualidades del sonido y la luz. - Experimentos con fuentes de sonido y luz para observar diferentes tonos, intensidades y colores. - Ejercicios de cálculo de frecuencias y longitudes de onda para diferentes sonidos y colores. Semana 6: Interacción de Cargas Eléctricas Temas: - Tipos de cargas eléctricas. - Fuerzas eléctricas y magnéticas: atracción y repulsión. Actividades: - Demostraciones prácticas sobre la electrización por fricción y contacto. - Experimentos con imanes y electroscopios. - Resolución de problemas sobre fuerzas eléctricas y magnéticas. Semana 7: Electroimanes y Circuitos Eléctricos Temas: - Construcción y funcionamiento de un electroimán. - Corriente y voltaje en circuitos resistivos sencillos en serie, paralelo y mixtos. Actividades: - Construcción de electroimanes en el laboratorio. - Medición de corrientes y voltajes en diferentes configuraciones de circuitos. - Ejercicios prácticos con circuitos en serie y paralelo.