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Surface Area & Volume of Pyramids
Quiz by Mrs. BensonVoss
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Surface area and Volume of prisms and pyramids
Pythagoras theorem, perimeter and area of composite shapes, surface area of pyramids and cones, volume of pyramids and cones
Surface Area & Volume of Cones
Surface Area & Volume of Cylinders
E+CZE The Surface Area and Volume of the 3d shapes.
ICSE Mathematics grade 9 CHP-20 Solids- Surface Area and volume of 3D solids
Area The amount of space inside a shape. We found the area of the rectangle. 面积 Volume The amount of space something takes up. The box has a volume of 12 cubic meters. 体积 Surface area The total area of all sides of a 3D shape. We calculated the surface area of the cube. 表面积 Coordinates Numbers that show a point’s location on a graph. The coordinates of the point are (2,3). 坐标 Polygon A flat shape with straight sides. A triangle is a polygon. 多边形 Prism A solid shape with two identical ends. We studied a rectangular prism in math class. 棱柱 Net (geometry) A flat pattern that can be folded into a 3D shape. We made a cube from its net. 展开图 Data Information or numbers collected for study. We used data from our survey. 数据 Representatio n A way to show something, like a graph or chart. The graph is a visual representation of data. 表示;图 示 Model Something used to show or explain an idea. We built a model of a volcano.
SYI-1.D: Describe the structure and/ or function of subcellular components and organelles. ★ SYI-1.E: Explain how subcellular components and organelles contribute to the function of the cell. ★ SYI-1.F: Describe the structural features of a cell that allow organisms to capture, store, and use energy. ★ ENE-1.B: Explain the effect of surface area-to-volume ratios on the exchange of materials between cells or organisms and the environment. ★ ENE-1.C: Explain how specialized structures and strategies are used for the efficient exchange of molecules to the environment. ★ ENE-2.A: Describe the roles of each of the components of the cell membrane in maintaining the internal environment of the cell. ★ ENE-2.B: Describe the Fluid Mosaic Model of cell membranes. ★ ENE-2.C: Explain how the structure of biological membranes influences selective permeability. ★ ENE-2.D: Describe the role of the cell wall in maintaining cell structure and function. ★ ENE-2.E: Describe the mechanisms that organisms use to maintain solute and water balance. ★ ENE-2.F: Describe the mechanisms that organisms use to transport large molecules across the plasma membrane. ★ ENE-2.G: Explain how the structure of a molecule affects its ability to pass through the plasma membrane. ★ ENE-2.H: Explain how concentration gradients affect the ★ movement of molecules across membranes. ★ ENE-2.I: Explain how osmoregulatory mechanisms contribute to the health and survival of organisms. ★ ENE-2.J: Describe the processes that allow ions and other molecules to move across membranes. ★ ENE-2.K: Describe the membrane-bound structures of the eukaryotic cell. ★ ENE-2.L: Explain how internal membranes and membrane- bound organelles contribute to compartmentalization of eukaryotic cell functions. ★ EVO-1.A: Describe similarities and/or differences in compartmentalization between prokaryotic and eukaryotic cells. ★ EVO-1.B: Describe the relationship between the functions of endosymbiotic organelles and their free-living ancestral counterparts