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5 questions
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  • Q1
    Identify the variables given and implied in the scenario above.
    Question Image
    dx=1.4m, dy=4m, g=-12m/s^2
    dx=4m, dy=1.4m, g=-9.8m/s^2
    dx=1.4m, dy=4m, g=-9.8m/s^2
    dx=4m, dy=1.4m, g=-12m/s^2
    120s
    112.39.c.4
  • Q2
    What equation is necessary to solve for how long it takes the marble to land?
    Question Image
    d=vit+1/2at^2
    dx=vxt
    dy=1/2gt^2
    F=ma
    120s
    112.39.c.4
  • Q3
    According to the above information and diagram, what initial horizontal velocity must the marble have to strike the target?
    Question Image
    7.49m/s
    2.86m/s
    14m/s
    1.55m/s
    120s
    112.39.c.4
  • Q4
    If the marble is replaced with a massive bowling ball, how would the horizontal velocity compare to the velocity of the marble to hit the same 4m target (assuming no air resistance)?
    Question Image
    Decreased
    Increased
    Same
    120s
    112.39.c.4
  • Q5
    What would a vertical velocity vs. time graph look like for the marble?
    Question Image
    Straight line with a positive slope
    Curved line with a positive increasing slope
    Straight line with a negative slope
    Curved line with a negative increasing slope
    120s
    112.39.c.4

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