(3) Calculate how far away from the table the ball will land. Show your work. Feel free to handwrite your calculations. Hint: this is the final horizontal position after the ball has left the table. (4) Determine the total amount of water that would flow through the pipe of the water clock during the entirety of the ball's motion. From when it started rolling till it hit the floor. Show your work. Feel free to handwrite your calculations.

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please help with part 3 and 4 of this question highlighted in yellow, thank you!

Instruments for timing is times of Galileo. The Water Clock: You soldered a small pipe at the
bottom of a large vessel that could be filled with water. When measuring how long it takes an
object to move from point A to point B you took your finger away from the pipe when the
object was at point A so water squirted into a glass. As soon as the object arrived at point B you
covered the pipe. Then you used a sensitive balance to determine how much more weight the
glass had acquired.
Suppose you and Galileo take the following data on the motion of the ball before it rolls off the
table.
• Table height = 1.08 meters
• Distance the ball moves along the table = 0.900 meters
• Mass of water ejected from the pipe: 79.8 grams
• Amount of water squirting out of the pipe each second: 132.6 grams/second
Calculate the speed of the ball as it rolls along the table. (assume that there is no friction)
Show your work. Feel free to handwrite your calculations.
Calculate how long it will take for the ball to reach the floor once it rolls off the table and
is in free fall. Show your work. Feel free to handwrite your calculations.
Hint Avoid using both x and y directional components at the same time. Only one set of
components can be used to solve this given our knowledge about the problem.
Transcribed Image Text:Instruments for timing is times of Galileo. The Water Clock: You soldered a small pipe at the bottom of a large vessel that could be filled with water. When measuring how long it takes an object to move from point A to point B you took your finger away from the pipe when the object was at point A so water squirted into a glass. As soon as the object arrived at point B you covered the pipe. Then you used a sensitive balance to determine how much more weight the glass had acquired. Suppose you and Galileo take the following data on the motion of the ball before it rolls off the table. • Table height = 1.08 meters • Distance the ball moves along the table = 0.900 meters • Mass of water ejected from the pipe: 79.8 grams • Amount of water squirting out of the pipe each second: 132.6 grams/second Calculate the speed of the ball as it rolls along the table. (assume that there is no friction) Show your work. Feel free to handwrite your calculations. Calculate how long it will take for the ball to reach the floor once it rolls off the table and is in free fall. Show your work. Feel free to handwrite your calculations. Hint Avoid using both x and y directional components at the same time. Only one set of components can be used to solve this given our knowledge about the problem.
(3) Calculate how far away from the table the ball will land. Show your work. Feel free to
handwrite your calculations.
Hint: this is the final horizontal position after the ball has left the table.
(4) Determine the total amount of water that would flow through the pipe of the water
clock during the entirety of the ball's motion. From when it started rolling till it hit the floor.
Show your work. Feel free to handwrite your calculations.
Transcribed Image Text:(3) Calculate how far away from the table the ball will land. Show your work. Feel free to handwrite your calculations. Hint: this is the final horizontal position after the ball has left the table. (4) Determine the total amount of water that would flow through the pipe of the water clock during the entirety of the ball's motion. From when it started rolling till it hit the floor. Show your work. Feel free to handwrite your calculations.
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