Anza has a mass of 59.8 kg. Ben has a mass of 43.1 kg. The cart has a mass of 27.8 kg. Anza, Ben, and the cart all started from rest (in the laboratory frame of reference). Anza Ben ? hen Ben jumped to the right. Anza remained stationary relative to the cart which moved to the left (along with her). Ben jumped with a horizontal speed of 3.6 m/s relative to the moving cart. In other words, after Ben umped, Anza would have seen him moving away from her with a speed of 3.6 meters per second. After Ben jumped, what was the velocity of the cart and Anza (in meters per second) in the laboratory reference frame? Consider the positive direction to point to the right. The sign of your answer (positive or negative) is important.
Anza has a mass of 59.8 kg. Ben has a mass of 43.1 kg. The cart has a mass of 27.8 kg. Anza, Ben, and the cart all started from rest (in the laboratory frame of reference). Anza Ben ? hen Ben jumped to the right. Anza remained stationary relative to the cart which moved to the left (along with her). Ben jumped with a horizontal speed of 3.6 m/s relative to the moving cart. In other words, after Ben umped, Anza would have seen him moving away from her with a speed of 3.6 meters per second. After Ben jumped, what was the velocity of the cart and Anza (in meters per second) in the laboratory reference frame? Consider the positive direction to point to the right. The sign of your answer (positive or negative) is important.
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Chapter1: Units, Trigonometry. And Vectors
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
Transcribed Image Text:Anza has a mass of 59.8 kg. Ben has a mass of 43.1 kg. The cart has a mass of 27.8 kg. Anza, Ben, and the cart all started from rest (in the laboratory frame of reference).
Anza
Ben
VB
Then Ben jumped to the right. Anza remained stationary relative to the cart which moved to the left (along with her). Ben jumped with a horizontal speed of 3.6 m/s relative to the moving cart. In other words, after Ben
jumped, Anza would have seen him moving away from her with a speed of 3.6 meters per second. After Ben jumped, what was the velocity of the cart and Anza (in meters per second) in the laboratory reference frame?
Consider the positive direction to point to the right. The sign of your answer (positive or negative) is important.

Transcribed Image Text:This question follows the situation in the previous question, but read and calculate carefully. The numbers have changed.
Anza has a mass of 60.4 kg. Ben has a mass of 48.5 kg. The cart has a mass of 25.6 kg. Anza, Ben, and the cart all started from rest (in the laboratory frame of reference). While Anza remained standing on the cart, Ben
jumped to the right (just as was the case in the previous question). Ben jumped to the right with a speed of 3.4 m/s relative to the moving cart (so Anza would have seen Ben moving away from her with a speed of 3.4
m/s).
Anza
Ben
VA
-
Then (after Ben jumped to the right) Anza jumped to the left. Anza jumped with a horizontal speed of 3.6 m/s relative to the moving cart. In other words, after both Ben and Anza jumped, Anza would have seen the cart
moving away from her with a speed of 3.6 meters per second. After Anza jumped, what was the velocity of the cart (in meters per second) in the laboratory reference frame? Consider the positive direction to point to
the right. The sign of your answer (positive or negative) is important.
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