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5. Compare the time it takes a feather and a bowling ball to fall to the ground if they are released from rest inside a
5. Compare the time it takes a feather and a bowling ball to fall to the ground if they are released from rest inside a vacuum at the same time and from the same height. Explain. Objects with different masses will fall at the same rate in a vacuum, regardless of their weight. This principle is known as the "equivalence principle," and it states that the gravitational force acting on an object is proportional to its mass. Therefore, if a feather and a bowling ball are released from rest inside a vacuum at the same time and from the same height, they will both reach the ground at the same time. This is because the force of gravity acting on each object is 6. the same, despite their differences in mass. Use the data below that a student collected by measuring the magnitude of the gravitation force acting on varying masses for parts ac. | Mass (kg) Magnitude of Gravitational Force (N) l 0 0 | 0.50 4.87 1.00 9.79 1.50 14.80 2.00 20.02 2.50 24.41 | 3.00 27.42 a) Graph the data using the graph paper on the following page. b) Calculate the slope from a line of best fit of your graph. Answer to two significant digits. c) What does the slope represent
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