7. Falling Objects: a. Who stated that "objects fall at a speed proportional to their weight and inversely proportional to the density of the fluid they are immersed in"? b. Who stated that, "in the absence of air resistance, all bodies fall with the same accéleration, independent of their mass"? C. A bowling ball and a feather are dropped from the Indian River Bridge. Which will hit the water first? d. A golf ball and a bowling ball are dropped from the Indian River Bridge. Which will hit the water first? e. Explain the difference between the answers in part c) and d).
7. Falling Objects: a. Who stated that "objects fall at a speed proportional to their weight and inversely proportional to the density of the fluid they are immersed in"? b. Who stated that, "in the absence of air resistance, all bodies fall with the same accéleration, independent of their mass"? C. A bowling ball and a feather are dropped from the Indian River Bridge. Which will hit the water first? d. A golf ball and a bowling ball are dropped from the Indian River Bridge. Which will hit the water first? e. Explain the difference between the answers in part c) and d).
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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![7. Falling Objects:
a. Who stated that "objects fall at a speed proportional to their weight and inversely
proportional to the density of the fluid they are immersed in"?
b. Who stated that, "in the absence of air resistance, all bodies fall with the same
accéleration, independent of their mass"?
C. A bowling ball and a feather are dropped from the Indian River Bridge. Which will hit
the water first?
d. A golf ball and a bowling ball are dropped from the Indian River Bridge. Which will hit
the water first?
e. Explain the difference between the answers in part c) and d).
8. A cannonball is shot from a cannon at 45-degree angle:
a. In Galeleo's Kinetic equations, which variable must be constant for the equations to give
the correct results?
b. If the x axis represents the horizonal axis, what is the value of a,?
c. Assuming there was no air resistance, would final velocity of the cannonball be (1)
greater than initial velocity, (2) less than initial velocity, or (3) the same as initial velocity
when is at its maximum height?
d. Assuming there was air resistance, would final velocity of the cannonball be (1) greater
than initial velocity, (2) less than initial velocity, or (3) the same as initial velocity when is
at its maximum height?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F4a6e4794-5644-431d-9e96-b37fbaf0b60a%2F6260a59a-16a1-4dfd-a59d-0244587c8aca%2F1nc848_processed.jpeg&w=3840&q=75)
Transcribed Image Text:7. Falling Objects:
a. Who stated that "objects fall at a speed proportional to their weight and inversely
proportional to the density of the fluid they are immersed in"?
b. Who stated that, "in the absence of air resistance, all bodies fall with the same
accéleration, independent of their mass"?
C. A bowling ball and a feather are dropped from the Indian River Bridge. Which will hit
the water first?
d. A golf ball and a bowling ball are dropped from the Indian River Bridge. Which will hit
the water first?
e. Explain the difference between the answers in part c) and d).
8. A cannonball is shot from a cannon at 45-degree angle:
a. In Galeleo's Kinetic equations, which variable must be constant for the equations to give
the correct results?
b. If the x axis represents the horizonal axis, what is the value of a,?
c. Assuming there was no air resistance, would final velocity of the cannonball be (1)
greater than initial velocity, (2) less than initial velocity, or (3) the same as initial velocity
when is at its maximum height?
d. Assuming there was air resistance, would final velocity of the cannonball be (1) greater
than initial velocity, (2) less than initial velocity, or (3) the same as initial velocity when is
at its maximum height?
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