MOTION IN TWO DIMENSIONS Name 6. A car travels clockwise once around the track shown below. Starting from rest at point A, the car speeds up at a constant rate until just past point C. By the time it reaches D it is traveling at a constant speed. It then travels at a constant speed the rest of the way around the track. a. On the diagram at right, draw velocity vectors for each of the points A-G. Be sure that the relative magnitudes of your vectors are consistent. A Straight line B b. On the diagram at right, draw the acceleration vectors for each of the points A-G. If the acceleration is zero at any point(s). indicate that explicitly. c. How does the magnitude of the acceleration at E compare to that at G? Explain. G A Straight line Mech HW-23

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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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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MOTION IN TWO DIMENSIONS
Name
6. A car travels clockwise once around the track shown below. Starting from rest at point A, the car
speeds up at a constant rate until just past point C. By the time it reaches D it is traveling at a
constant speed. It then travels at a constant speed the rest of the way around the track.
a. On the diagram at
right, draw velocity
vectors for each of
the points A-G. Be
sure that the relative
magnitudes of your
vectors are
consistent.
A
Straight line
B
b. On the diagram at
right, draw the
acceleration vectors
for each of the
points A-G. If the
acceleration is zero
at any point(s).
indicate that
explicitly.
c. How does the
magnitude of the
acceleration at E
compare to that at
G? Explain.
G
A
Straight line
Mech
HW-23
Transcribed Image Text:MOTION IN TWO DIMENSIONS Name 6. A car travels clockwise once around the track shown below. Starting from rest at point A, the car speeds up at a constant rate until just past point C. By the time it reaches D it is traveling at a constant speed. It then travels at a constant speed the rest of the way around the track. a. On the diagram at right, draw velocity vectors for each of the points A-G. Be sure that the relative magnitudes of your vectors are consistent. A Straight line B b. On the diagram at right, draw the acceleration vectors for each of the points A-G. If the acceleration is zero at any point(s). indicate that explicitly. c. How does the magnitude of the acceleration at E compare to that at G? Explain. G A Straight line Mech HW-23
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