Draw the velocity and acceleration graphs for the swinging bob that has the position-time graph shown. Recall that the slope of position- time is velocity, and slope of veloc- ity-time is acceleration. Make sure that the velocity and acceleration at t, correspond in size and direction to the velocity and acceleration vectors drawn in the diagram above. е. f. On each of the graphs show the posi- tion, velocity, and acceleration each instant t,, t, and t. These should correspond to the size and direction (+/-) of the position, velocity and acceleration vectors drawn the pen- dulum diagram above. Consider the positive direction to be to the right in that diagram so that x, is positive and v, a, are negative. (The position X, at time t, is already drawn. It has a displacement to the right which is positive but is not at its maximum displacement.) 17

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TIME
TIME
TIME
Figure 11-4
ACCELERATION
VELOCITY
POSITION
3D
Transcribed Image Text:TIME TIME TIME Figure 11-4 ACCELERATION VELOCITY POSITION 3D
Draw the velocity and acceleration
graphs for the swinging bob that
has the position-time graph shown.
Recall that the slope of position-
time is velocity, and slope of veloc-
ity-time is acceleration. Make sure
that the velocity and acceleration at
t, correspond in size and direction
to the velocity and acceleration
vectors drawn in the diagram above.
е.
On each of the graphs show the posi-
tion, velocity, and acceleration each
instant t,, t, and t3. These should
correspond to the size and direction
(+/-) of the position, velocity and
acceleration vectors drawn the pen-
dulum diagram above. Consider the
positive direction to be to the right
in that diagram so that x, is positive
and v1, a, are negative. (The position
x, at time t, is already drawn. It has
a displacement to the right which is
positive but is not at its maximum
displacement.)
f.
Transcribed Image Text:Draw the velocity and acceleration graphs for the swinging bob that has the position-time graph shown. Recall that the slope of position- time is velocity, and slope of veloc- ity-time is acceleration. Make sure that the velocity and acceleration at t, correspond in size and direction to the velocity and acceleration vectors drawn in the diagram above. е. On each of the graphs show the posi- tion, velocity, and acceleration each instant t,, t, and t3. These should correspond to the size and direction (+/-) of the position, velocity and acceleration vectors drawn the pen- dulum diagram above. Consider the positive direction to be to the right in that diagram so that x, is positive and v1, a, are negative. (The position x, at time t, is already drawn. It has a displacement to the right which is positive but is not at its maximum displacement.) f.
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