(You need to show your work) 1. In the figure of the simple pendulum below, the mass is released from rest on the right at the position marked A, and moves along the circular arc to the left, coming momentarily to rest at position E. Draw arrows showing the direction of the tangential acceleration and centripetal acceleration vectors at the six different positions A, B, C, D, and E. The absolute length of the vectors is not important, but roughly indicate by the lengths the relative changes in the acceleration magnitudes. A
(You need to show your work) 1. In the figure of the simple pendulum below, the mass is released from rest on the right at the position marked A, and moves along the circular arc to the left, coming momentarily to rest at position E. Draw arrows showing the direction of the tangential acceleration and centripetal acceleration vectors at the six different positions A, B, C, D, and E. The absolute length of the vectors is not important, but roughly indicate by the lengths the relative changes in the acceleration magnitudes. A
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![(You need to show your work)
1. In the figure of the simple pendulum below, the mass is released from rest on the right at the
position marked A, and moves along the circular arc to the left, coming momentarily to rest at
position E. Draw arrows showing the direction of the tangential acceleration and centripetal
acceleration vectors at the six different positions A, B, C, D, and E. The absolute length of the
vectors is not important, but roughly indicate by the lengths the relative changes in the acceleration
magnitudes.
B
O](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F7d688b34-c43a-4a2a-9e75-79997b42342d%2Fa6a603d0-9ae6-4077-b462-fc005cb2a71d%2Fohxwh5l.jpeg&w=3840&q=75)
Transcribed Image Text:(You need to show your work)
1. In the figure of the simple pendulum below, the mass is released from rest on the right at the
position marked A, and moves along the circular arc to the left, coming momentarily to rest at
position E. Draw arrows showing the direction of the tangential acceleration and centripetal
acceleration vectors at the six different positions A, B, C, D, and E. The absolute length of the
vectors is not important, but roughly indicate by the lengths the relative changes in the acceleration
magnitudes.
B
O
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