A pendulum 60 cm long with 40 g mass attached at the end of the string is elevated at 15° and released. a) the string when the pendulum is exactly vertical. b) elastically strikes a block of 70 g mass that was at rest and the block slides along the surface of a table. Find the velocity of the block. Find the velocity of the pendulum and tension force in As the pendulum reaches the vertical position it c) table with coefficient of friction of 0.01 and compresses a spring. How far did the block slide before being stopped by the spring with k=1 N/m, compressed by 0.1 cm. The block slides some distance d on the surface of the 150 00000000 |

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A pendulum 60 cm long with 40 g mass attached at the end of the
string is elevated at 15° and released.
a)
the string when the pendulum is exactly vertical.
b)
elastically strikes a block of 70 g mass that was at rest and the
block slides along the surface of a table. Find the velocity of the
block.
Find the velocity of the pendulum and tension force in
As the pendulum reaches the vertical position it
c)
table with coefficient of friction of 0.01 and compresses a spring.
How far did the block slide before being stopped by the spring with
k=1 N/m, compressed by 0.1 cm.
The block slides some distance d on the surface of the
150
00000000 |
Transcribed Image Text:A pendulum 60 cm long with 40 g mass attached at the end of the string is elevated at 15° and released. a) the string when the pendulum is exactly vertical. b) elastically strikes a block of 70 g mass that was at rest and the block slides along the surface of a table. Find the velocity of the block. Find the velocity of the pendulum and tension force in As the pendulum reaches the vertical position it c) table with coefficient of friction of 0.01 and compresses a spring. How far did the block slide before being stopped by the spring with k=1 N/m, compressed by 0.1 cm. The block slides some distance d on the surface of the 150 00000000 |
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