A per son bends forward to lift a load with his back. To see that this is not a good way to lift, we will find the large induced force  R = Rx(i) + Ry(j) occurring in the spine by lifting a 200-N object. The spine and the upper body are represented as a uniform horizontal rod of weight 350 N, pivoted at the base of the spine. The erector spinalis muscle, attached at a point 2/3 of the way up the spine, maintains the position of the back with tension T. The angle between the spine and this muscle theta = 12 degrees.   Find the magnitude of force R at the base of the spine.

University Physics Volume 2
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Chapter1: Temperature And Heat
Section: Chapter Questions
Problem 114AP: Repeat the preceding problem with 2.00 kg of ice instead of 1.00 kg.
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A per son bends forward to lift a load with his back.

To see that this is not a good way to lift, we will find the large induced force  R = Rx(i) + Ry(j) occurring in the spine by lifting a 200-N object.

  • The spine and the upper body are represented as a uniform horizontal rod of weight 350 N, pivoted at the base of the spine.
  • The erector spinalis muscle, attached at a point 2/3 of the way up the spine, maintains the position of the back with tension T.
  • The angle between the spine and this muscle theta = 12 degrees.

 

Find the magnitude of force R at the base of the spine.

Back muscle
Pivot
a
R₂
T 12.0°
Rx
b
350 N
200 N
Transcribed Image Text:Back muscle Pivot a R₂ T 12.0° Rx b 350 N 200 N
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