Elements of the lower arm are shown in the figure. The mass of the forearm is 2.3 kg with mass center at G. Determine the combined moment about the elbow pivot O of the weights of the forearm and the 3.6-kg homogeneous sphere. What must the biceps tension force be so that the overall moment about O is zero? T 50 mm 55 -G 150 mm 2.3(9.81) N 3.6(9.81) N 325 mm

International Edition---engineering Mechanics: Statics, 4th Edition
4th Edition
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:Andrew Pytel And Jaan Kiusalaas
Chapter4: Coplanar Equilibrium Analysis
Section: Chapter Questions
Problem 4.23P: The center of gravity of the 850-N man is at G. If the man pulls on the rope with a 388-N force,...
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2/40 Elements of the lower arm are shown in the figure.
The mass of the forearm is 2.3 kg with mass center
at G. Determine the combined moment about the
elbow pivot O of the weights of the forearm and the
3.6-kg homogeneous sphere. What must the biceps
tension force be so that the overall moment about O
is zero?
50 mm
55°
150 mm
2.3(9.81) N
3.6(9.81) N
325 mm
Problem 2/40
II
>
Transcribed Image Text:2/40 Elements of the lower arm are shown in the figure. The mass of the forearm is 2.3 kg with mass center at G. Determine the combined moment about the elbow pivot O of the weights of the forearm and the 3.6-kg homogeneous sphere. What must the biceps tension force be so that the overall moment about O is zero? 50 mm 55° 150 mm 2.3(9.81) N 3.6(9.81) N 325 mm Problem 2/40 II >
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