*40. | Multiple-Concept Example 10 reviews the approach and some of the concepts that are pertinent to this problem. The drawing shows a model for the motion of the human forearm in throwing a dart. Because of the force M applied by the triceps muscle, the fore- 4. arm can rotate about an axis at the elbow joint. Assume that the fore- arm has the dimensions shown in the drawing and a moment of inertia of 0.065 kg · m² (including the effect of the dart) relative to the axis at the elbow. Assume also that the force M acts perpendicular to the forearm. Axis at elbow joigt 0.28 m Ignoring the effect of gravity and any frictional forces, determine the magnitude of the force M needed to give the dart a tangential speed of 5.0 m/s in 0.10 s, starting from rest. 0.025 m M-

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Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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*40.
| Multiple-Concept Example 10 reviews the approach and
some of the concepts that are pertinent to this problem. The
drawing shows a model for the motion of the human forearm in throwing
a dart. Because of the force M applied by the triceps muscle, the fore-
4.
arm can rotate about an axis at the
elbow joint. Assume that the fore-
arm has the dimensions shown in the
drawing and a moment of inertia of
0.065 kg · m² (including the effect
of the dart) relative to the axis at the
elbow. Assume also that the force
M acts perpendicular to the forearm. Axis at elbow joigt
0.28 m
Ignoring the effect of gravity and
any frictional forces, determine the
magnitude of the force M needed to
give the dart a tangential speed of
5.0 m/s in 0.10 s, starting from rest.
0.025 m
M-
Transcribed Image Text:*40. | Multiple-Concept Example 10 reviews the approach and some of the concepts that are pertinent to this problem. The drawing shows a model for the motion of the human forearm in throwing a dart. Because of the force M applied by the triceps muscle, the fore- 4. arm can rotate about an axis at the elbow joint. Assume that the fore- arm has the dimensions shown in the drawing and a moment of inertia of 0.065 kg · m² (including the effect of the dart) relative to the axis at the elbow. Assume also that the force M acts perpendicular to the forearm. Axis at elbow joigt 0.28 m Ignoring the effect of gravity and any frictional forces, determine the magnitude of the force M needed to give the dart a tangential speed of 5.0 m/s in 0.10 s, starting from rest. 0.025 m M-
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