cm 0 50 cm In brachiation, monkeys move from tree branch to tree branch by swinging from their arms. In the position shown in the figure (left), draw a free body diagram on the provided axes in the figure (right) for the monkey, assuming that it is momentarily at rest. (Label the forces F and Ŵ with subscripts on each, and include the angle). Let the mass of the monkey be 10 kg, 0 = 30°, and the centre of mass of the monkey to be 50 cm from its centre of mass as shown in the figure.
cm 0 50 cm In brachiation, monkeys move from tree branch to tree branch by swinging from their arms. In the position shown in the figure (left), draw a free body diagram on the provided axes in the figure (right) for the monkey, assuming that it is momentarily at rest. (Label the forces F and Ŵ with subscripts on each, and include the angle). Let the mass of the monkey be 10 kg, 0 = 30°, and the centre of mass of the monkey to be 50 cm from its centre of mass as shown in the figure.
University Physics Volume 1
18th Edition
ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter5: Newton's Law Of Motion
Section: Chapter Questions
Problem 65P: Consider the baby being weighed in the following figure. (a) What is the mass of the infant and...
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Transcribed Image Text:cm
0
50 cm
In brachiation, monkeys move from tree branch to tree branch by swinging from
their arms. In the position shown in the figure (left), draw a free body diagram on
the provided axes in the figure (right) for the monkey, assuming that it is
momentarily at rest. (Label the forces F and Ŵ with subscripts on each, and
include the angle).
Let the mass of the monkey be 10 kg, 0 = 30°, and the centre of mass of the
monkey to be 50 cm from its centre of mass as shown in the figure.
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