(1) In the figure to the A right, spherical masses are suspended from strings of negligible mass in various ways. We will also assume that the pulleys are frictionless, that the spherical masses are stationary, and that the scales have As negligible mass. consequence of Newton's 3rd Law, the scale reads the tension in the string where it is attached. Assume all spherical masses have a weight of 10 N. (a) (b) (c) a What does the scale in A read? Explain your reasoning. What does the scale in B read? Explain your reasoning. What does the scale in C read? Explain your reasoning.

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What is the answer for this question? a,b and c. 

(1)
right, spherical masses are
suspended from strings of
negligible mass in various
ways. We will also assume
that
In the figure to the
A
the
pulleys
are
frictionless, that the spherical
masses are stationary, and
that
negligible mass.
the
scales
have
As a
consequence of Newton's 3rd
Law, the scale reads the tension in the string where it is attached. Assume all spherical
masses have a weight of 10 N.
(а)
(b)
(c)
What does the scale in A read? Explain your reasoning.
What does the scale in B read? Explain your reasoning.
What does the scale in C read? Explain your reasoning.
C.
Transcribed Image Text:(1) right, spherical masses are suspended from strings of negligible mass in various ways. We will also assume that In the figure to the A the pulleys are frictionless, that the spherical masses are stationary, and that negligible mass. the scales have As a consequence of Newton's 3rd Law, the scale reads the tension in the string where it is attached. Assume all spherical masses have a weight of 10 N. (а) (b) (c) What does the scale in A read? Explain your reasoning. What does the scale in B read? Explain your reasoning. What does the scale in C read? Explain your reasoning. C.
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The tension in the string will be the force that the string applies to counter the weight hanging with it. So, the tension is opposite in direction to the weight.

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