Chapter 7: Q. 14 (page 177)
The sled dog in the figure drags sleds A and B across the snow. The coefficient of friction between the sleds and the snow is If the tension in rope iswhat is the tension in rope
Short Answer
The tension in rope is
Chapter 7: Q. 14 (page 177)
The sled dog in the figure drags sleds A and B across the snow. The coefficient of friction between the sleds and the snow is If the tension in rope iswhat is the tension in rope
The tension in rope is
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Get started for freeThe cable cars in San Francisco are pulled along their tracks by an underground steel cable that moves along at The cable is driven by large motors at a central power station and extends, via an intricate pulley arrangement, for several miles beneath the city streets. The length of a cable stretches by up to during its lifetime. To keep the tension constant, the cable passes around a diameter “tensioning pulley” that rolls back and forth on rails, as shown inFIGURE. A block is attached to the tensioning pulley’s cart, via a rope and pulley, and is suspended in a deep hole. What is the tension in the cable car’s cable?
A meteorite falls toward the earth. What is the magnitude of the earth’s acceleration just before impact? The earth’s mass is.
shows three hanging masses connected by massless strings over two massless, frictionless pulleys.
a. Find the acceleration constraint for this system. It is a single equation relatinglocalid="1649865348893" Hint:isn’t constant.
b. Find an expression for the tension in string Hint: You should be able to write four second-law equations. These, plus the acceleration constraint, are five equations in five unknowns.
c. Suppose:Find the acceleration of each.
d. The mass would appear to be in equilibrium. Explain why it accelerates.
The block in FIGURE EXis tied to the wall with a rope. It sits on top of the block. The lower block is pulled to the right with a tension force of . The coefficient of kinetic friction at both the lower and upper surfaces of the block is
a. What is the tension in the rope attached to the wall?
b. What is the acceleration of the block?
The physics book in FIGURE Pis connected by a string to a coffee cup. The book is given a push up the slope and released with a speed of . The coefficients of friction are and
a. How far does the book slide?
b. At the highest point, does the book stick to the slope, or does it slide back down?
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