9-v4 The box shown in the figure is being ac- celerated by pulling on it with the rope. (a) Assume the floor is frictionless. What is the maximum force that can be applied with- out causing the box to tip over? (b) Repeat part a, but now let the coefficient of friction be . (c) What happens to your answer to part b when the box is sufficiently tall? How do you interpret this? 2a m 2b
9-v4 The box shown in the figure is being ac- celerated by pulling on it with the rope. (a) Assume the floor is frictionless. What is the maximum force that can be applied with- out causing the box to tip over? (b) Repeat part a, but now let the coefficient of friction be . (c) What happens to your answer to part b when the box is sufficiently tall? How do you interpret this? 2a m 2b
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![9-v4
The box shown in the figure is being ac-
celerated by pulling on it with the rope.
(a) Assume the floor is frictionless.
the maximum force that can be applied with-
out causing the box to tip over?
(b) Repeat part a, but now let the coefficient of
friction be µ.
What is
(c) What happens to your answer to part b when
the box is sufficiently tall? How do you interpret
this?
2а
m
2b](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F2b937620-31e5-470f-b146-f538889220b0%2Fa77991b5-6532-4dfd-8cf6-5273dcd328e8%2F6yxf65b_processed.jpeg&w=3840&q=75)
Transcribed Image Text:9-v4
The box shown in the figure is being ac-
celerated by pulling on it with the rope.
(a) Assume the floor is frictionless.
the maximum force that can be applied with-
out causing the box to tip over?
(b) Repeat part a, but now let the coefficient of
friction be µ.
What is
(c) What happens to your answer to part b when
the box is sufficiently tall? How do you interpret
this?
2а
m
2b
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