/*! This file is auto-generated */ .wp-block-button__link{color:#fff;background-color:#32373c;border-radius:9999px;box-shadow:none;text-decoration:none;padding:calc(.667em + 2px) calc(1.333em + 2px);font-size:1.125em}.wp-block-file__button{background:#32373c;color:#fff;text-decoration:none} Q21P An initially stationary box of s... [FREE SOLUTION] | 91Ó°ÊÓ

91Ó°ÊÓ

An initially stationary box of sand is to be pulled across a floor by means of a cable in which the tension should not exceed 1100N. The coefficient of static friction between the box and the floor is 0.35. (a) What should be the angle between the cable and the horizontal in order to pull the greatest possible amount of sand, and (b) what is the weight of the sand and box in that situation?

Short Answer

Expert verified

(a) The angle between the cable and the horizontal in order to pull the greatest possible amount of sand is190

(b) The weight of the sand and box is3.33×103N

Step by step solution

01

Given

Tension on the cable,T=1100N

Coefficient of static friction between the table and box, μs=0.35

02

Determining the concept

The problem is based on Newton’s second law of motion which states that the rate of change of momentum of a body is equal in both magnitude and direction of the force acting on it. First, draw the free body diagram of the box of sand and then apply Newton's 2nd law of motion to find the angle of the cable and weight of the sand box.

Formula:

Fnet=∑ma

where, F is the net force, m is mass and a is an acceleration.

03

Determining the free body diagram

Free Body Diagram of the sand box:

04

(a) Determining the angle between the cable and the horizontal

Initially the box is at rest so its acceleration along the vertical and horizontal direction is 0.By using Newton’s 2nd law of motion along the vertical direction,

N+Tsinθ-W=0N=mg=Tsinθ

Along horizontal direction,

Tcosθ=fsTcosθ=μsNTcosθ=μsmg-TsinθTgcosθμs+sinθ=m

It is given that sand should be greatest amount, by using the calculus method; take the change in mass (m) with respect to the angle θas 0,

dmdθ=Tg-sinθμs+cosθ=0sinθ=μscosθtanθ=μsθ=tan-1μs=tan-10.35=19.290≈190

Hence, the angle between the cable and the horizontal in order to pull the greatest possible amount of sand is190

05

(b) Determining the weight of the sand and box 

The mass of the box and sand is,

m=Tgcosθμs+sinθm=11009.81cos190.35+sin19=339.4kg

And weight of this system,

w=mg=(339.4)(9.81)=3.33×103N

Hence, the weight of the sand and box is3.33×103N

Unlock Step-by-Step Solutions & Ace Your Exams!

  • Full Textbook Solutions

    Get detailed explanations and key concepts

  • Unlimited Al creation

    Al flashcards, explanations, exams and more...

  • Ads-free access

    To over 500 millions flashcards

  • Money-back guarantee

    We refund you if you fail your exam.

Over 30 million students worldwide already upgrade their learning with 91Ó°ÊÓ!

One App. One Place for Learning.

All the tools & learning materials you need for study success - in one app.

Get started for free

Most popular questions from this chapter

Suppose the coefficient of static friction between the road and the tires on a car is0.60and the car has no negative lift. What speed will put the car on the verge of sliding as it rounds a level curve of30.5mradius?

A 4.10kgblock is pushed along a floor by a constant applied force that is horizontal and has a magnitude of 40.0N. Figure 6-30 gives the block’s speed vversus time tas the block moves along an xaxis on the floor. The scale of the figure’s vertical axis is set by vs=5.0m/s. What is the coefficient of kinetic friction between the block and the floor

A circular-motion addict of mass80kgrides a Ferris wheel around in a vertical circle of radius10mat a constant speed of6.1m/s. (a) What is the period of the motion? What is the magnitude of the normal force on the addict from the seat when both go through (b) the highest point of the circular path and (c) the lowest point?

A police officer in hot pursuit drives her car through a circular turn of radius 300mwith a constant speed of 80.0km/h. Her mass is55.0kg. What are (a) the magnitude and (b) the angle (relative to vertical) of the net force of the officer on the car seat? (Hint: Consider both horizontal and vertical forces)

A block of mass mt=4.0kgis put on top of a block of massmb=5.0kg. To cause the top block to slip on the bottom one while the bottom one is held fixed, a horizontal force of at least12Nmust be applied to the top block. The assembly of blocks is now placed on a horizontal, frictionless table (Fig. 6-47). Find the magnitudes of

(a) the maximum horizontal force f that can be applied to the lower block so that the blocks will move together and

(b) the resulting acceleration of the blocks.

See all solutions

Recommended explanations on Physics Textbooks

View all explanations

What do you think about this solution?

We value your feedback to improve our textbook solutions.

Study anywhere. Anytime. Across all devices.