/*! 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} Q67P Figure shows three blocks attach... [FREE SOLUTION] | 91Ó°ÊÓ

91Ó°ÊÓ

Figure shows three blocks attached by cords that loop over frictionless pulleys. Block B lies on a frictionless table; the masses aremA=6.00kg,mB=8.00kg, andmc=10.0kg. When the blocks are released, what is the tension in the cord at the right?

Short Answer

Expert verified

Tension in the chord at right when the blocks are released is 81.7 N

Step by step solution

01

Given information

It is given that, the masses of the blocks are,

mA=6kgmB=8kgmc=10kg

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. Thus, using the free body diagram the tension in the cord can be found.

Formula

Newton’s second law is,

Fnet=∑ma (i)

where, Fnetis the net force, mis mass and ais an acceleration.

03

Determining the tension in the chord at right when the blocks are released

The total mass of the system is,

m=mA+mB+mC=24kg

When the blocks are released, due to the difference in the masses of A and C, the system get accelerated with an acceleration

Using equation (i),

mCg-mAg=maa=mcg-magm=mC-mAma=9.810-624a=1.63m/s2

Free body diagram for mass c is,

mcg-T=mcaT=mcg-mca

From free body diagram,

T=mcg-aT=109.8-1.63T=81.7N

Hence, tension in the chord at right when the blocks are released is 81.7 N .

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

In shot putting, many athletes elect to launch the shot at an angle that is smaller than the theoretical one (about 42°) at which the distance of a projected ball at the same speed and height is greatest. One reason has to do with the speed the athlete can give the shot during the acceleration phase of the throw. Assume that a 7.260 kgshot is accelerated along a straight path of length 1.650 mby a constant applied force of magnitude 380.0 N, starting with an initial speed of 2.500 m/s(due to the athlete’s preliminary motion). (a)What is the shot’s speed at the end of the acceleration phase if the angle between the path and the horizontal is 30.00° and (b)What is the shot’s speed at the end of the acceleration phase if the angle between the path and the horizontal is 42.00°? (Hint:Treat the motion as though it were along a ramp at the given angle.) (c) By what percent is the launch speed decreased if the athlete increases the angle from 30.00° to42.00°?

A 10 kgmonkey climbs up a massless rope that runs over a frictionless tree limb and back down to a 15 kgpackage on the ground (Figure). (a) What is the magnitude of the least acceleration the monkey must have if it is to lift the package off the ground? If, after the package has been lifted, the monkey stops its climb and holds onto the rope, (b) What is the magnitude and (c) What is the direction of the monkey’s acceleration and (d) What is the tension

in the rope?

Figure 5-28 shows four choices for the direction of a force of magnitude F to be applied to a block on an inclined plane. The directions are either horizontal or vertical. (For choice b, the force is not enough to lift the block off the plane.) Rank the choices according to the magnitude of the normal force acting on the block from the

plane, greatest first.

The Zacchini family was renowned for their human-cannonball act in which a family member was shot from a cannon using either elastic bands or compressed air. In one version of the act, Emanuel Zacchini was shot over three Ferris wheels to land in a net at the same height as the open end of the cannon and at a range of 69 m. He was propelled inside the barrel for 5.2 m and launched at an angle of 53°. If his mass was 85 kg and he underwent constant acceleration inside the barrel, what was the magnitude of the force propelling him? (Hint:Treat the launch as though it were along a ramp at53°Neglect air drag.)

A constant horizontal force F→apushes a 2.00kgFedEx package across a frictionless floor on which an xycoordinate system has been drawn. The figure gives the package’s xand yvelocity components versus time t. (a) What is the magnitude and (b) What is the direction of localid="1657016170500" Fa⇶Ä?

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.