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Travka [436]
1 year ago
6

The block in the diagram below is AT REST. However, the tension in the cable is not the only thing holding the block back. Stati

c friction is also applying a force. If the coefficient of static friction is 0.214 determine the
tension in the rope.

Physics
1 answer:
Vedmedyk [2.9K]1 year ago
3 0

Answer:

The  tension in the rope is 229.37 N.

Explanation:

Given:

Mass of the block is, m=33.2\ kg

Coefficient of static friction is, \mu = 0.214

Angle of inclination is, \theta = 31.5°

Draw a free body diagram of the block.

From the free body diagram, consider the forces in the vertical direction perpendicular to inclined plane.

Forces acting are mg\cos \theta and normal N. Now, there is no motion in the direction perpendicular to the inclined plane. So,

N=mg\cos \theta\\N=(33.2)(9.8)\cos (31.5)\\N=277.415\ N

Consider the direction along the inclined plane.

The forces acting along the plane are mg\sin \theta and frictional force, f, down the plane and tension, T, up the plane.

Now, as the block is at rest, so net force along the plane is also zero.

T=mg\sin \theta+f\\T=mg\sin \theta +\mu N\\T= (33.2)(9.8)(\sin (31.5)+(0.214\times 277.415)\\T= 170+59.37\\T=229.37\ N

Therefore, the  tension in the rope is 229.37 N.

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Determine the centripetal force upon a 40-kg child who makes 10 revolution around the cliffhanger in 29.3 seconds.the radius of
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Answer:

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Explanation:

Given:

Mass of the child is, m=40\ kg

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Time taken for 10 revolutions is, t=29.3\ s

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F_{c}=m\omega^2 R\\F_{c}=40\times (18.43)^2\times 2.90\\F_{c}=40\times 339.66\times 2.90\\F_{c}=39400.56\ N

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the millersburg ferry (m=13000.0 kg loaded) puts its engines in full reverse and stops in 65 seconds. if the speed before brakin
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The braking force is -400 N

Explanation:

We can solve this problem by using the impulse theorem, which states that the impulse applied on the ferry (the product of force and time) is equal to its change in momentum:

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where in this problem, we have:

F is the force applied by the brakes

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u = 2.0 m/s is the initial velocity

v = 0 is the final velocity

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F=\frac{m(v-u)}{\Delta t}=\frac{(13000)(0-2.0)}{65}=-400 N

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Learn more about impulse:

brainly.com/question/9484203

#LearnwithBrainly

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The total charge that an automobile battery can supply without being recharged is given in terms of ampere-hours. A typical 12 V
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Answer:

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Explanation:

Based on information number hours that this battery will last with give load  has mathematical relation of.

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t = \frac{60Ah}{7.6A}=7.894 h.

That is how long will it be before battery is dead.

6 0
1 year ago
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