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Westkost [7]
2 years ago
4

Jimmy has two options for moving a piano up to the second floor of a hotel, which is 10 m above his current position. He can pus

h the piano up 50 m ramp or lift the piano up with a rope wrapped around a pulley. Which option will require him to exert a greater average force? Neglecting friction, which option will require more work?
Physics
1 answer:
Vesnalui [34]2 years ago
8 0

Answer:

Lifting straight up, even with a rope and pulley, always takes more force than going up a slanted ramp to the same height.

But if you use the ramp, then you have to exert the force over a greater distance (pull more rope to lift to the same height).

Astonishingly, the product of (force) x (distance) is the same number either way.  So without friction, the total amount of work required is the SAME whichever way the piano is lifted.

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4 0
2 years ago
A small block of wood of inertia mb is released from rest a distance h above the ground, directly above your head. you decide to
Zinaida [17]

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hmax = h - d + { [ mpvp - mb√(2gd) ] / (mp+mb) }² / (2g)

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2 years ago
A friend of yours who takes her astronomy class very seriously challenges you to a contest to find the thinnest crescent moon yo
RUDIKE [14]

Answer:

after the sun sets or just as it is setting

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8 0
2 years ago
A solenoid with 3,000.0 turns is 70.0 cm long. If its self-inductance is 25.0 mH, what is its radius? (The value of μ0 is 4π x 1
nevsk [136]

Answer:

A. 2.2*10^-2m

Explanation:

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So A = 0.7m * 25 x 10^-3H /( 4π x10^-7*

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A = 17.5*10^-3/ 1.13*10^-5

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here since it forms an equilateral triangle so we will have

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also the perpendicular distance of the point from the wire is

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B = \frac{\mu_0 i}{4\pi \frac{a}{2\sqrt3}(sin60 + sin60)

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B = \frac{9\mu_0 i}{2\pi a}

5 0
2 years ago
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