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Elina [12.6K]
2 years ago
9

"Some pacemakers employ magnetic reed switches to enable doctors to change their mode of operation without surgery. A typical re

ed switch can be switched from one position to another with a magnetic field of 5.0×10−4T. Part A What current must a wire carry if it is to produce a 5.0×10−4T field at a distance of 0.50 m?"
Physics
1 answer:
Naya [18.7K]2 years ago
3 0

Answer:

The current the wire must carry is 1250 A

Explanation:

Given;

strength of magnetic field, B = 5.0 × 10⁻⁴ T

distance from the wire, r = 0.50 m

The strength of magnetic field on the current carrying wire is given as;

B = \frac{\mu_o I}{2\pi r}

where;

B is the magnetic field strength

μ₀ is permeability of free space, = 4π x 10⁻⁷ T.m/A

I is the current on the wire

r is the distance from the wire

Make current "I" the subject of the formula;

B = \frac{\mu_o I}{2\pi r} \\\\I = \frac{2\pi rB}{\mu_o} \\\\I = \frac{2\pi *0.5*5*10^{-4}}{4\pi *10^{-7} }\\\\I = 1.25 *10^3 \ A\\\\I = 1250 \ A

Therefore, the current the wire must carry is 1250 A

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Talja [164]

Answer:

A) The free body diagrams for both the load of bricks and the counterweight are attached.

B) a = 2.96 m/s²

Explanation:

A)

The free body diagrams for both the load of bricks and the counterweight are attached.

B)

The acceleration of upward acceleration of the load of bricks is given by the following formula:

a = g(m₁ - m₂)/(m₁ + m₂)

where,

a = upward acceleration of load of bricks = ?

g = 9.8 m/s²

m₁ = heavier mass = mass of counterweight = 28 kg

m₂ = lighter mass = mass of load of bricks = 15 kg

Therefore, using these values in equation, we get:

a = (9.8 m/s²)(28 kg - 15 kg)/(28 kg + 15 kg)

<u>a = 2.96 m/s²</u>

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2 years ago
If the humidity in a room of volume 450 m3 at 30 ∘C is 75%, what mass of water can still evaporate from an open pan?
Yuliya22 [10]
From tables,

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From ideal gas expressions;
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Now, 75% of 757.4 moles will evaporate leaving 20%. Then, 25% of 757.5 moles...
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5 0
2 years ago
A 20 watt lightbulb uses 20 Joules of energy every second.A person expends 50 watts of energy per stair when climbing up stairs.
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20W = 20 J/s

Energy expended during climbing stairs = 50 W of energy/stair = 50J/stair

For 20 stairs, Total energy = 50x20 = 1000 J

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Two identical metal balls are rolling without slipping along a horizontal surface with speed V. Each ball encounters a hill ('tw
Anastaziya [24]

Answer:

The angular velocity of Ball A will be greater than the angular velocity of Ball B when they reach the top of the hill.

Explanation:

Angular velocity can be defined as how fast an object rotates relative to a given point or frame of reference.

The question said the hill encountered by Ball A is frictionless, so Ball A will continue to rotate at the same rate it started with even when it reached the top of the hill.

Ball B on the other hand rolls without slipping over its hill, i.e there's friction to slow down its rotational motion which thus reduces how fast Ball B will rotate at the top of the hill

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