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mina [271]
3 years ago
7

A conductor is formed into a loop that encloses an area of 1m^2. The loop is oriented at a angle 30 degree with the xy plane. A

varying magnetic field is oriented parallel to the z axis. If the maximum emf induced in the loop is 10v, what is the maximum rate at which the magnetic field strength is changing?
Physics
1 answer:
choli [55]3 years ago
5 0

Answer:

\frac{dB}{dt} = 11.55 T/s

Explanation:

As we know that flux of magnetic field from the closed loop is given by

\phi = BAcos30[tex]now by Faraday's law we know[tex]EMF = \frac{d\phi}{dt}

now we will have

EMF = Acos30\frac{dB}{dt}

now we have

A = 1 m^2

EMF = 10 Volts

10 = 1 (cos30)\frac{dB}{dt}

\frac{dB}{dt} = \frac{20}{\sqrt3}

\frac{dB}{dt} = 11.55 T/s

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lys-0071 [83]
I will assume here that the well is sufficiently short so that the time the sound takes to come from the bottom of the well to our ear is negligible.

Since the pebble moves by uniformly accelerated motion, the distance it covers is given by
S= \frac{1}{2}gt^2
where 
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t=2.7 s is the time the pebble takes to reach the bottom of the well

Therefore, the depth of the well is
S= \frac{1}{2}(9.81 m/s^2)(2.7 s)^2 = 35.7 m \sim 36 m
and the correct answer is B.
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3 years ago
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Gamma rays have the shortest wavelength.
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4 years ago
A bus hits a bug and the bug splatters on the windshield, which force is greater?
grandymaker [24]

The forces acting on a body and the type of motion that results are given by Newton's three Laws of motion

  • The <u>force </u>of the bus is <u>the same</u> as reactive force of the bug

Reason:

According to Newton's third Law of motion, given that the bug collides

with the bus, the force with which the bus hits the bug is equal to the

reactive force of the bug on the on the bus

According to Newton's second Law of motion, force is equal to the rate of

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The impulse of the force of the bus on the bug is given as follows;

F·Δt = m·(v₂ - v₁)

Given that the force of the bus is large, the change in momentum, m·(v₂ - v₁),

is also large such that the parts of the bug are split by the rapid change in

velocity, and the bug splatters on the windshield, and is then carried along

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The equally large reactive force of the bug, is such that the bug splatters

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Therefore, the correct response is that <u>the forces are the same</u>

Lean more here:

brainly.com/question/21279060

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2 years ago
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mixas84 [53]

Answer:

B. A car of mass 2000 kg with speed 7 m/s

Explanation:

The kinetic energy of an object is given by:

K=\frac{1}{2}mv^2

where m is the mass of the object and v is its speed.

From the formula, we see that the larger the mass and the speed of the object, the larger its kinetic energy. Among the choices given, we see that the car with largest mass and largest speed is car B, which has a mass of 2000 kg and speed of 7 m/s. Its kinetic energy is:

K=\frac{1}{2}(2000 kg)(7 m/s)^2=49,000 J

We can verify that the other cars have smaller kinetic energy. In fact:

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- Car C: K=\frac{1}{2}(1000 kg)(7 m/s)^2=24,500 J

- Car D: K=\frac{1}{2}(2000 kg)(3 m/s)^2=9,000 J

So, car B is the one which has most kinetic energy.

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(D) Negative acceleration (less and less speed)
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