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BigorU [14]
3 years ago
9

You have arranged that the magnetic field in a particular region of space is due North with a value of 0.0050 T. An electron ent

ers the field traveling to the West with a speed of 5.5 percent of the speed of light. As a result, the electron experiences a magnetic force which is upwards
. (a) What is the strength of this magnetic force? Give your answer in femtonewtons. (NOTE: The prefix "femto" represents 10^(-15).) fN

(b) What is the amount of the resulting acceleration of the electron? Get the mass of an electron from the inside back cover of your textbook. Give your answer in Pm/s2 (NOTE: the prefix "P" is for "peta", which represents 10^(15).) Pm/s2

(c) What will be the result of the acceleration that you have calculated in part (b)?

a.)The speed of the moving electron will change but its direction of motion will remain constant..

b.)Both the speed and direction of the moving electron will change.

c.) The direction of the moving electron will change but its speed will remain constant.
Physics
1 answer:
nordsb [41]3 years ago
8 0

Answer:

Explanation:

Magnetic field B = 5 x 10⁻³ T

Speed of electron

= ( 5.5 /100) x 3 x 10⁸

= 165 x 10⁵ m /s

Magnetic force on electron

F = Bqv

B is magnetic field , q is charge on electron and v is its velocity

= 5 x 10⁻³ x1.6 x 10⁻¹⁹ x 165 x 10⁵

1320 x 10⁻¹⁷ N

13.2 X 10⁻¹⁵ N

= 13.2  f N

b )

Acceleration = force / mass of electron

= 1320 x 10⁻¹⁷ / 9.1 x 10⁻³¹

= 14.5 x 10¹⁵ m/s²

= 14.5 Pm/s²

c ) The direction of the moving electron will change but its speed will remain constant.

This is so because the magnetic  force will be acting perpendicular to the velocity of electron all the time in course of its motion.

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How much power will be required to force a current of 4.13 amps to flow through a conductor whose resistance is 113 ohms? Use tw
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The power required to force the current of 4.13 A to flow through the conductor is 1927.43 watts

<h3>What is power? </h3>

This is defined as the rate in which energy is consumed. Electrical power is expressed mathematically as:

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P = I²R

<h3>How to determine the power</h3>
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P = 4.13² × 113

P = 1927.43 watts

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an object of mass m is rotating about a fixed axis with angular momentum l. its moment of inertia about this axis is i. what is
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The Kinetic energy would be 1/2IL².

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14.A 90 kg quarterback gets tackled by being hit by a 120 kg lineman backwards
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The acceleration of the quarterback and the lineman is 5.55m/s² and 4.16m/s² respectively in the same direction.

As, we know, the 120 Kg lineman is moving with a force of 500N.

His net acceleration will be in the same direction as his motion.

It is already known that, If M is the mass of the body and a is the acceleration of the body, then the force F on the body can be calculated by using the formula,

F = Ma.

The weight of the quarterback is 90 Kg. He is being hit by a force of 500N.

So, the acceleration can be calculated using the formula,

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Now, the weight if the lineman is 120kg, the force applied by him is 500N.

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