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GrogVix [38]
3 years ago
10

Is it possible for velocity to be constant while acceleration is not zero? Explain.

Physics
1 answer:
vichka [17]3 years ago
5 0

Answer:

No

Explanation:

No it is not possible for velocity to be constant when acceleration is not zero.

Acceleration of a body is the rate of change of the velocity a=\frac{dv}{dt}. Means acceleration is possible only when there is change in velocity

If there velocity will be constant then dv=0 when we put dv =0 in a=\frac{dv}{dt} then acceleration will be also zero

So the constant velocity is not possible when acceleration is not zero

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Magnet A has twice the magnetic field strength of magnet B and pulls on magnet B with a force of 100 N. The amount of force that
son4ous [18]

The force exerted by the magnetic in terms of the magnetic field is,

F\propto B

Where B is the magnetic fied strength and F is the force.

Thus, if the magnetic A has twice magnetic field strength than the magnet B,

Then,

B_A=2B_B

Thus, the force exerted by the magnet B is,

\begin{gathered} F_B\propto B_B \\ F_B\propto\frac{B_A}{2} \\ F_B=\frac{F_A}{2} \\ F_B=\frac{100}{2} \\ F_B=50\text{ N} \end{gathered}

Thus, the force exerted by the magnet B on magnet A is 50 N.

The force exerted by the magnet A exerts on the magnet B is exactly 100 N as given.

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1 year ago
Fossils are dated using radioactive...<br><br> a. hydrogen <br> b. helium<br> c. carbon
OlgaM077 [116]

Answer:

carbon

Explanation:

7 0
4 years ago
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attashe74 [19]

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3 years ago
What is the total force acting on the ball in the diagram? How would you describe its velocity?
KonstantinChe [14]

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Velocity formulae should be used in order to know the answer

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3 years ago
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A 1 900-kg pile driver is used to drive a steel I-beam into the ground. The pile driver falls 4.00 m before coming into contact
Leno4ka [110]

Answer:

471392.4 N

Explanation:

From the question,

Just before contact with the beam,

mgh = Fd.................... Equation 1

Where m = mass of the beam, g = acceleration due to gravity, h = height. F =  average Force on the beam, d = distance.

make f the subject of the equation

F = mgh/d................ Equation 2

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Substitute into equation 2

F = 1900(4)(9.8)/0.158

F = 471392.4 N

6 0
3 years ago
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