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Otrada [13]
3 years ago
7

If you increase the mass of an object, but keep the force on it constant, its acceleration decreases? true or false

Physics
2 answers:
Alex3 years ago
7 0
It really depends. On a hill, the object would increase speeds. Flat terrain, it would slow.
Elenna [48]3 years ago
3 0

That statement is true.

Prof Newton said:        Force = (mass) x (acceleration)

-- If the force is constant, then the right side
of the equation must be constant too.

-- The right side of the equation is the product

                                               (mass) x (acceleration) .

-- If either of those changes, then in order to keep the product
constant, the other one has to change in the opposite direction.

-- So if the mass increases, then the acceleration decreases.

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Trevor places a mass on a spring. When he releases it, the mass and spring move in simple harmonic motion.
777dan777 [17]

The correct answer is D He could pull the mass down farther.

Amplitude, is the maximum displacement or distance moved by a point on a vibrating body or wave measured from its equilibrium position. So to increase the amplitude the spring should be pulled down further which can increase the amplitude.

8 0
3 years ago
Read 2 more answers
Polly is pushing a box across the floor with a force of 30 N. The force of gravity is -8 in, and the normal force is eight in. W
aleksandr82 [10.1K]

Answer:

A. -30 N

Explanation:

not sure but if the box isn't moving then the force opposite of Polly would be equal to the force she's exerting.

5 0
3 years ago
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NEED HELP FAST<br><br>Are the circuits in a car parallel or series? <br>how do you know?
guajiro [1.7K]
The answer is parallel

If the <span>circuits in a car</span> were series, they would go out at the same time.

I hope this helps! :3
3 0
3 years ago
Question 8
spayn [35]

Answer:

500 years so hundreds

Explanation:

google search

5 0
4 years ago
Find the current if 55 C of charge pass a particular point in a circuit in 5 seconds.
uranmaximum [27]

Answer:

<em>The current is 11 Amperes</em>

Explanation:

<u>Electric Current</u>

The electric current is defined as a stream of charged particles that move through a conductive path.

The current intensity can be calculated as:

\displaystyle I=\frac{Q}{t}

Where:

Q = Electric charge

t   = Time taken by the charge to move through the conductor

The current intensity is often measured in Amperes.

The charge passing through a point in a circuit is Q= 55 c during t=5 seconds, thus the current intensity is:

\displaystyle I=\frac{55}{5}

I = 11 Amp

The current is 11 Amperes

4 0
3 years ago
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