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Flauer [41]
4 years ago
8

What is the kinetic energy of an object that has a mass of 50.0 kg and a velocity of 18 m/s?

Physics
2 answers:
timofeeve [1]4 years ago
5 0
...answer...: 8,100 J
Alla [95]4 years ago
3 0

Answer:

<h2>The answer is 8,100 J </h2>

Explanation:

The kinetic energy of a body when given it's mass and velocity can be found by using the formula

KE =  \frac{1}{2} m {v}^{2}

where

m is the mass

v is the velocity

From the question

mass of object = 50 kg

velocity = 18 m/s

It's kinetic energy is

KE =  \frac{1}{2}  \times 50 \times  {18}^{2}  \\  = 25 \times 324

We have the final answer as

<h3>8100 J</h3>

Hope this helps you

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4 years ago
100 meters toward the shore in 25 seconds
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Answer:

The speed of a turtle is 4m/s

Explanation:

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distance = 100m

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s = 100/25

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4 years ago
HELP PLEASE !!
Umnica [9.8K]
If a car crashes into another car like this, the wreck should go nowhere. Besides this being an unrealistic question, the physics of it would look like this:

Momentum before and after the collision is conserved.

Momentum before the collision:
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Setting both momenta equal:
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3 0
3 years ago
Your average speed on the first half of a car trip is 69.0 km/h. How fast do you have to drive on the second half of the trip to
vova2212 [387]

Answer:

13 km/h

Explanation:

Average speed = distance/time

Let the total distance and total time taken for the whole trip be d km and t hours respectively

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d = 82t

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Average speed = 69 km/h

69 = d1/2 ÷ t/2

d1 = 69t

The distance covered in the second half = d2/2

Time taken = t/2

Let the average sly for the see half be A

A = d2/2 ÷ t/2

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At = 82t - 69t

At = 13t

A = 13t/t = 13 km/h

3 0
4 years ago
1.80 kJ of heat is added to a slug of gold and a separate 1.80 kJ of heat is added to a slug of manganese. The heat capacity of
Svetlanka [38]

Answer:

final temperature of  slug of gold is 37°C

final temperature of  slug of manganese is 28.56°C

Explanation:

Hello! To solve this problem we must take into account the concept of heat capacity, this is defined as the ratio between energy and temperature rise.

In other words it is the amount of energy that is required to increase a temperature degree.

Taking into account the above we infer the following equation

where  

C=heat capacity

7 0
3 years ago
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