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Lemur [1.5K]
3 years ago
8

Which type of coolant(s) usually is (are) used to remove heat from a nuclear reactor core?

Physics
1 answer:
Ilya [14]3 years ago
6 0

Answer:

(B). Liquid sodium or water

Explanation:

I don't know how to explain this But hope it right!

If I'm wrong I'm sorry

If I'm right Thank you and (brainliest plz)

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Which of the following is an example of energy changing from one form to another?
Anastaziya [24]

The correct option is

a fire


In fact, a fire is a conversion of chemical energy (contained in the molecules of the initial substances) into thermal energy (the heat released by the fire itself), therefore this is an example of energy changing from one form to another. All the other objects, instead, do not represent any form of energy conversion.

6 0
4 years ago
Read 2 more answers
Carbon monoxide prevents
Allushta [10]

Answer:

the blood from carrying oxygen to the tissues of the body

Explanation:

5 0
3 years ago
What would happen if a group of force of 45 N compete against a group of 50 N
larisa [96]
The 50N group of force would be greater
So whichever object is being pulled will be pulled towards the 50N force
7 0
3 years ago
a 2.4*10^2 N force is pulling an 85 kg refrigerator across a horizontal surface. the force acts at an angle of 20.0 above the su
shepuryov [24]

Answer:

a) The work done by pulling force, W = 1804.21 joules

b) The work done by the kinetic frictional force is, w = 1332.8 J

Explanation:

Given,

The pulling force, Fₐ = 2.4 x 10² newton

The mass of the refrigerator, m = 85 Kg

The angle of pulling force acting to the surface, ∅ = 20°

The coefficient of kinetic friction is, μₓ = 0.200

The distance covered by the refrigerator, s = 8 m

The force acting in the direction parallel to the surface is given by

                                      F = Fₐ cos∅

∴                                     F = 2.4 x 10² x cos 20°

                                         =225.53 N

The work done by the pulling force is given by

                                  W = F · S

                                       = 225.53 N x 8 m

                                       = 1804.21 joules

The work done by the pulling force, W = 1804.21 joules

The kinetic friction force is given by the formula

                                  Fₓ = μₓ · η

Where

                              μₓ - coeficient of kinetic frictoin

                              η - Normal force, (mg)

∴                             Fₓ = 0.200 x 85 x 9.8

                                   =  166.6 N

The work done by the kinetic frictional force is given by

                                 w = Fₓ · S

                                     = 166.6 N x 8 m

                                     = 1332.8 J

Hence, the work done by the kinetic frictional force is, w = 1332.8 J

7 0
3 years ago
Read 2 more answers
A ball is dropped and falls with an acceleration of 9.8m/s2 downward. it hit the ground with a velocity of 49 m/s downward. how
Lelechka [254]
V=u+at
49=0+9.8t
t=49/9.8
t = 5 (seconds)

4 0
3 years ago
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