Can you use a heat pump to provide the temperature difference to run a heat engine?Yes, a heat engine runs on heat.
Yes, a heat pump moves heat.
No, heat is not created.
No, the heat supplied does not create a large enough temperature difference.

Answers

Answer 1
Answer:

No,we cannot use  heat pump to provide the temperature difference to run a heat engine.

Explanation:

In a heat pump energy is transferred from the heat source to the heat sink whereas in the heat engine energy is transferred from a higher temperature level to a lower  temperature level called sink.In a heat engine the heat energy is converted into mechanical energy


Related Questions

A basketball with a mass of 0.80 kg is accelerated with a force of 16.0 N. If resisting forces are ignored, what is the acceleration of the basketball to the nearest m/s2?
A car accelerates at a rate of 3.0 m/s^2. If it’s initial speed is 8.0 m/s, how many seconds will it take the car to reach a final speed of 25.0 m/s? Please show work
What is a planet that formed closer to the Sun than Earth but not closest to the sun
Can someone help me number five idk if im correct
A 60kg bicyclist (including the bicycle) is pedaling to theright, causing her speed to increase at a rate of 3.1 m/s2,despite experiencing a 60N drag. Neglect any frictionimpeding her motion.How many forces are acting on the bicyclist?What is the magnitude of the net force on the bicyclist?How much force is the bicyclist generating through herpedaling?

How would clearing a forest to plant corn affect an enviroment

Answers

It would destroy animals homes shelter etc. it also would make global warming go faster. Hope this helped :D

If you increase the force on a box, it will have...

Answers

Greater or more acceleration

Why are large astronomical bodies such as planets and stars round? I need a 6th grade answer.

Answers

Well,

Large astronomical bodies are round because at their formation, gravity acted as the force to bring all of the matter together to form the body.  Since the gravity was acting from a point and bringing everything toward it, the final shape of the mass is spherical.  Non-round bodies are mostly that shape because other bodies "modified" the landscape.
They are round because of their enormous gravity. It pulls everything towards it strongly enough that every part of the body is the same distance from the center.

Instead of rolling down the ramp over the step, imagine the ball falls off the back of the ramp directly to the ground. What is the amount of potential energy remaining after the ball lands on the ground?

Answers

0J

According to the law of conservation of energy, the potential energy is converted to kinetic energy. Remember, potential energy is calculated using height and weight. If the ball is on the ground, height is 0.

Assuming the ground has 0 height, than there would be no potential energy.

What has to happen for a feather and a ball to fall at the same rate?

Answers

Because the force of gravity is different for both of these objects, they will not fall at the same rate. To make both of these fall at the same rate, we need both to have the same mass so that the gravitational pull is equivalent also. 
They will NOT fall at the same late.
A ball will fall much faster than a feather. A feather tends to float down, much as a ball, it immediately drops. 

Boiling point, density, color, and conductivity are all examples of the _______ of a substance.

Answers

Physical and Chemical properties