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Energy II Lowersixth Science Physics
 

Energy II Lowersixth Science PhysicsVersión en línea

Test your understanding of energy and its transformations.

por YAKILI LMS
1

A stretched spring stores potential energy and can transfer it to kinetic energy when released.

2

The amount of energy in a closed system is measured in joules and remains the same total value.

3

A closed system's total energy can spontaneously double without any work input.

4

Mass is always conserved independently of energy transformations in all processes.

5

A meteor entering the atmosphere gains energy as its speed decreases.

6

Energy can be transformed from one form to another without creating or destroying it.

7

All forms of energy are equally easy to convert back and forth without losses.

8

In nuclear fission, a small amount of mass is converted into a large amount of energy.

9

Heat produced by friction is still energy; it comes from the object's initial mechanical energy.

10

In an isolated system, total energy remains constant over time.

11

In a closed system without external work, the sum of kinetic and potential energy is conserved.

12

Kinetic energy can exist without any motion of the object.

13

A spinning bicycle wheel demonstrates that angular momentum can increase without external torque.

14

The law of conservation of energy applies to all physical processes when non-conservative forces are negligible.

15

The mass-energy equivalence implies that energy and mass are completely independent quantities.

16

Energy cannot be converted from kinetic to potential energy.

17

Non-conservative forces do not affect energy conservation in any system.

18

Mass can be converted into energy and energy into mass as described by E=mc^2.

19

Energy stored in a compressed spring cannot be transferred to another object.

20

The total energy of a satellite in orbit remains constant if only conservative gravitational forces act.

21

A swinging pendulum demonstrates energy transfer between kinetic and potential forms.

22

Heat is not a form of energy and cannot be accounted for in energy conservation.

23

In a closed system, momentum changes but energy is never conserved.

24

The work-energy theorem states that kinetic energy is always zero after any collision.

25

In a gravitational field, potential energy is always negative and never becomes positive.

26

The work-energy theorem states that the work done on an object equals its change in kinetic energy.

27

The energy of a falling object is converted from potential energy to kinetic energy.

28

In a vacuum, a thrown ball has zero kinetic energy at the moment it is released.

29

The gravitational potential energy of a system is always zero at the surface of the Earth.

30

In a perfectly inelastic collision, all kinetic energy is recovered as heat.

31

The energy of a photon is independent of its frequency or wavelength.

32

A battery creates energy from nothing when connected to a circuit.

33

The total mechanical energy of a system can increase without any external input of energy.

34

In a frictionless pendulum, mechanical energy (kinetic plus potential) is constant.

35

Energy is never created from nothing and never destroyed, but this statement is false in quantum fields.

36

In any real system, energy cannot be transferred as light energy.

37

A ball dropped from a height converts potential energy to kinetic energy until impact.

38

The law of conservation of energy only applies to mechanical energy, not other forms.

39

Energy can only exist in the form of kinetic energy; potential energy is not real.

40

E = mc^2 means energy decreases as mass increases, all else equal.

41

In real systems, energy is conserved when all forms, including thermal energy, are accounted for.

42

Energy can be transformed from potential to kinetic without changing the total energy.

43

A pendulum in air, with air resistance, has a constant total mechanical energy at all times.

44

Work done by gravity on a horizontal projectile is always positive.

45

A frictionless block sliding down an incline converts all potential energy into heat energy.

46

The Einstein relation E=mc^2 applies only at high speeds close to the speed of light.

47

In all energy transfers, kinetic energy is always the only form that changes; potential energy never changes.

48

The law of conservation of energy states that energy cannot be created or destroyed, only transformed.

49

Einstein's mass-energy relation is E = mc^2, showing mass can be converted into energy.

50

According to the work-energy theorem, the work done on an object equals the object's change in kinetic energy.

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