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  1. www.bbc.co.uk › bitesize › topicsEnergy - BBC Bitesize

    Kinetic energy is the energy of a moving object All moving things have kinetic energy, even very large things like planets, and very small ones like atoms. The amount of kinetic energy an object ...

  2. The potential energy of an object relates to its location, but there is one additional requirement that must be satisfied for potential energy be present. Explain and give an example. Distinguish between the nature of kinetic energy that is associated with macroscopic bodies and that is found in microscopic objects such as atoms and molecules.

  3. Nov 28, 2022 · The energy your body loses is pretty much equal to the work it does against gravity. And the energy the car gains is the same as the work done. So no energy is created or destroyed here: you're simply converting energy stored as fuel inside your body into potential energy stored by the car (because of its height).

    • the safety of objects in nature is important because energy is created1
    • the safety of objects in nature is important because energy is created2
    • the safety of objects in nature is important because energy is created3
    • the safety of objects in nature is important because energy is created4
  4. If the outer electrons have enough energy, they can escape from the atom and be transferred to other objects. The protons (positive charges) are tightly bound in the nucleus of the atom, so they ...

  5. Oct 1, 2019 · Gravity is the attraction between two objects that have mass or energy, whether this is seen in dropping a rock from a bridge, a planet orbiting a star or the moon causing ocean tides. Gravity is ...

    • Jeremy Rehm
  6. Sep 21, 2019 · Energy describes the ability of an object to do work. Work is the transfer of energy that happens when an external force moves an object. There are two main types of energy. They are kinetic energy and potential energy. Mechanical energy is the sum of the kinetic and potential energy in a system.

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  8. Apr 16, 2019 · Kinetic energy (KE) is the energy an object possesses due to its motion. The most common units of energy are the joule (J), defined as 1 (kg·m 2)/s 2, and the calorie, defined as the amount of energy needed to raise the temperature of 1 g of water by 1°C (1 cal = 4.184 J). All forms of energy can be interconverted.

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