OLD: Energy Vocab
__1. ForceA. Transfer of thermal energy from one object to another.
__2. HeatB. Stored energy.
__3. Kinetic EnergyC. The expansion of matter when it is heated.
__4. MARC TEND. A push or pull exerted on an object.
__5. Mechanical EnergyE. Moving energy.
__6. Potential EnergyF. Energy of an object due to it's position, motion, or both.
__7. Specific HeatG. Force exerted on an object that causes it to move.
__8. TemperatureH. How hot or cold something is.
__9. Thermal ExpansionI. The seven forms of energy.
__10. WorkJ. Heat required to move temp of 1kg of material by 1 Kevin/1C.
__11. Absolute EnergyA. Temp scale where water freezes at 0C and boils at 100C.
__12. Celsius ScaleB. The actually movement of a fluid.
__13. ConductionC. Temp scale where water freezes at 32F and boils at 212F.
__14. ConductorD. Temp scale = 0 is temp at which no more energy is removed.
__15. ConvectionE. Transfer of particle to another of thermal energy.
__16. Convection CurrentsF. Material that DOES NOT conduct heat well.
__17. Fahrenheit ScaleG. Material that DOES conduct heat well.
__18. InsulatorH. The transfer of energy by electromagnetic waves.
__19. Kelvin ScaleI. Temp at which no more energy can be removed from matter.
__20. RadiationJ. Transfer of thermal energy by the movement of a fluid.
__21. ConductorA. Complete, unbroken path through which electric charges flow.
__22. Electric CircuitB. Like charges = repel & opposite charges = attract.
__23. Electric CurrentC. Continuous flow of electric charges through a material.
__24. How do electric charges react?D. Material that does not easily allow electric charges to flow
__25. InsulatorE. A circuit where all parts are connected along 1 path.
__26. Ohm's LawF. Difference in electrical P.E. per charge between 2 places.
__27. Parallel CircuitG. Material that allows electric charges to flow.
__28. ResistanceH. A circuit where there are multiple paths.
__29. Series CircuitI. Measurement of how difficult it is for charges to flow.
__30. VoltageJ. Resistance in a circuit is = to voltage divided by current.
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