KINETIC AND POTENTIAL ENERGY
... doubling the mass doubles the kinetic energy. Any change in mass causes an identical change in kinetic energy. Velocity is different. A change in velocity causes a much greater change in kinetic energy. This is because the velocity is squared to find the kinetic energy. If you double the velocity, y ...
... doubling the mass doubles the kinetic energy. Any change in mass causes an identical change in kinetic energy. Velocity is different. A change in velocity causes a much greater change in kinetic energy. This is because the velocity is squared to find the kinetic energy. If you double the velocity, y ...
Created with Sketch. Calculating potential and kinetic energy
... minutes or run for 6 minutes. It requires 1 joule to lift a small apple 1 metre straight up, and the same amount of energy is released when the same apple falls to the ground. ...
... minutes or run for 6 minutes. It requires 1 joule to lift a small apple 1 metre straight up, and the same amount of energy is released when the same apple falls to the ground. ...
Ecology
... The portion of chemical energy you can use (or that is “free”) to do work is called: free energy The more free energy you can obtain from what you eat, the more efficient you are! Any free energy left over (after you have done your work) is ...
... The portion of chemical energy you can use (or that is “free”) to do work is called: free energy The more free energy you can obtain from what you eat, the more efficient you are! Any free energy left over (after you have done your work) is ...
Energy
... A. Energy may change forms but it cannot be created or destroyed B. If energy is conserved, then DPE = DKE (D is “change in”) C. Conservation of Mechanical Energy: (KE + PE)beginning = (KE + PE)end D. Energy flowchart shows how energy changes form. ...
... A. Energy may change forms but it cannot be created or destroyed B. If energy is conserved, then DPE = DKE (D is “change in”) C. Conservation of Mechanical Energy: (KE + PE)beginning = (KE + PE)end D. Energy flowchart shows how energy changes form. ...
Presentation
... They combine via their electrons, which try to fill up all of the available spaces the atom can hold. The many different ways that atoms combine form the multitude of different kinds of matter we find on Earth. ...
... They combine via their electrons, which try to fill up all of the available spaces the atom can hold. The many different ways that atoms combine form the multitude of different kinds of matter we find on Earth. ...
Work Power and Energy PPT
... – W is transfer of energy by mechanical means. – W is done on an object only if it moves in the direction of the force. – Only the component of the force in the direction of the motion does work. – Force and displacement vectors must be parallel for work to be done. ...
... – W is transfer of energy by mechanical means. – W is done on an object only if it moves in the direction of the force. – Only the component of the force in the direction of the motion does work. – Force and displacement vectors must be parallel for work to be done. ...
Section 1:Energy
... •The _____________ it moves, the more kinetic energy. Potential and Kinetic Energy •Potential energy may become kinetic energy. •Water behind a dam has a lot of __________ energy. Releasing the water and letting it flow changes the energy to ___________. •Kinetic energy may also become potential ene ...
... •The _____________ it moves, the more kinetic energy. Potential and Kinetic Energy •Potential energy may become kinetic energy. •Water behind a dam has a lot of __________ energy. Releasing the water and letting it flow changes the energy to ___________. •Kinetic energy may also become potential ene ...
P3 student checklist 2017
... Apply ideas of kinetic energy to situations involving moving objects Apply the idea of kinetic energy to braking distance and speed Interpret data about fuel consumption, evaluate and compare data on it Describe and explain how a car’s fuel consumption depends upon change in kinetic energy, work aga ...
... Apply ideas of kinetic energy to situations involving moving objects Apply the idea of kinetic energy to braking distance and speed Interpret data about fuel consumption, evaluate and compare data on it Describe and explain how a car’s fuel consumption depends upon change in kinetic energy, work aga ...
Name: Date: Period:______ Chapter 12 Study Guide _Energy_ is
... 1. _Energy_ is the ability to cause change. 2. What happens when you add heat to matter? When you take it away? _When you add heat to matter the atoms move faster. When you take away the heat the atoms will move slower 3. What is kinetic energy? What is an example? Kinetic energy is energy due to mo ...
... 1. _Energy_ is the ability to cause change. 2. What happens when you add heat to matter? When you take it away? _When you add heat to matter the atoms move faster. When you take away the heat the atoms will move slower 3. What is kinetic energy? What is an example? Kinetic energy is energy due to mo ...
Energy - SCHOOLinSITES
... Legend has it that Isaac Newton “discovered” gravity when an apple fell from a tree and hit him in the head. If a 0.20 kg apple fell 7.0 m before hitting Newton, what was its change in Ep during the fall? ...
... Legend has it that Isaac Newton “discovered” gravity when an apple fell from a tree and hit him in the head. If a 0.20 kg apple fell 7.0 m before hitting Newton, what was its change in Ep during the fall? ...
Energy Forms and Conversions
... motions of particles that make up an object. -More correctly called thermal energy. ...
... motions of particles that make up an object. -More correctly called thermal energy. ...
Energy - Warren County Schools
... energy can be transferred to kinetic, radiant, thermal, or electrical energy. Electrical energy can be transformed to kinetic, chemical, electrical, or thermal energy. Unlike other forms of energy, thermal energy is not easy to store. ...
... energy can be transferred to kinetic, radiant, thermal, or electrical energy. Electrical energy can be transformed to kinetic, chemical, electrical, or thermal energy. Unlike other forms of energy, thermal energy is not easy to store. ...
forms-of-energy-worksheet
... The watt (W) is a unit of power & that a kilowatt (kW) is 1,000 watts. The unit used by electric companies to measure the energy you use in your home is called the kilowatt-hour (kWh). One kilowatt-hour is 1,000 watts of energy used for 1 hour. To calculate the cost of operating an appliance, you mu ...
... The watt (W) is a unit of power & that a kilowatt (kW) is 1,000 watts. The unit used by electric companies to measure the energy you use in your home is called the kilowatt-hour (kWh). One kilowatt-hour is 1,000 watts of energy used for 1 hour. To calculate the cost of operating an appliance, you mu ...
File
... Potential Energy Stored energy Increases as height increases Increases as mass increases PE = mass x gravity x height ...
... Potential Energy Stored energy Increases as height increases Increases as mass increases PE = mass x gravity x height ...
Energy and Heat
... • Energy is the ability to do work or produce heat. • Energy exists in two basic forms: potential energy and kinetic energy. • Potential energy is energy due to composition or position. • Kinetic energy is energy of motion. ...
... • Energy is the ability to do work or produce heat. • Energy exists in two basic forms: potential energy and kinetic energy. • Potential energy is energy due to composition or position. • Kinetic energy is energy of motion. ...
No Slide Title
... Within a closed system, the amount of energy remains constant and energy is neither created nor destroyed. Energy can be converted from one form to another but the total energy within the domain remains fixed. ...
... Within a closed system, the amount of energy remains constant and energy is neither created nor destroyed. Energy can be converted from one form to another but the total energy within the domain remains fixed. ...
Foods II Vocabulary 2.01 Chemistry – The study of the makeup
... 23. Radiant Energy - Energy transmitted in the form of waves through space or some medium. 24. Microwave – A low-frequency electromagnetic wave of radiant energy. 25. Heat – An energy transfer from one body to another caused by a temperature difference between the two bodies. 26. Heat Capacity – The ...
... 23. Radiant Energy - Energy transmitted in the form of waves through space or some medium. 24. Microwave – A low-frequency electromagnetic wave of radiant energy. 25. Heat – An energy transfer from one body to another caused by a temperature difference between the two bodies. 26. Heat Capacity – The ...
Name: Period:______ Date:______ Infinite Potential Forms of
... Name: ________________________________________________ Period:______ Date:__________ Infinite Potential Forms of Kinetic Energy Guided Reading Mission 1 ...
... Name: ________________________________________________ Period:______ Date:__________ Infinite Potential Forms of Kinetic Energy Guided Reading Mission 1 ...
Example Picture Sequence of Energy Forms
... As a solid heats, the particles vibrate, these vibrations make the adjacent particles vibrate, and so on and so on, the vibrations are passed along the metal and so is the heat. This is accomplished via kinetic energy. Metals are good conductors of heat. Real Life Examples of Conduction: Heat transf ...
... As a solid heats, the particles vibrate, these vibrations make the adjacent particles vibrate, and so on and so on, the vibrations are passed along the metal and so is the heat. This is accomplished via kinetic energy. Metals are good conductors of heat. Real Life Examples of Conduction: Heat transf ...
energy! - SFP Online!
... Electrical Energy – another term for electricity. Energy stored in electric charges. Thermal Energy – type of energy that comes from heat and vibration of molecules. Light/Radiant Energy – energy associated with electromagnetic spectrum and ...
... Electrical Energy – another term for electricity. Energy stored in electric charges. Thermal Energy – type of energy that comes from heat and vibration of molecules. Light/Radiant Energy – energy associated with electromagnetic spectrum and ...
01.Energy.and.Radiation
... Conservation of Energy • Energy can be stored • Energy can move from one piece of matter to another piece of matter • Energy can be transformed from one type of energy to another type of energy • The First Law of Thermodynamics: – During all this moving and transforming the total amount of energy n ...
... Conservation of Energy • Energy can be stored • Energy can move from one piece of matter to another piece of matter • Energy can be transformed from one type of energy to another type of energy • The First Law of Thermodynamics: – During all this moving and transforming the total amount of energy n ...
Types of Kinetic Energy
... • Thermal energy or heat is the internal energy in substances – the vibration and movement of atoms and molecules within substances. • Geysers are an example. ...
... • Thermal energy or heat is the internal energy in substances – the vibration and movement of atoms and molecules within substances. • Geysers are an example. ...
types of energy
... What is Electrical Energy? o Energy caused by the movement of electrons o Easily transported through power lines and converted into other forms of energy ...
... What is Electrical Energy? o Energy caused by the movement of electrons o Easily transported through power lines and converted into other forms of energy ...
Energy transformation
... is the change of energy from one form to another. One of the most common energy conversions involves the changing of potential energy to kinetic energy or vice versa, kinetic energy to potential energy. However, other forms of energy can also be converted. ...
... is the change of energy from one form to another. One of the most common energy conversions involves the changing of potential energy to kinetic energy or vice versa, kinetic energy to potential energy. However, other forms of energy can also be converted. ...
Regenerative brake
A regenerative brake is an energy recovery mechanism which slows a vehicle or object by converting its kinetic energy into a form which can be either used immediately or stored until needed. This contrasts with conventional braking systems, where the excess kinetic energy is converted to heat by friction in the brakes and therefore wasted. In addition to improving the overall efficiency of the vehicle, regeneration can also greatly extend the life of the braking system as its parts do not wear as quickly.