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__FULL__ INTERACTIVE THERMODYNAMICS 3.0 20





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INTERACTIVE THERMODYNAMICS 3.0 20


. –> Interactive thermodynamics project for has analysis, simulation, and application of thermodynamic principles. The purpose of this project is to introduce all the basic concepts of thermodynamics. In thermodynamics, heat flow is the transfer of heat energy in an unjunctioned system. When energy is transferred from a warmer region to a colder region, the temperature of the colder region is said to increase. Conversely, when energy is transferred from a colder region to a warmer region, the temperature of the warmer region is said to decrease. The cause of this type of energy transfer is heat. As heat flows from the warmer to the colder region, the temperature difference across the interface between the regions increases. When heat flows from a warmer to a colder region, thermal energy is transferred from the warmer to the cooler region, and is also transferred to a surrounding environment. This heat transfer increases the temperature of the cooler region, and decreases the temperature of the environment. As a result of this transfer, temperature differences change, and when the surrounding environment is relatively much colder, thermal energy can be easily transferred to the colder region. When heat flows from a cooler region to a warmer region, thermal energy is transferred from the cooler to the warmer region, and is also transferred to a surrounding environment. This heat transfer increases the temperature of the warmer region, and decreases the temperature of the environment. As a result of this transfer, temperature differences change, and when the surrounding environment is relatively much hotter, thermal energy can easily be transferred from the warmer region. Energy transfer into a surrounding environment is a loss, and energy transfer into a cooler region is a gain. When energy is lost, energy is transferred to the surroundings, and when energy is gained, energy is transferred into a hotter region. Losses of energy in the surroundings cause the energy to flow to the surroundings. This process is known as convective cooling. Similarly, gains of energy into a warmer region cause the energy to be transferred from the warmer region to the surroundings. This process is known as conduction heating. CONDUCTION HEATING THERMAL ENERGY TRANSFER CONDUCTION HEATING THERMAL ENERGY TRANSFER The total amount of energy contained in a system at a specific temperature is the product of the amount of heat energy and the change in temperature from the original temperature. It is the total amount of energy that is transferred to or from a system. It is the total


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__FULL__ INTERACTIVE THERMODYNAMICS 3.0 20

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