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What is the difference between ideal and actual cycle?
The ideal of beauty changes with time.
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The relationship between absolute temperature and volume of an ideal gas at constant pressure.
In an ideal gas, the relationship between pressure and temperature is described by the ideal gas law, which states that pressure is directly proportional to temperature when volume and amount of gas are constant. This means that as temperature increases, so does pressure, and vice versa.
What are differences between ideal and real cycle?
The internal energy of an ideal gas is directly related to its temperature. As the temperature of an ideal gas increases, its internal energy also increases. This relationship is described by the equation for the internal energy of an ideal gas, which is proportional to the temperature of the gas.
It depends on the outside temperature, the vehicle and the compressor but it can be between 38 to 43 degrees..................
The ideal cycle refers to a theoretical model that assumes perfect conditions, such as no friction, constant properties, and complete efficiency, allowing for maximum performance and energy conversion. In contrast, the actual cycle accounts for real-world factors like energy losses, non-ideal gas behavior, and operational inefficiencies, resulting in lower performance than the ideal scenario. Consequently, while the ideal cycle serves as a benchmark for analysis, the actual cycle reflects the practical limitations encountered in real systems.
The internal energy of an ideal gas is directly proportional to its temperature and is independent of its pressure.
Air standard cycles are idealized cycles that use ideal gas. The actual cycle is very sensitive