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Absolute zero pressure and absolute zero volume cannot be calculated simultaneously for gases. These values are theoretical limits that cannot be reached in practice.

Absolute zero temperature is the lowest possible temperature, where the particles of a substance would have minimal or no kinetic energy. It is defined as 0 Kelvin or approximately -273.15 degrees Celsius. At absolute zero temperature, gases would exhibit zero pressure and volume, as their molecular motion ceases completely. However, achieving absolute zero temperature is not possible in reality, as it violates the third law of thermodynamics.

Similarly, absolute zero volume would refer to the hypothetical point where a gas occupies zero space. It is an idealized concept that cannot be practically achieved. Even at extremely low temperatures, gases still occupy space due to the nature of their molecular interactions.

While these theoretical limits are not attainable, scientists and researchers can approach extremely low temperatures and pressures, such as those near absolute zero, through techniques such as cryogenics or ultra-high vacuum systems. However, even under these conditions, gases still retain some volume and pressure, albeit significantly reduced compared to normal conditions.

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