Zeroth Law of Thermodynamics
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The Zeroth Law establishes:
Explanation: The Zeroth Law defines temperature as a measurable property through thermal equilibrium.
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Which is an example of the Zeroth Law in action?
Explanation: A thermometer in equilibrium with a system (e.g., body at 37°C) reflects the Zeroth Law by matching temperatures
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The Zeroth Law applies to systems with:
Explanation: Thermal equilibrium, as per the Zeroth Law, means no heat flows between systems, indicating equal temperatures.
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If two systems have the same temperature as a thermometer, they:
Explanation: Per the Zeroth Law, systems with the same temperature as a third system (thermometer) are in thermal equilibrium.
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Why was the Zeroth Law named so?
Explanation: Named “Zeroth” because it’s a fundamental concept needed before the First, Second, and Third Laws, establishing temperature.
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Two objects at the same temperature are in:
Explanation: The Zeroth Law implies that objects at the same temperature are in thermal equilibrium, with no heat flow between them
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The Zeroth Law is essential for the function of:
Explanation: Thermometers rely on the Zeroth Law to measure temperature by achieving thermal equilibrium with a system.
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If system A is in equilibrium with system B, and B with C, then:
Explanation: The Zeroth Law states that systems in thermal equilibrium with a common system are in equilibrium with each other.
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The Zeroth Law is the basis for:
Explanation: The Zeroth Law allows temperature to be measured consistently, as it establishes thermal equilibrium.
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What does the Zeroth Law of Thermodynamics define?
Explanation: The Zeroth Law states that if two systems are in thermal equilibrium with a third, they are in equilibrium with each other, defining temperature.
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