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Flashcards for JEE Physics - Thermodynamics Class 11

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Thermodynamics
Flash cards
Page 2


Thermodynamics
Flash cards
What is Heat
Heat is a form of energy. It is the interaction between the 
system and the surrounding which occurs by virtue of their 
temperature difference when they communicate
The SI unit of heat is Joule. But another unit of heat i.e. 
calorie is also widely used.
Page 3


Thermodynamics
Flash cards
What is Heat
Heat is a form of energy. It is the interaction between the 
system and the surrounding which occurs by virtue of their 
temperature difference when they communicate
The SI unit of heat is Joule. But another unit of heat i.e. 
calorie is also widely used.
Specific Heat
Specific heat of a substance is the amount of heat required to 
raise the temperature of unit mass of a substance by 1ºC.
Page 4


Thermodynamics
Flash cards
What is Heat
Heat is a form of energy. It is the interaction between the 
system and the surrounding which occurs by virtue of their 
temperature difference when they communicate
The SI unit of heat is Joule. But another unit of heat i.e. 
calorie is also widely used.
Specific Heat
Specific heat of a substance is the amount of heat required to 
raise the temperature of unit mass of a substance by 1ºC.
Zeroth law of thermodynamics (continued)
According to this law, "If system A and B are each in thermal 
equilibrium with a third system C, then A and B are in 
thermal equilibrium with each other."
Page 5


Thermodynamics
Flash cards
What is Heat
Heat is a form of energy. It is the interaction between the 
system and the surrounding which occurs by virtue of their 
temperature difference when they communicate
The SI unit of heat is Joule. But another unit of heat i.e. 
calorie is also widely used.
Specific Heat
Specific heat of a substance is the amount of heat required to 
raise the temperature of unit mass of a substance by 1ºC.
Zeroth law of thermodynamics (continued)
According to this law, "If system A and B are each in thermal 
equilibrium with a third system C, then A and B are in 
thermal equilibrium with each other."
Zeroth law of thermodynamics
When two systems are in thermal equilibrium than only 
temperature is the property of the system which is equal to 
that of another system. It is not necessary that pressure and 
volume of two different systems would also remain same.
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FAQs on Flashcards for JEE Physics - Thermodynamics Class 11

1. What is thermodynamics?
Thermodynamics is the branch of physics that deals with the relationships between heat, work, and energy. It studies how energy is transferred and transformed in various systems, including gases, liquids, and solids.
2. What are the laws of thermodynamics?
The laws of thermodynamics are fundamental principles that govern the behavior of energy and heat transfer. They are as follows: 1st Law: Also known as the law of energy conservation, it states that energy cannot be created or destroyed, only converted from one form to another. 2nd Law: This law states that heat cannot spontaneously flow from a colder body to a hotter body. It also establishes the concept of entropy, which tends to increase in isolated systems. 3rd Law: This law states that as a system approaches absolute zero temperature, its entropy approaches a minimum value.
3. What is the difference between heat and temperature?
Heat and temperature are related but distinct concepts. Heat is the transfer of energy due to temperature differences between two objects, while temperature is a measure of the average kinetic energy of the particles in an object. In simpler terms, temperature describes how hot or cold an object feels, while heat refers to the energy transferred between objects due to temperature differences.
4. How does thermodynamics relate to everyday life?
Thermodynamics has numerous applications in everyday life. It helps explain phenomena such as the operation of engines, refrigerators, and air conditioners. It also plays a crucial role in understanding weather patterns, energy conversion processes, and even metabolism in living organisms. Understanding thermodynamics can provide insights into energy efficiency, environmental impact, and optimization of various systems, making it relevant to a wide range of fields and industries.
5. What are some practical examples of thermodynamic processes?
Some practical examples of thermodynamic processes include: - The compression and expansion of gases in car engines - The heating and cooling of buildings using HVAC systems - The operation of refrigerators and heat pumps - The conversion of heat into electrical energy in power plants - The behavior of steam turbines in generating electricity - The combustion process in internal combustion engines These examples demonstrate how thermodynamics principles are applied in various real-world scenarios.
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