Thermal Physics
170 soru
A glass flask with an internal volume of is filled to the brim with a liquid at . The system is heated to , causing of liquid to overflow. Given that the linear expansivity of glass is , what is the real cubic expansivity of the liquid in units of ?
A cylindrical metal rivet has a diameter of at a room temperature of . It needs to be inserted into a hole of diameter in a structural frame. By how many kelvins must the rivet be cooled so that its diameter shrinks to just match the diameter of the hole? (Linear expansivity of the metal is ).
A cylindrical brass sleeve has an internal diameter of at a room temperature of . It is to be shrink-fitted onto a solid shaft of diameter (also at ). Assuming the linear expansivity of brass is , what is the minimum temperature, in , to which the brass sleeve must be heated so that it just slips over the shaft?
A sealed rigid canister contains a fixed mass of nitrogen gas at an initial pressure of and a temperature of . If the gas is heated at constant volume until its temperature reaches , what is the new pressure of the gas?
A sample of ideal gas in a syringe occupies a volume of at a temperature of . If the pressure of the gas remains constant, what is its volume in when the temperature is raised to ?
A solid metal sphere has an initial volume of at . If it is heated to a final temperature of and the linear expansivity of the metal is , what is the increase in the volume of the sphere?
A rigid solid object with negligible thermal expansivity is completely submerged in a container of water initially at . The water is then uniformly cooled down to . How does the upthrust (buoyant force) exerted by the water on the submerged object vary during this cooling process?
A block of mass absorbs of heat energy as its temperature rises from to . What is the heat capacity of the block?
An industrial compression chamber fitted with a frictionless piston contains of an ideal gas at an initial pressure of and a temperature of . The gas expands while being heated to a final temperature of until its pressure drops to . What is the final volume occupied by the gas?
The specific heat capacity of a gas undergoing an isothermal expansion is zero because the temperature of the gas does not change during the process.
A sample of an ideal gas has an average translational kinetic energy of per molecule at an initial temperature of . If the gas is heated at constant volume until the average kinetic energy per molecule doubles to , what is the final temperature of the gas in degrees Celsius?
A gas sample enclosed in a rigid container of fixed volume has a root-mean-square (r.m.s.) speed of at a temperature of . If the gas is heated until its pressure is quadrupled, what is the new r.m.s. speed of the gas molecules in ?
A sample of a liquid metal at its melting point of solidifies completely as thermal energy is extracted from it at a constant rate of . If the specific latent heat of fusion of the metal is , how long does the solidification process take?
A rigid scuba diving cylinder contains a fixed mass of compressed air at an initial absolute pressure of and a temperature of . The cylinder is left under direct sunlight on a boat deck, causing its temperature to rise to . Assuming the volume of the cylinder remains constant, what is the new pressure of the air inside the cylinder?
Match each physical quantity or concept from the kinetic theory of gases on the left with its corresponding microscopic description or mathematical relation on the right.
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During daytime in coastal regions, land heats up faster than the sea. The air above the land expands, becomes less dense, and rises, allowing cooler air from the ocean to move inland to form a sea breeze. Which mode of heat transfer is primarily responsible for this bulk movement of fluid, and what physical property change drives it?
Match each heat transfer scenario on the left with its dominant microscopic mechanism or physical pathway on the right.
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Match each physical heat transfer scenario on the left with its underlying physical mechanism or governing property on the right.
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A spherical black body of radius at an initial temperature of emits thermal radiation at a rate of . If the radius of the sphere is doubled and its temperature is increased to , what is the new rate of thermal radiation emitted by the sphere in terms of ?
The boiling point of a liquid decreases when the external atmospheric pressure acting on its surface is reduced.