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Видео ютуба по тегу Final Temperature = 300 K
A gun fires a lead bullet of temperature 300K into a wooden block. The bullet having melting
An ideal monatomic gas at 300 K expands adiabatically to 8 times its volume .What is the final t...
A gun fires a lead bullet of temperature 300 K into a wooden block. The bullet having melting....
Calculate the final temperature of a monoatomic idal gas that is compressed
A gun fires a lead bullet of temperature 300K into a wooden block. The bullet having melting tempera
Temperature of an ideal gas is 300 K . The final temperature of the gas when its volume changes ...
Calculate the final temperature of a monoatomic ideal gas that is compressed reversible and adiab...
Temperature of an ideal gas is 300 K . The final temperature of the gas when its volume changes ...
Calculate the final temperature of a sample of a monoatomic gas that is expanded reversibly and ...
A block of lead initially at 300 K absorbs 2044 J of heat. What is the final temperature of the lea…
The temperature of an ideal gas in 3-dimensions is 300 K. The corresponding de-Broglie wavelength
A gun fires a lead bullet of temperature 300k into a wooden block the bullet having melting temp
An ideal gas is expanded adiabatically at an initial temperature of 300 K so that its volume is ...
A gun fires a lead bullet of temperature 300 K into a wooden block. The bullet having melting temper
Two moles of an ideal monoatomic gas occupy a volume 2 V at temperature 300 K, it expands to a ...
A gun fires a lead bullet of temperature 300 K into a wooden block. The bullet having melting temper
A 0.8 mole gas at temperature 300 K expands isothermally from the initial volume of 2E-10 BL. Calcu…
An ideal monoatomic gas at 300K expands adiabatically to twice its volume. What is the final tem...
The temperature of an ideal gas in 3-dimensions is 300 K. the corresponding de-Broglie MP DTS 30 Q10
An ideal gas filled at pressure of 2 atm and temperature of \( 300 \mathrm{~K} \), in a balloon ...
If the temperature of gas increases 300 K to 400 K at constant pressure. Calculate %of volume change
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