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Calculate the heat absorbed by a system in going through the cyclic process shown in the given figure.
29
Oct
Calculate the heat absorbed by a system in going through the cyclic process shown in the given figure. Calculate the heat absorbed by a system in going through the cyclic process shown in the given figure. October 29, 2020 Category: Uncategorised (JEE Advanced Physics by BM Sharma + GMP Solutions) ,
A gaseous mixture enclosed in a vessel consists of 1 g mole of a gas A with gama = 5/3 and another B with gama = 7/5 at a temperature T. The gases A and B do not react with
29
Oct
A gaseous mixture enclosed in a vessel consists of 1 g mole of a gas A with gama = 5/3 and another B with gama = 7/5 at a temperature T. The gases A and B do not react with A gaseous mixture enclosed in a vessel consists of 1 g mole of a gas [...]
Heat Q = 3/2 RT is supplied to 4 moles of an ideal diatomic gas at temperature T, which remains constant. Number of moles of the gas dissolved into atoms is
29
Oct
Heat Q = 3/2 RT is supplied to 4 moles of an ideal diatomic gas at temperature T, which remains constant. Number of moles of the gas dissolved into atoms is Heat Q = 3/2 RT is supplied to 4 moles of an ideal diatomic gas at temperature T which remains constant. Number of moles [...]
One mole of a monatomic ideal gas follows a process A to B, as shown. The specific heat of the process is 13R/6. The value of n on P-axis (see following figure) is
29
Oct
One mole of a monatomic ideal gas follows a process A to B, as shown. The specific heat of the process is 13R/6. The value of n on P-axis (see following figure) is as shown. The specific heat of the process is 13R/6. The value of n on P-axis (see following figure) is One mole [...]
A ball of mass 0.3kg is tied to one end of a string 0.8m long and rotated in a vertical circle. If the tension in the string be zero at the highest point of the circle, the tension at the lowest point in this situation will be equal to
29
Oct
A ball of mass 0.3kg is tied to one end of a string 0.8m long and rotated in a vertical circle. If the tension in the string be zero at the highest point of the circle, the tension at the lowest point in this situation will be equal to A ball of mass 0.3kg is [...]
The sun subtends an angle of half a degree at the pole of a concave mirror which has a radius of curvature of 15m.Then the size(diameter) of the image of the sun formed by the concave mirror is
29
Oct
The sun subtends an angle of half a degree at the pole of a concave mirror which has a radius of curvature of 15m.Then the size(diameter) of the image of the sun formed by the concave mirror is The sun subtends an angle of half a degree at the pole of a concave mirror which [...]
A can filled with water is revolved in a vertical circle of radius 4 metre and the water just does not fall down. The time period of revolution will be:
29
Oct
A can filled with water is revolved in a vertical circle of radius 4 metre and the water just does not fall down. The time period of revolution will be: A can filled with water is revolved in a vertical circle of radius 4 metre and the water just does not fall down. The time [...]
One end of a string of length 1.0 m is tied to a body of mass 0.5 kg. It is whirled in a vertical circle with angular frequency 4 rad/s. The tension in the string when the body is at the lower-most point of its motion will be equal to (Take g = 10 m/s^2)
29
Oct
One end of a string of length 1.0 m is tied to a body of mass 0.5 kg. It is whirled in a vertical circle with angular frequency 4 rad/s. The tension in the string when the body is at the lower-most point of its motion will be equal to (Take g = 10 m/s^2) [...]
A string 0.5 m long is used to whirl a 1 kg stone in a vertical circle at a uniform velocity of 5 m/s. What is the tension in the string when the stone is at the top of the circle?
29
Oct
A string 0.5 m long is used to whirl a 1 kg stone in a vertical circle at a uniform velocity of 5 m/s. What is the tension in the string when the stone is at the top of the circle? A string 0.5 m long is used to whirl a 1 kg stone in [...]
In vertical circular motion, the ratio of kinetic energy of a particle at highest point to that at lowest point is
29
Oct
In vertical circular motion, the ratio of kinetic energy of a particle at highest point to that at lowest point is In vertical circular motion the ratio of kinetic energy of a particle at highest point to that at lowest point is October 29, 2020 Category: Chapter 7 - Circular Motion , MTG NEET Physics [...]