Uncategorised (JEE Advanced Physics by BM Sharma + GMP Solutions)
The graph which represents the variation of mean kinetic energy of molecules with temperature t C is
27
Oct
The graph which represents the variation of mean kinetic energy of molecules with temperature t C is The graph which represents the variation of mean kinetic energy of molecules with temperature t C is October 27, 2020 Category: Uncategorised (JEE Advanced Physics by BM Sharma + GMP Solutions) ,
A box containing N molecules of an ideal gas at temperature T1 and pressure P1. The number of molecules in the box is doubled keeping the total kinetic energy of the gas same as
27
Oct
A box containing N molecules of an ideal gas at temperature T1 and pressure P1. The number of molecules in the box is doubled keeping the total kinetic energy of the gas same as A box containing N molecules of an ideal gas at temperature T1 and pressure P1. The number of molecules in the [...]
In series LCR circuit voltage drop across resistance is 8 V, across inductor is 6 V and across capacitor is 12 V. Then
27
Oct
In series LCR circuit voltage drop across resistance is 8 V, across inductor is 6 V and across capacitor is 12 V. Then across inductor is 6 V and across capacitor is 12 V. Then In series LCR circuit voltage drop across resistance is 8 V October 27, 2020 Category: Uncategorised (JEE Advanced Physics by [...]
In a black box of unknown elements (L or R or any other combination), an ac voltage E=E 0 sin(ωt+ϕ) is applied and current in the circuit was found to be I = I 0 sin[ ωt+ϕ+(π/4) ]. Then the unknown elements in the box may be
27
Oct
In a black box of unknown elements (L or R or any other combination), an ac voltage E=E 0 sin(ωt+ϕ) is applied and current in the circuit was found to be I = I 0 sin[ ωt+ϕ+(π/4) ]. Then the unknown elements in the box may be an ac voltage E=E 0 [...]
The value of current in two series LCR circuits at resonance is same. Then
27
Oct
The value of current in two series LCR circuits at resonance is same. Then The value of current in two series LCR circuits at resonance is same. Then October 27, 2020 Category: Uncategorised (JEE Advanced Physics by BM Sharma + GMP Solutions) ,
A gas mixture consists of molecules of type 1, 2 and 3 with molar masses m1 > m2 > m3. Vrms and K are the rms speed and average kinetic energy of the gases, respectively.
27
Oct
A gas mixture consists of molecules of type 1, 2 and 3 with molar masses m1 > m2 > m3. Vrms and K are the rms speed and average kinetic energy of the gases, respectively. 2 and 3 with molar masses m1 > m2 > m3. Vrms and K are the rms speed and average [...]
For an LCR series circuit with an ac source of angular frequency omega,
27
Oct
For an LCR series circuit with an ac source of angular frequency omega, For an LCR series circuit with an ac source of angular frequency omega October 27, 2020 Category: Uncategorised (JEE Advanced Physics by BM Sharma + GMP Solutions) ,
If P is the atmospheric pressure in the previous problem, find the percentage increase in tension of the string after heating:
27
Oct
If P is the atmospheric pressure in the previous problem, find the percentage increase in tension of the string after heating: find the percentage increase in tension of the string after heating: If P is the atmospheric pressure in the previous problem October 27, 2020 Category: Uncategorised (JEE Advanced Physics by BM Sharma + GMP [...]
If 2 mol of an ideal monatomic gas at temperature T0 are mixed with 4 mol of another ideal monatomic gas at temperature 2 T0, then the temperature of the mixture is
27
Oct
If 2 mol of an ideal monatomic gas at temperature T0 are mixed with 4 mol of another ideal monatomic gas at temperature 2 T0, then the temperature of the mixture is If 2 mol of an ideal monatomic gas at temperature T0 are mixed with 4 mol of another ideal monatomic gas at temperature [...]
Internal energy of n1 mol of hydrogen of temperature T is equal to the internal energy of n2 mol of helium at temperature 2 T. The ratio n1/n2 is
27
Oct
Internal energy of n1 mol of hydrogen of temperature T is equal to the internal energy of n2 mol of helium at temperature 2 T. The ratio n1/n2 is Internal energy of n1 mol of hydrogen of temperature T is equal to the internal energy of n2 mol of helium at temperature 2 T. The [...]