Home
Class 11
PHYSICS
Heat flows radially outwards through a s...

Heat flows radially outwards through a spherical shell of outside radius `R_2` and inner radius `R_1`. The temperature of inner surface of shell is `theta_1` and that of outer is `theta_2`. At what radial distance from centre of shell the temperature is just half way between `theta_1 and theta_2`?

Promotional Banner

Similar Questions

Explore conceptually related problems

What is the volume of the material in a spherical shell with inner radius ‘r' and outer radius 'R' ?

A spherical shell of charge +Q, has outer radius r_2 and inner radius r_1 . If a charge +q is placed at the centre of shell then what are the values of surface charge density of inner and outer surfaces?

A spherical conducting shell of inner radius r_1 and outer radius r_2 has a charge Q as shown in the figure. A charge q is placed at the centre of the shell. What is the surface charge density of the inner and outer sufaces of the shell?

A point charge q is placed inside a conducting spherical shell of inner radius 2R and outer radius 3R at a distance of R fro the centre of the shell. The electric potential at the centre of shell will (potential at infinity is zero).

A point charge q is placed inside a conducting spherical shell of inner radius 2R and outer radius 3R at a distance of R fro the centre of the shell. The electric potential at the centre of shell will (potential at infinity is zero).

A metallic spherical shell has an inner radius R_1 and outer radius R_2 . A charge Q is placed at the center of the spherical cavity. What will be the surface charge density on the inner surface ?

A metallic spherical shell has an inner radius R_1 and outer radius R_2. A charge Q is placed at the center of the spherical cavity. What will be the surface charge density on the outer surface ?

A point charge q is placed inside a conducting spherical shell of inner radius 2 R and outer radius 3 R at a distance of R from the center of the shell. Find the electric potential at the center of the shell.

A metallic spherical shell has an linner radius R_1 and outer radius R_2 . A charge Q is placed at the centre of the spherical cavity . What will be surface charge density on (i) the linner surface and (ii) the outer surface ?