- Tardigrade
- Question
- Physics
- In steady state heat conduction, the equations that determine the heat current j (r) [heat flowing per un it time per unit area] and temperature T(r) in space are exactly the same as those governing the electric field E (r) and electrostatic potential V (r) with the equivalence given in the table below. Heat flow Electrostatics T( r) V(r) j(r) E(r) We exploit this equivalence to predict the rate Q of total he at flowing by conduction from the surfaces of spheres of varying radii, all maintained at the same temperature . If Q propto Rn , where R is the radius, then the value of n is
Q.
In steady state heat conduction, the equations that determine the heat current [heat flowing per un it time per unit area] and temperature in space are exactly the same as those governing the electric field and electrostatic potential with the equivalence given in the table below.
Heat flow
Electrostatics
T( r)
V(r)
j(r)
E(r)
We exploit this equivalence to predict the rate of total he at flowing by conduction from the surfaces of spheres of varying radii, all maintained at the same temperature . If where is the radius, then the value of is
Heat flow | Electrostatics |
---|---|
T( r) | V(r) |
j(r) | E(r) |
Solution: