S.2 A cylinder of radius r0, length L, and thermal conductivity (heat conduction coefficient k) is immersed in a liquid with an unknown convection coefficient h and temperature. At a given moment, the temperature distribution in the cylinder is given by the equation T(r) = a + br^2 (with respect to r). T will be the derivative and a and b are constant coefficients. The liquid fluid temperature (T.) can be expressed as T = 2kT + a + br^2. Obtain two separate equations for the heat transfer amount (Qr-ro = Qtransmission) and heat transfer (Qconvection) at r = r0. You can abbreviate (Qtransmission = Qtransport = Q).