each with surface energy E
The velocity of liquid (v) in steady flow at a location through cylindrical pipe is given by v = v0 ( 1− r2/R2 ), where r is the radial distance of that location from the axis of the pipe and R is the inner radius of pipe. If R = 10 cm. volume rate of flow through the pipe is π/2 × 10^−2 m^3/s and the coefficient of viscosity of the liquid is 0.75 N/m^2
12
Oct
The velocity of liquid (v) in steady flow at a location through cylindrical pipe is given by v = v0 ( 1− r2/R2 ), where r is the radial distance of that location from the axis of the pipe and R is the inner radius of pipe. If R = 10 cm. volume rate of [...]
Two separate air bubbles (radii 0.002 m and 0.004 m) formed of the same liquid (surface tension 0.07N/m) come together to form a double bubble. Find the radius and the sense of curvature of the internal film surface common to both the bubbles.
12
Oct
Two separate air bubbles (radii 0.002 m and 0.004 m) formed of the same liquid (surface tension 0.07N/m) come together to form a double bubble. Find the radius and the sense of curvature of the internal film surface common to both the bubbles. each with surface energy E If n drops of a liquid join [...]
A sphere is dropped into a viscous liquid of viscosity n from some height. If the density of material and liquid are rho and sigma respectively ( rho > sigma ) then which of the following is/are incorrect.
12
Oct
A sphere is dropped into a viscous liquid of viscosity n from some height. If the density of material and liquid are rho and sigma respectively ( rho > sigma ) then which of the following is/are incorrect. each with surface energy E If n drops of a liquid join to form a single drop [...]
If n drops of a liquid , each with surface energy E, join to form a single drop , then
11
Oct
If n drops of a liquid , each with surface energy E, join to form a single drop , then each with surface energy E If n drops of a liquid join to form a single drop then October 11, 2020 Category: Uncategorised (JEE Advanced Physics by BM Sharma + GMP Solutions) ,