6: Prove equalion of continuaty: V.J %3D using Maxwell equations.
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- 2 very thin spherical shells are given as in the figure below. Let the loads with the inner shell load -Q and outer shell load + Q be uniformly distributed to these shells. What should be the electric field strength for the distance R inside the inner shell?Derive an expression for the unknown resistance and unknown inductance of Maxwell's bridges with a neat circuit representation. Please answer i will like it....... This question from measurement(Include free body diagram given, required, solutions)
- Using Maxwell=Boltzmann Distribution of speeds for Ideal Gas obtain the Boltzmann Distribution ofEnergies for Ideal Gas. (Follow The Detailed Lecture Discussions).very thin spherical shells are given as in the figure below. Let the loads with the inner shell load -Q and outer shell load + Q be uniformly distributed to these shells. What should be the electric field strength for the distance R outside the two shells?(Electromagnetism) A load distribution of uniform density ρ, forms a very long cylinder of radius a. One end of the cylinder has a spherical depression of radius b > a in such a way that the center of curvature of depression shower falls at a point p on the axis of the cylinder. Find the electric field at point p.
- Given the potential field, V = x2y–z, and a point P (–4,3,6), find V, E, direction of E, D, and ρv.Specify Maxwell’s equations in free space. Please write well.An isothermal plasma is confined between the planes ? = ±? in a magnetic field ? = ???. The density distribution is ? = ??(? − ??/??). Derive an expression for the diamagnetic drift velocity ??? as a function of x.