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ElectricalElectronics
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The following is the second London equation

A

mnsq2∇×Js+B=0m n_{s} q^{2} ∇ \times J_{s} + B = 0mns​q2∇×Js​+B=0

B

mcnsq2∂×Js+B=0m c n_{s} q^{2} ∂ \times J_{s} + B = 0mcns​q2∂×Js​+B=0

C

mnsq2∂×Js=Bm n_{s} q^{2} ∂ \times J_{s} = Bmns​q2∂×Js​=B

D

mcnsq2∂×Js+B=∞m c n_{s} q^{2} ∂ \times J_{s} + B = ∞mcns​q2∂×Js​+B=∞

Correct Answer

⚙️ TE • Technical Verified SolutionElectricalElectronics
Option A

mnsq2∇×Js+B=0m n_{s} q^{2} ∇ \times J_{s} + B = 0mns​q2∇×Js​+B=0

Quick Summary:

Practice and solve "The following is the second London equation..." for Electrical - Electronics. The correct answer is Option A: m ns q2∇×Js + B = 0. Detailed step-by-step solution, conceptual clarity, and formulas on Examoogle.

Option **(a) **

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