User:Ekmekparasi

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dsinθ = mλ
dsin\theta=(m+\frac {1}{2})\lambda
eV=\frac {1}{2}mv^2
v=\sqrt \frac{2eV}{m}
F=eBv=\frac {mv^2}{R}
eB=\frac {mv} {R}
en \mu_0 I=\frac {mv}{R}
en \mu_0 I = \frac {m \sqrt \frac{2eV}{m}} {R}
e n^2 \mu_0^2 I^2 R= 2 m V
V=\frac {e n^2 \mu_0^2 R} {2m} I^2
y = mx + b
T^2=4\pi^2 \frac {l}{g}
\frac {T^2}{l}=\frac{4\pi^2}{g}




\frac {X} {R}=\frac{L_1}{100-L_1}
X=\frac {RL_1}{100-L_1}
y = mx + b
m=6.64 \Omega/m^2=\frac{\rho}{A}
A = πr2 = π(0.13 * 10 − 3)2
ρ = mA = 6.64 * 5.31 * 10 − 8 = 3.53 * 10 − 7Ω.m
\rho=353 \quad n \Omega.m
m=\frac{\rho}{A}
ρ = m.A