Solve for N
N=\frac{5\sqrt{37946}Cϕ}{1693116m^{2}}
C\neq 0\text{ and }m\neq 0
Solve for C
\left\{\begin{matrix}C=\frac{846558\sqrt{37946}Nm^{2}}{94865ϕ}\text{, }&m\neq 0\text{ and }N\neq 0\text{ and }ϕ\neq 0\\C\neq 0\text{, }&m\neq 0\text{ and }ϕ=0\text{ and }N=0\end{matrix}\right.
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ϕ=55512000NC^{-1}\times 10^{-4}m^{2}\cos(\arctan(\frac{185\times 10^{-2}m}{\frac{122}{2}\times 10^{-2}m}))
Multiply 4500 and 12336 to get 55512000.
ϕ=55512000NC^{-1}\times \frac{1}{10000}m^{2}\cos(\arctan(\frac{185\times 10^{-2}m}{\frac{122}{2}\times 10^{-2}m}))
Calculate 10 to the power of -4 and get \frac{1}{10000}.
ϕ=\frac{27756}{5}NC^{-1}m^{2}\cos(\arctan(\frac{185\times 10^{-2}m}{\frac{122}{2}\times 10^{-2}m}))
Multiply 55512000 and \frac{1}{10000} to get \frac{27756}{5}.
ϕ=\frac{27756}{5}NC^{-1}m^{2}\cos(\arctan(\frac{185\times \frac{1}{100}m}{\frac{122}{2}\times 10^{-2}m}))
Calculate 10 to the power of -2 and get \frac{1}{100}.
ϕ=\frac{27756}{5}NC^{-1}m^{2}\cos(\arctan(\frac{\frac{37}{20}m}{\frac{122}{2}\times 10^{-2}m}))
Multiply 185 and \frac{1}{100} to get \frac{37}{20}.
ϕ=\frac{27756}{5}NC^{-1}m^{2}\cos(\arctan(\frac{\frac{37}{20}m}{61\times 10^{-2}m}))
Divide 122 by 2 to get 61.
ϕ=\frac{27756}{5}NC^{-1}m^{2}\cos(\arctan(\frac{\frac{37}{20}m}{61\times \frac{1}{100}m}))
Calculate 10 to the power of -2 and get \frac{1}{100}.
ϕ=\frac{27756}{5}NC^{-1}m^{2}\cos(\arctan(\frac{\frac{37}{20}m}{\frac{61}{100}m}))
Multiply 61 and \frac{1}{100} to get \frac{61}{100}.
ϕ=\frac{27756}{5}NC^{-1}m^{2}\cos(\arctan(\frac{\frac{37}{20}}{\frac{61}{100}}))
Cancel out m in both numerator and denominator.
ϕ=\frac{27756}{5}NC^{-1}m^{2}\cos(\arctan(\frac{37}{20}\times \frac{100}{61}))
Divide \frac{37}{20} by \frac{61}{100} by multiplying \frac{37}{20} by the reciprocal of \frac{61}{100}.
ϕ=\frac{27756}{5}NC^{-1}m^{2}\cos(\arctan(\frac{185}{61}))
Multiply \frac{37}{20} and \frac{100}{61} to get \frac{185}{61}.
\frac{27756}{5}NC^{-1}m^{2}\cos(\arctan(\frac{185}{61}))=ϕ
Swap sides so that all variable terms are on the left hand side.
\frac{27756\cos(\arctan(\frac{185}{61}))m^{2}}{5C}N=ϕ
The equation is in standard form.
\frac{\frac{27756\cos(\arctan(\frac{185}{61}))m^{2}}{5C}N\times 5C}{27756\cos(\arctan(\frac{185}{61}))m^{2}}=\frac{ϕ\times 5C}{27756\cos(\arctan(\frac{185}{61}))m^{2}}
Divide both sides by \frac{27756}{5}C^{-1}m^{2}\cos(\arctan(\frac{185}{61})).
N=\frac{ϕ\times 5C}{27756\cos(\arctan(\frac{185}{61}))m^{2}}
Dividing by \frac{27756}{5}C^{-1}m^{2}\cos(\arctan(\frac{185}{61})) undoes the multiplication by \frac{27756}{5}C^{-1}m^{2}\cos(\arctan(\frac{185}{61})).
N=\frac{5\sqrt{37946}Cϕ}{1693116m^{2}}
Divide ϕ by \frac{27756}{5}C^{-1}m^{2}\cos(\arctan(\frac{185}{61})).
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