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Solve for C
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Solve for N
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\sigma m=210000Nm^{2}\times 0.00001191k\times 60C
Multiply both sides of the equation by m.
\sigma m=2.5011Nm^{2}k\times 60C
Multiply 210000 and 0.00001191 to get 2.5011.
\sigma m=150.066Nm^{2}kC
Multiply 2.5011 and 60 to get 150.066.
150.066Nm^{2}kC=\sigma m
Swap sides so that all variable terms are on the left hand side.
\frac{75033Nkm^{2}}{500}C=m\sigma
The equation is in standard form.
\frac{500\times \frac{75033Nkm^{2}}{500}C}{75033Nkm^{2}}=\frac{500m\sigma }{75033Nkm^{2}}
Divide both sides by 150.066Nm^{2}k.
C=\frac{500m\sigma }{75033Nkm^{2}}
Dividing by 150.066Nm^{2}k undoes the multiplication by 150.066Nm^{2}k.
C=\frac{500\sigma }{75033Nkm}
Divide \sigma m by 150.066Nm^{2}k.
\sigma m=210000Nm^{2}\times 0.00001191k\times 60C
Multiply both sides of the equation by m.
\sigma m=2.5011Nm^{2}k\times 60C
Multiply 210000 and 0.00001191 to get 2.5011.
\sigma m=150.066Nm^{2}kC
Multiply 2.5011 and 60 to get 150.066.
150.066Nm^{2}kC=\sigma m
Swap sides so that all variable terms are on the left hand side.
\frac{75033Ckm^{2}}{500}N=m\sigma
The equation is in standard form.
\frac{500\times \frac{75033Ckm^{2}}{500}N}{75033Ckm^{2}}=\frac{500m\sigma }{75033Ckm^{2}}
Divide both sides by 150.066m^{2}kC.
N=\frac{500m\sigma }{75033Ckm^{2}}
Dividing by 150.066m^{2}kC undoes the multiplication by 150.066m^{2}kC.
N=\frac{500\sigma }{75033Ckm}
Divide \sigma m by 150.066m^{2}kC.