Solution:
We know \(g = \frac{G M}{R^2} = \frac{G}{R^2} \left(\frac{4}{3}\pi R^3 \rho\right) = \frac{4}{3}\pi RG\rho\). Solving for density, \(\rho = \frac{3g}{4\pi RG}\).
We know \(g = \frac{G M}{R^2} = \frac{G}{R^2} \left(\frac{4}{3}\pi R^3 \rho\right) = \frac{4}{3}\pi RG\rho\). Solving for density, \(\rho = \frac{3g}{4\pi RG}\).
Leave a Reply