(a) What is the acceleration due to gravity on the surface of the Moon? m/s2 (b) What is the acceleration due to gravity on the surface of Neptune? The mass of Neptune is 1.02 x 1026 kg and its radius is 2.48 x 10 m. m/s2

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**Question: Calculating Gravitational Acceleration**

(a) What is the acceleration due to gravity on the surface of the Moon?
- [ ____ ] m/s²

(b) What is the acceleration due to gravity on the surface of Neptune? The mass of Neptune is \(1.02 \times 10^{26}\) kg and its radius is \(2.48 \times 10^7\) m.
- [ ____ ] m/s²

**Note:** To find the acceleration due to gravity, you can use the formula:

\[ g = \frac{G \cdot M}{r^2} \]

where \( g \) is the acceleration due to gravity, \( G \) is the gravitational constant (\(6.674 \times 10^{-11} \, \text{Nm}^2/\text{kg}^2\)), \( M \) is the mass of the celestial body, and \( r \) is its radius.
Transcribed Image Text:**Question: Calculating Gravitational Acceleration** (a) What is the acceleration due to gravity on the surface of the Moon? - [ ____ ] m/s² (b) What is the acceleration due to gravity on the surface of Neptune? The mass of Neptune is \(1.02 \times 10^{26}\) kg and its radius is \(2.48 \times 10^7\) m. - [ ____ ] m/s² **Note:** To find the acceleration due to gravity, you can use the formula: \[ g = \frac{G \cdot M}{r^2} \] where \( g \) is the acceleration due to gravity, \( G \) is the gravitational constant (\(6.674 \times 10^{-11} \, \text{Nm}^2/\text{kg}^2\)), \( M \) is the mass of the celestial body, and \( r \) is its radius.
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