9702/43

Physics 9702/43May/June 2012

Cambridge A-Level · A Level Structured Questions · worked solutions for every part, with the mark scheme

13
questions
100
marks
120
minutes

Topics Alternating Currents · Magnetic Fields · Gravitational Fields · Ideal Gases · Temperature · Oscillations · +7 more

Q1Gravitational FieldsFree sample
(a)

Define gravitational potential at a point.

1M
(b)

The gravitational potential ϕ\phi at distance rr from point mass MM is given by the expression

ϕ=GMr\phi = - \frac{GM}{r}

where GG is the gravitational constant.

Explain the significance of the negative sign in this expression.

2M
(c)

A spherical planet may be assumed to be an isolated point mass with its mass concentrated at its centre. A small mass mm is moving near to, and normal to, the surface of the planet. The mass moves away from the planet through a short distance hh.

State and explain why the change in gravitational potential energy ΔEP\Delta E_P of the mass is given by the expression

ΔEP=mgh\Delta E_P = mgh

where gg is the acceleration of free fall.

4M
(d)

The planet in (c) has mass MM and diameter 6.8×103 km6.8 \times 10^3\ \text{km}. The product GMGM for this planet is 4.3×1013 N m2 kg14.3 \times 10^{13}\ \text{N m}^2\ \text{kg}^{-1}.

A rock, initially at rest a long distance from the planet, accelerates towards the planet. Assuming that the planet has negligible atmosphere, calculate the speed of the rock as it hits the surface of the planet.

speed = ______ m s1\text{m s}^{-1}

3M

The rest of this paper

12 more questions
  • Q2Ideal Gases9M
  • Q3Temperature5M
  • Q4Oscillations6M
  • Q5Electric Fields5M
  • Q6Alternating Currents · Capacitance11M
  • Q7Magnetic Fields · Alternating Currents9M
  • Q8Quantum Physics5M
  • Q9Nuclear Physics10M
  • Q10Electronics8M
  • Q11Medical Physics10M
  • Q12Magnetic Fields7M
  • Q13Communication5M
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