D.1.1—Kepler’s three laws of orbital motion
- Syllabus
- First assessment 2025
- Objective
- —
- Level
- SL
State the three laws
Interpret the geometry
The semi-major axis a is half the longest diameter of the ellipse. In an elliptical orbit the planet is closer to the star at one focus-side end and farther away at the other. Equal swept areas mean the planet moves faster when it is closer to the star and slower when it is farther away.
Compare orbital systems
For two planets around the same star,
TXTY=(aXaY)3/2
Use the semi-major axes, not automatically the instantaneous distance from the star. The third law comparison assumes the same central mass.
Common trap
The star is at a focus, not generally at the centre of the ellipse. Also, the second law refers to equal swept areas, not equal arc lengths or equal distances travelled.
Questions identify a correct Kepler statement or compare periods for planets orbiting the same star using the 3/2 power of the semi-major-axis ratio.
Which is / What is
Match each statement to its law, distinguish semi-major axis from instantaneous radius, and use T²∝a³ only when comparing bodies around the same central star.
Replacing the semi-major axis with the instantaneous orbital radius, or stating that the star lies at the centre of an ellipse.
Representative question
The relationship between the period of a planet's orbit T and the distance to the Sun R can be expressed as Tn∝Rm where n and m are constants.
What is a possible pair of values for n and m ?
n
m
1.0
3.0
1.0
1.5
2.0
1.5
2.0
1.0
B
D.1 core gravitational fields is secure when you can connect source mass, distance and field representation.