D.1.4—Gravitational field strength
- Syllabus
- First assessment 2025
- Objective
- —
- Level
- HL
Define the field
Gravitational field strength is force per unit test mass. For a point or spherical source of mass M, it depends on distance r from the source centre. It is a vector directed toward the source, with unit Nkg−1, numerically equivalent to ms−2.
g=\frac{F}{m}=\frac{GM}{r^2}
Worked example — surface field
For M=4.87×1024kg and r=6.05×106m, g=(6.67×10−11)(4.87×1024)/(6.05×106)2=8.87Nkg−1. The result is the force per kilogram at the surface, directed inward.
Read the scaling
At a fixed distance, g is proportional to M. At a fixed source mass, doubling r reduces g to one quarter. The field direction is toward the source mass; the scalar expression gives the magnitude. Near a surface, the weight of a mass m is W=mg.
Common trap
Do not use the object’s own mass in g=GM/r2 as M, and do not use altitude alone for r: use distance from the source centre.
Questions calculate weight near an asteroid or compare surface field strengths when source masses and radii change.
Calculate / What is
Identify the source mass M and centre-to-point distance r, apply g=GM/r² for magnitude, include the direction toward the source, and use W=mg only when calculating a test object’s weight.
Using the test mass in place of source mass M, or scaling g with radius rather than inverse-square radius.
Representative question
State the SI unit for gravitational field strength.
Nkg−1
Marking guidance:
Award mark if N kg−1 is seen, treating any further work as neutral.
Do not accept bald ms−2
D.1 core gravitational fields is secure when you can connect source mass, distance and field representation.