Physics · JEE

The universal law of gravitation Short Tricks for JEE

19+ syllabus-aligned questions available

Quick answer

Short tricks for The universal law of gravitation work only with strong fundamentals. Apply the tips below in timed sets and review every explanation.

Use these The universal law of gravitation shortcuts to save time in JEE Physics papers — then validate speed with 19+ MCQs on Goodmarks.

Short tricks for speed

  • The universal law of gravitation focus drill

    Solve 15 mixed MCQs for The universal law of gravitation, review every explanation, and note formulas you hesitated on.

  • Dimensional check first

    Before solving, verify each term has consistent SI dimensions — eliminates wrong options quickly in JEE MCQs.

  • Limiting cases

    Substitute extreme values (t→0, m→∞, θ→0) to sanity-check your final expression.

Free sample questions

Attempt 8 free MCQs for The universal law of gravitation. Unlock 11+ more with Pro.

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Q1PhysicsUnit 6: Gravitation
If the gravitational force of earth suddenly disappears, then which of the following is correct?
Q2PhysicsUnit 6: Gravitation
The gravitational force of attraction between two bodies at a certain distance is 10N10 \mathrm{N}. If the distance between them is doubled, the force of attraction:
Q3PhysicsUnit 6: Gravitation
The gravitational force between two bodies is
Q4PhysicsUnit 6: Gravitation
Gravitational constant is experimentally measured using a
Q5PhysicsUnit 6: Gravitation
A body is lying on the surface of earth.Suppose that the earth suddenly loses its power of attraction, then
Q6PhysicsUnit 6: Gravitation
Assertion Newton's law of gravitation resembles Coulomb's law of electrical forces. Reason Coulomb's law has the product of two charges in place of the product of the masses, and the electrostatic constant in place of the gravitational constant.
Q7PhysicsUnit 6: Gravitation
The source of energy of the hot water spring is geothermal energy.
Q8PhysicsUnit 6: Gravitation
Gravitational force between two point masses mm and MM separated by a distance rr is FF. now if a point mass 3m3 m is placed very next to m\mathrm{m}, the total force on M\boldsymbol{M} will be

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Frequently asked questions

Are short tricks enough for The universal law of gravitation in JEE?

No — tricks complement concepts. Master the theory first, then use shortcuts in timed MCQ practice.