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CBSE • Class 9 • Science • Ch 9
Estimated Time: 45 Mins
Study Progress: In Progress

Gravitation

In Class 9 Science, "Gravitation" provides an authoritative, curriculum-verified master resource aligned with the 2026–27 NCERT syllabus.

🍎 Have You Ever Wondered?

What invisible cosmic leash keeps the Moon orbiting the Earth and the Earth orbiting the Sun across trillions of miles of empty vacuum? Sir Isaac Newt...

What invisible cosmic leash keeps the Moon orbiting the Earth and the Earth orbiting the Sun across trillions of miles of empty vacuum? Sir Isaac Newton realized that the exact same force that causes an apple to fall from a tree binds the entire universe together.

Why This Chapter Matters

In Class 9 Science, "Gravitation" provides an authoritative, curriculum-verified master resource aligned with the 2026–27 NCERT syllabus.

Before You Begin (Prerequisites)

  • Forces from Chapter 8.
  • Weight and mass.
  • Free fall and motion.

What You Will Learn (Core Objectives)

  • State Newton's Universal Law of Gravitation: $F = G\frac{Mm}{d^2}$ and define Universal Gravitational Constant ($G$).
  • Explain acceleration due to gravity ($g = \frac{GM}{R^2} \approx 9.8\text{ m/s}^2$) on Earth's surface.
  • Distinguish between Mass (constant scalar) and Weight (gravitational force, vector, variable).
  • Solve free-fall kinematic equations substituting $a = g$.
  • Explain Thrust, Pressure in fluids, Buoyant force, Archimedes' Principle, and Relative Density.

Chapter Roadmap & Progression

1 1. Universal Law of Gravitation
2 2. Acceleration Due to Gravity ($g$...
3 3. Archimedes' Principle & Buoyancy

Complete Concept Guide (100% Curriculum Coverage)

1. Universal Law of Gravitation

Every particle in the universe attracts every other particle with a force proportional to the product of their masses and inversely proportional to the square of the distance between them: $$\mathbf{F = G\frac{M \cdot m}{d^2}} \quad \left(G = 6.674 \times 10^{-11}\text{ N}\cdot\text{m}^2\text{/kg}^2\right)$$

2. Acceleration Due to Gravity ($g$) vs. Mass & Weight

On Earth's surface, all freely falling objects accelerate downward at $g \approx 9.8\text{ m/s}^2$ regardless of mass!
• Mass ($m$): Quantity of matter in an object; constant everywhere (kg).
• Weight ($W = mg$): Gravitational pull acting on mass (Newtons); on the Moon, $g_{\text{moon}} = \frac{1}{6}g_{\text{earth}}$, so your weight on the Moon is one-sixth!

3. Archimedes' Principle & Buoyancy

When an object is immersed in a fluid, it experiences an upward buoyant force equal to the weight of fluid displaced by the body. A steel ship floats because its hollow shape displaces a volume of water whose weight is greater than the total weight of the ship!

Visual Learning & Conceptual Map

Gravitation Master Matrix

Conceptual framework, core mechanisms, and analytical relationships
Academic Architecture

1. Universal Law of Gravitation • 2. Acceleration Due to Gravity ($g$) vs. Mass & Weight

Chapter Summary & 10 Key Takeaways

Takeaway 1
Universal Gravitation: $F = G\frac{Mm}{d^2}$; holds planets in orbit and tides in oceans.
Takeaway 2
Acceleration due to Gravity: $g = 9.8\text{ m/s}^2$ on Earth's surface.
Takeaway 3
Weight Formula: $W = mg$; weight on Moon is $1/6$th of Earth.
Takeaway 4
Archimedes' Principle: Upward buoyant force = Weight of displaced fluid.
Takeaway 5
Relative Density: Ratio of substance density to water density; floats if $< 1$.

Check Your Understanding (Diagnostic Practice Questions)

Diagnostic questions testing core conceptual clarity. Answers are hidden initially — solve each problem first, then click to reveal the step-by-step verified solution.

1
What is the weight of an object on the surface of the Moon if its weight on Earth is 60 N?
Reveal Answer & Explanation
Answer: $\text{Weight on Moon} = \frac{1}{6} \times 60 = 10\text{ Newtons}$.
One-sixth of Earth weight.
2
Why does an iron nail sink in water while a massive steel ship floats?
Reveal Answer & Explanation
Answer: An iron nail is solid and displaces a tiny volume of water whose weight is less than the nail's weight. A hollow ship displaces a massive volume of water whose buoyant force easily balances the ship's weight.
Ship displaces water equal to its weight.
3
An object is thrown vertically upwards with a velocity of $49\text{ m/s}$. Calculate the maximum height reached. ($g = 9.8\text{ m/s}^2$).
Reveal Answer & Explanation
Answer: At peak $v = 0$. $v^2 = u^2 - 2gh \implies 0 = 49^2 - 2(9.8)h \implies 19.6h = 2401 \implies h = 122.5\text{ meters}$.
v^2 = u^2 - 2gh.
4
Distinguish between Mass and Weight.
Reveal Answer & Explanation
Answer: Mass is the scalar quantity of matter in a body, measured in kg and constant everywhere; Weight is the downward gravitational force acting on it ($W = mg$), measured in Newtons and varying with local $g$.
Constant mass vs variable gravitational weight.
5
What happens to the gravitational attraction between two objects if the distance between them is doubled?
Reveal Answer & Explanation
Answer: Force is inversely proportional to distance squared ($F \propto 1/d^2$). If distance is doubled, the force becomes one-fourth ($1/4$) of its original value.
Inversely proportional to distance squared.
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Timed CBT Practice Tests (Exam Simulator)

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