
A: The relative acceleration of two objects moving under the effect of gravity, only is always zero, irrespective of direction of motion.
R : The acceleration of object moving under the effect of gravity have acceleration always in downward direction and is independent from size and mass of object
Answer
216.6k+ views
Hint: We know that the acceleration of two bodies under gravity will have zero relative acceleration and hence will be the same irrespective of direction. Using this , find whether the reason matches the assertion or not.
Complete step by step solution:
Given that the relative acceleration of 2 objects under gravity is independent of direction of motion. This statement is true because, if we throw or drop 2 objects in the same force as gravity, the acceleration of the body will be equal. Since the definition of relative acceleration states as difference between the acceleration of body 1 and body 2, and since both are under the influence of gravity, they cancel out each other and produce zero relative acceleration.
Therefore, when there’s zero relative motion between 2 bodies, the bodies are said to be independent of direction of motion.
Now, let us analyze the reason for it. It is given that acceleration of objects moving under the effect of gravity have downward acceleration. This is because, earth’s gravitational force is greater than that of the body, which means that even when a stone is projected with a certain velocity greater than that of gravity, at one point where its velocity becomes lesser than g, the earth’s gravitational pull starts to pull the object down. This applies regardless to a stone or a heavy machine. Which means that it is independent of mass and size.
Thus, both the reason and assertion are true and the reason explains the assertion.
Note:
Escape velocity is a velocity that is used by the object to escape earth’s gravity into space. It is very high and deployed by rockets and spaceships.
Complete step by step solution:
Given that the relative acceleration of 2 objects under gravity is independent of direction of motion. This statement is true because, if we throw or drop 2 objects in the same force as gravity, the acceleration of the body will be equal. Since the definition of relative acceleration states as difference between the acceleration of body 1 and body 2, and since both are under the influence of gravity, they cancel out each other and produce zero relative acceleration.
Therefore, when there’s zero relative motion between 2 bodies, the bodies are said to be independent of direction of motion.
Now, let us analyze the reason for it. It is given that acceleration of objects moving under the effect of gravity have downward acceleration. This is because, earth’s gravitational force is greater than that of the body, which means that even when a stone is projected with a certain velocity greater than that of gravity, at one point where its velocity becomes lesser than g, the earth’s gravitational pull starts to pull the object down. This applies regardless to a stone or a heavy machine. Which means that it is independent of mass and size.
Thus, both the reason and assertion are true and the reason explains the assertion.
Note:
Escape velocity is a velocity that is used by the object to escape earth’s gravity into space. It is very high and deployed by rockets and spaceships.
Recently Updated Pages
JEE Atomic Structure and Chemical Bonding important Concepts and Tips

JEE Amino Acids and Peptides Important Concepts and Tips for Exam Preparation

Electricity and Magnetism Explained: Key Concepts & Applications

Chemical Properties of Hydrogen - Important Concepts for JEE Exam Preparation

JEE Energetics Important Concepts and Tips for Exam Preparation

JEE Isolation, Preparation and Properties of Non-metals Important Concepts and Tips for Exam Preparation

Trending doubts
JEE Main 2026: Application Form Open, Exam Dates, Syllabus, Eligibility & Question Papers

Derivation of Equation of Trajectory Explained for Students

Hybridisation in Chemistry – Concept, Types & Applications

Understanding the Angle of Deviation in a Prism

Understanding Collisions: Types and Examples for Students

How to Convert a Galvanometer into an Ammeter or Voltmeter

Other Pages
JEE Advanced Marks vs Ranks 2025: Understanding Category-wise Qualifying Marks and Previous Year Cut-offs

Units And Measurements Class 11 Physics Chapter 1 CBSE Notes - 2025-26

NCERT Solutions For Class 11 Physics Chapter 8 Mechanical Properties Of Solids

Motion in a Straight Line Class 11 Physics Chapter 2 CBSE Notes - 2025-26

NCERT Solutions for Class 11 Physics Chapter 7 Gravitation 2025-26

Understanding Atomic Structure for Beginners

