
A particle stays at rest as seen in a frame. We can conclude that
A. The frame is inertial
B. Resultant force on the particle is zero
C. If the frame may be inertial then the resultant force on the particle is zero.
D. If the frame is non-inertial then there is a non zero resultant force.
Answer
163.2k+ views
Hint: A frame of reference is the set of coordinate systems with time with the help of which the state of rest or of motion of any object with respect to the observer can be known or concluded.
Complete step by step solution:
There are two different types of frame of references: inertial frame of reference and non inertial frame of reference. In the case of an inertial frame of reference, the particle follows Newton’s first law of motion. This means that if no external force is acting it will be at rest.
Since there is no force acting, the resultant force will be zero. On the other hand, if the magnitude of acceleration with which the particle is moving is same as that of frame of reference, in that case the resultant force acting on the particle will not be equal to zero. Then also the particle is said to be at rest.
Hence, if the particle stays at rest as seen in a frame, it can be concluded that if the frame of reference is inertial, the resultant force acting on the particle is zero and if the frame of reference is non-inertial, then there is a non-zero resultant force.
Therefore, Option C and D are correct.
Note: It is important to remember that in case of non inertial frame of reference, Newton’s second law of motion does not hold true. This is because in a non inertial frame of reference, the particle is not in uniform motion.
Complete step by step solution:
There are two different types of frame of references: inertial frame of reference and non inertial frame of reference. In the case of an inertial frame of reference, the particle follows Newton’s first law of motion. This means that if no external force is acting it will be at rest.
Since there is no force acting, the resultant force will be zero. On the other hand, if the magnitude of acceleration with which the particle is moving is same as that of frame of reference, in that case the resultant force acting on the particle will not be equal to zero. Then also the particle is said to be at rest.
Hence, if the particle stays at rest as seen in a frame, it can be concluded that if the frame of reference is inertial, the resultant force acting on the particle is zero and if the frame of reference is non-inertial, then there is a non-zero resultant force.
Therefore, Option C and D are correct.
Note: It is important to remember that in case of non inertial frame of reference, Newton’s second law of motion does not hold true. This is because in a non inertial frame of reference, the particle is not in uniform motion.
Recently Updated Pages
JEE Main 2021 July 25 Shift 1 Question Paper with Answer Key

JEE Main 2021 July 22 Shift 2 Question Paper with Answer Key

JEE Atomic Structure and Chemical Bonding important Concepts and Tips

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

JEE Electricity and Magnetism Important Concepts and Tips for Exam Preparation

Chemical Properties of Hydrogen - Important Concepts for JEE Exam Preparation

Trending doubts
JEE Main 2025 Session 2: Application Form (Out), Exam Dates (Released), Eligibility, & More

JEE Main 2025: Derivation of Equation of Trajectory in Physics

Displacement-Time Graph and Velocity-Time Graph for JEE

Degree of Dissociation and Its Formula With Solved Example for JEE

Electric Field Due to Uniformly Charged Ring for JEE Main 2025 - Formula and Derivation

Charging and Discharging of Capacitor

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

NCERT Solutions for Class 11 Physics Chapter 1 Units and Measurements

Units and Measurements Class 11 Notes: CBSE Physics Chapter 1

Motion in a Straight Line Class 11 Notes: CBSE Physics Chapter 2

Important Questions for CBSE Class 11 Physics Chapter 1 - Units and Measurement

NCERT Solutions for Class 11 Physics Chapter 2 Motion In A Straight Line
