Exams
Subjects
Classes
Home
Exams
Physics
laws in physics
pick out the incorrect st...
Question:
medium
Pick out the INCORRECT statement from the following
Show Hint
Work depends on displacement, not on time.
KEAM - 2025
KEAM
Updated On:
Apr 24, 2026
Work done in uniform circular motion is zero
When a body is in dynamic equilibrium, work done is zero
Work done is positive for a freely falling body under gravity
Work done in a stretched string is positive
Work done depends on the time taken to complete the work
Show Solution
The Correct Option is
Solution and Explanation
Download Solution in PDF
Was this answer helpful?
0
Top Questions on laws in physics
Which of the following is incorrect
KEAM - 2026
Physics
laws in physics
View Solution
Among the following the INCORRECT statement is
KEAM - 2026
Physics
laws in physics
View Solution
Which one of the following statements is CORRECT?
KEAM - 2026
Physics
laws in physics
View Solution
Which one is INCORRECT?
KEAM - 2026
Physics
laws in physics
View Solution
Want to practice more? Try solving extra ecology questions today
View All Questions
Questions Asked in KEAM exam
The dimension of mutual inductance is (Denote dimension of current as A)
KEAM - 2026
Electromagnetism
View Solution
A pure inductor of inductance \( 0.1 \, \text{H} \) is connected to an AC source (of rms voltage 220 V and angular frequency 300 Hz). The rms current is
KEAM - 2026
Magnetic Flux
View Solution
An object having a velocity of 5 m/s is accelerated at the rate 2 m/s\(^2\) for 6s. Find the distance travelled during the period of acceleration.
KEAM - 2026
Significant figures and Decimal Places
View Solution
A vehicle moving at 36 km/hr is to be stopped by applying brakes in the next 5 m. If the vehicle weighs 2000 kg, determine the average force that must be applied on it.
KEAM - 2026
Electron Emission
View Solution
Two masses connected in series with two massless strings are hanging from a support as shown in the figure. Find the tension in the upper string.
KEAM - 2026
Electric Potential and Electric Potential Energy
View Solution