The boiling point of water decreases at high altitudes because MCQ with Answer and Explanation

The boiling point of water decreases at high altitudes because
A. Temperature is low
B. Humidity is low
C. Pressure is low
D. Wind speed high
Answer: Option C
Solution (By JKSSB Mock Tests)
Low atmospheric pressure reduces boiling point.

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Practice More Physics Questions

Question #1
Rainbow formation is a complex phenomenon primarily involving which set of optical processes?
A. Refraction, Dispersion, and Total Internal Reflection
B. Reflection, Diffraction, and Scattering
C. Reflection, Scattering, and Dispersion
D. Diffraction, Interference, and Polarization

Correct Answer: Option A


Explanation:
A rainbow is formed by sunlight interacting with water droplets. As light enters the droplet, it undergoes refraction and dispersion (separating into colors). The light then strikes the back of the droplet and undergoes total internal reflection. Finally, it undergoes a second refraction as it exits, spreading the spectrum out for the observer to see.

This question belongs to: Science Physics
Question #2
An object is moving in a circular path with constant speed. Which of the following remains constant?
A. Kinetic energy
B. Linear momentum
C. Velocity
D. Acceleration

Correct Answer: Option A


Explanation:
Speed constant implies magnitude of velocity constant, so kinetic energy (½mv²) is constant. Velocity changes due to direction change. Acceleration (centripetal) is directed towards centre, changes direction. Linear momentum vector changes. So only kinetic energy remains constant.

This question belongs to: Science Physics
Question #3
Projectile peak: velocity and acceleration are:
A. Both zero
B. Both max
C. v=0, a=g downward
D. v max, a=0

Correct Answer: Option C


Explanation:
At maximum height, vertical velocity = 0 momentarily, but acceleration = g downward throughout motion. Memory tip: 'Peak: v=0, a=g; gravity never switches off'. Kinematics concept frequently tested to correct misconception that acceleration vanishes at peak.

This question belongs to: Science Physics