This question focuses on the second equation of motion, which calculates the displacement of an object moving under uniform acceleration.
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This question involves the application of the second equation of motion to calculate the acceleration of a particle when its displacement, initial velocity and time are given.
This question is about applying the first equation of motion to find the velocity of an object starting from rest under constant acceleration.
This question tests your understanding of the first equation of motion, which relates an object’s initial velocity, acceleration, and time to its final velocity.
Significant figures represent the precision of a measured quantity, including all digits except leading zeros.
Fundamental quantities are independent and form the base of derived physical quantities. Examples include length, mass, and time.
A dimensionless quantity is independent of the unit system used.
Accuracy refers to how close a measured value is to the true value.
Energy is a derived quantity in the SI system and is measured in joules.
Significant figures in measurements depend on the precision of the measuring instrument.