Rest for one observer can be motion for another.
TRV: Translatory, Rotatory, Vibratory.
ā Must-know
Distance is a scalar quantity measured in metres in the SI system and can be positive.
Displacement is a vector quantity measured in metres in the SI system and can be positive, negative, or zero.
Further detail
Distance measures total path, whereas displacement measures directed shortest separation.
ā Must-know
š Formula ā Speed is calculated by and has the SI unit m/s.
š Formula ā Velocity is calculated by and has the SI unit m/s.
Further detail
š Uniform speed means covering equal distances in equal intervals of time, whereas uniform velocity means covering equal displacements in equal intervals of time.
Speed uses distance; velocity uses displacement and direction.
ā Must-know
š Formula ā Acceleration is calculated by .
Further detail
A change in velocity over time produces acceleration.
ā Must-know
š Newton's equations of motion apply when acceleration is uniform. ā Issac Newton
š Formula ā The first equation of motion is , where acceleration is and . ā Issac Newton
š Formula ā The second equation of motion is . ā Issac Newton
š Formula ā The third equation of motion is . ā Issac Newton
Further detail
Velocity first, displacement second, velocity-distance third.
ā Must-know
š For an object moving upward, gravity is taken as negative because the upward motion is opposite to the gravitational force.
Further detail
A body thrown upward at 50 m/s reaches a maximum height of 127.55 m when the acceleration is -9.8 m/s² and the final velocity is zero.
A ball dropped from 50 m with initial velocity zero reaches the ground at approximately 31.62 m/s when g is 10 m/s².
Earth's gravitational force causes downward acceleration.
ā Must-know
Further detail
Aristotle did not give the concept of acceleration but discussed speed in relation to weight.
A feather and a stone dropped together in an air-filled glass tube illustrate the comparison of falling objects described in the gravity discussion.
Aristotle linked falling speed to weight, not acceleration.
| Quantity | Nature | Direction | Possible values |
|---|---|---|---|
| Distance | Scalar | No direction | Positive |
| Displacement | Vector | Has direction | Positive, negative, or zero |
| Quantity | Definition | Nature | Formula |
|---|---|---|---|
| Speed | Rate of change of distance | Scalar | |
| Velocity | Rate of change of displacement | Vector |
Test your knowledge on Motion and Equations of Motion with 27 multiple-choice questions with detailed corrections.
1. What characterizes an object that is at rest?
2. A cyclist changes position relative to nearby trees while traveling along a road. What state is the cyclist in?
Memorize the key concepts of Motion and Equations of Motion with 54 interactive flashcards.
What is the state called when an object does not change position relative to surroundings?
Rest
What is the state called when an object changes position relative to surroundings?
Motion
What describes motion of an object relative to another object or observer?
Relative motion
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