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Equations of Uniformly accelerated motion and their derivatives (lowersixth science physics)

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About this activity

In this game, players will determine whether the provided nouns are correctly defined as mass, displacement, or distance. Answer ✅ for correct definitions and ❌ for incorrect ones.

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Equations of Uniformly accelerated motion and their derivatives (lowersixth science physics)
 

Equations of Uniformly accelerated motion and their derivatives (lowersixth science physics)Online version

In this game, players will determine whether the provided nouns are correctly defined as mass, displacement, or distance. Answer ✅ for correct definitions and ❌ for incorrect ones.

by YAKILI LMS
1

Displacement refers to the change in position of an object.

2

Distance is only measured in kilometers.

3

Mass can be measured in liters.

4

Displacement can be represented as a vector quantity.

5

Displacement is measured in grams.

6

Displacement is the same as distance traveled.

7

Mass is a measure of the amount of matter in an object.

8

Displacement can be positive or negative depending on direction.

9

Mass is typically measured in kilograms.

10

Mass does not affect motion.

11

Distance is a vector quantity.

12

Distance is the total path traveled by an object.

13

Mass is the same as weight.

14

Distance can be negative.

15

Mass changes with altitude.

16

Mass affects the gravitational force between objects.

17

Displacement is always equal to the distance.

18

Distance can be measured in meters.

19

Distance is a scalar quantity.

20

Mass does not change regardless of location.

21

The average speed of an object is calculated by dividing the total distance traveled by the total time taken.

22

An object in free fall has constant speed.

23

Speed is a vector quantity that includes direction.

24

Acceleration is the rate of change of velocity over time.

25

An object moving in a straight line at a constant speed has zero acceleration.

26

A car traveling at 60 km/h north has a velocity of 60 km/h north.

27

Acceleration is always positive.

28

The unit of speed in the International System of Units (SI) is meters per second (m/s).

29

Velocity cannot change if speed is constant.

30

Instantaneous velocity is the velocity of an object at a specific moment in time.

31

Velocity can be negative if an object is moving in the opposite direction.

32

Velocity is the distance covered in a specific time without direction.

33

Speed is a scalar quantity that refers to how fast an object is moving.

34

An object can have a constant speed and still be accelerating.

35

Velocity is a vector quantity that includes both speed and direction.

36

Acceleration is the same as speed.

37

Velocity is the total distance traveled by an object.

38

The unit of acceleration is kilometers per hour (km/h).

39

Speed is measured in joules.

40

Acceleration can occur when an object speeds up, slows down, or changes direction.

41

Relative velocity refers to the velocity of one object as observed from another object.

42

The total momentum of a system can change if no external forces act on it.

43

Relative velocity only applies when objects are moving in the same direction.

44

Average velocity is always greater than or equal to average speed.

45

The formula for linear momentum is p = mv, where p is momentum, m is mass, and v is velocity.

46

Relative velocity can be calculated by subtracting the velocities of two objects.

47

Average velocity can be positive, negative, or zero depending on the direction of motion.

48

In a closed system, the total linear momentum before an event is equal to the total linear momentum after the event.

49

Linear momentum can be negative but not zero.

50

Linear momentum is the product of an object's mass and its velocity.

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