Class 8 Science Chapter 5 Exploring Forces (New Course)

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Class 8 Science Chapter 5 Exploring Forces (New Course)

This quiz on Chapter 5: Exploring Forces for Class 8 Science assesses students’ understanding of the fundamental concepts of force, including different types such as gravitational, frictional, magnetic, and applied forces. It evaluates their knowledge of how forces affect the motion and shape of objects, the difference between balanced and unbalanced forces, and the application of the laws of motion in everyday life. The quiz encourages students to connect theoretical concepts with real-world examples, analyze situations scientifically, and demonstrate their reasoning and problem-solving skills related to forces.

1 / 100

Topic/Sub Topic: What Is a Force?

1. Which of the following is NOT an effect of applying force on an object?

2 / 100

Topic/Sub Topic: What Is a Force?

2. When an object is at rest, what does it imply about the forces acting on it?

3 / 100

Topic/Sub Topic: What Is a Force?

3. Which of the following best describes a force in science?

4 / 100

Topic/Sub Topic: What Is a Force?

4. A rubber band is stretched by applying equal and opposite forces of $5 \, \text{N}$ at both ends. What will happen if one of the forces is increased to $10 \, \text{N}$ while the other remains at $5 \, \text{N}$?

5 / 100

Topic/Sub Topic: Types of force: Push and pull.

5. (A) A force always changes the speed of an object.
(R) Force is a push or pull applied on an object.

6 / 100

Topic/Sub Topic: Types of force: Push and pull.

6. Which of the following actions involves a pull force?

7 / 100

Topic/Sub Topic: Types of force: Push and pull.

7. Which of the following is NOT an effect of applying force on an object?

8 / 100

Topic/Sub Topic: Types of force: Push and pull.

8. A cricket ball moving at 10 m/s is hit by a bat with a force that changes its direction by 180 degrees without altering its speed. Which statement best describes the effect of this force?

9 / 100

Topic/Sub Topic: Examples of force in daily life: Moving a box, pedaling a bicycle.

9. What is the SI unit of force?

10 / 100

Topic/Sub Topic: Examples of force in daily life: Moving a box, pedaling a bicycle.

10. During weightlifting, an athlete lifts a barbell above their head and holds it stationary. Which statement correctly describes the forces involved?

11 / 100

Topic/Sub Topic: Examples of force in daily life: Moving a box, pedaling a bicycle.

11. What is the scientific definition of force?

12 / 100

Topic/Sub Topic: Examples of force in daily life: Moving a box, pedaling a bicycle.

12. Which of the following activities involves muscular force?

13 / 100

Topic/Sub Topic: What Can a Force Do to the Bodies on Which It Is Applied?

13. (A) When a cyclist stops pedaling on a smooth downhill slope, the bicycle continues to move with increasing speed.
(R) The gravitational force acts in the direction of motion, causing the bicycle to accelerate.

14 / 100

Topic/Sub Topic: What Can a Force Do to the Bodies on Which It Is Applied?

14. How does applying force affect the direction of a moving object?

15 / 100

Topic/Sub Topic: What Can a Force Do to the Bodies on Which It Is Applied?

15. Pressing an inflated balloon with your hands causes it to change shape. What does this demonstrate about the effect of force?

16 / 100

Topic/Sub Topic: What Can a Force Do to the Bodies on Which It Is Applied?

16. A metal rod is subjected to two equal and opposite forces along its length. What is the most likely effect on the rod?

17 / 100

Topic/Sub Topic: Effect of force: Changing speed, direction, or shape.

17. When a fielder stops a moving cricket ball, what effect does the force have?

18 / 100

Topic/Sub Topic: Effect of force: Changing speed, direction, or shape.

18. A ball is rolling eastward at 5 m/s when a force acts on it for 2 seconds, changing its velocity to 3 m/s westward. What is the magnitude and direction of the average acceleration experienced by the ball?

19 / 100

Topic/Sub Topic: Effect of force: Changing speed, direction, or shape.

19. A rubber band is stretched by applying a force. Which of the following best describes the effect(s) of this force?

20 / 100

Topic/Sub Topic: Effect of force: Changing speed, direction, or shape.

20. A car moving north at 20 m/s turns left and slows down to 10 m/s in 5 seconds. What is the net effect of the force applied during this time?

21 / 100

Topic/Sub Topic: Examples: Stopping a bicycle, changing direction of a moving ball.

21. A cyclist moving at constant speed applies brakes to stop the bicycle. Which statement correctly explains the role of the braking force?

22 / 100

Topic/Sub Topic: Examples: Stopping a bicycle, changing direction of a moving ball.

22. A moving tennis ball is hit by a racket. What is the primary effect of this action?

23 / 100

Topic/Sub Topic: Examples: Stopping a bicycle, changing direction of a moving ball.

23. A football player kicks a stationary ball northwards with a force of 50 N. At the same time, another player applies a westward force of 30 N on the same ball. What will be the approximate net effect on the ball's motion?

24 / 100

Topic/Sub Topic: Examples: Stopping a bicycle, changing direction of a moving ball.

24. Which of the following actions demonstrates a change in shape due to the application of force?

25 / 100

Topic/Sub Topic: Are Forces an Interaction Between Two or More Objects?

25. A boy pushes a stationary box with his hand. Which of the following statements is true about the forces involved in this scenario?

26 / 100

Topic/Sub Topic: Are Forces an Interaction Between Two or More Objects?

26. Which of the following is an example of a non-contact force?

27 / 100

Topic/Sub Topic: Are Forces an Interaction Between Two or More Objects?

27. Which of the following correctly represents the SI unit of force along with its symbol?

28 / 100

Topic/Sub Topic: Are Forces an Interaction Between Two or More Objects?

28. What must happen for a force to exist between two objects?

29 / 100

Topic/Sub Topic: Balanced and unbalanced forces.

29. Which scenario describes a force resulting from interaction between two objects?

30 / 100

Topic/Sub Topic: Balanced and unbalanced forces.

30. An object of mass 2 kg experiences an unbalanced force of 6 N to the right and 2 N to the left. What is the magnitude of the acceleration produced in the object?

31 / 100

Topic/Sub Topic: Balanced and unbalanced forces.

31. When an object is at rest, what can we infer about the forces acting on it?

32 / 100

Topic/Sub Topic: Balanced and unbalanced forces.

32. A car is moving with constant speed along a straight road. What can you conclude about the forces acting on the car?

33 / 100

Topic/Sub Topic: SI unit of force: Newton (N).

33. (A) A force can change an object's speed, direction of motion, or shape only when interacting with another object.
(R) Forces result from the interaction between at least two objects.

34 / 100

Topic/Sub Topic: SI unit of force: Newton (N).

34. A car is moving at constant velocity on a straight road. Which statement best describes the forces acting on the car?

35 / 100

Topic/Sub Topic: SI unit of force: Newton (N).

35. An object weighs 50 N in air and 30 N when submerged in water. What is the buoyant force acting on the object?

36 / 100

Topic/Sub Topic: SI unit of force: Newton (N).

36. (A) The SI unit of force is newton (N).
(R) A force is an interaction between two objects involving a push or pull.

37 / 100

Topic/Sub Topic: Example: Hand pushing a table, both objects experiencing force.

37. A person pushes a wall but the wall does not move. What can be inferred about the forces acting on the wall and the person?

38 / 100

Topic/Sub Topic: Example: Hand pushing a table, both objects experiencing force.

38. (A) When you push a table with your hand, both the hand and the table experience a force.
(R) A force is always an interaction between two objects.

39 / 100

Topic/Sub Topic: Example: Hand pushing a table, both objects experiencing force.

39. What is the correct description of the SI unit of force and its nature based on interactions?

40 / 100

Topic/Sub Topic: Example: Hand pushing a table, both objects experiencing force.

40. When you push a table, how many objects are involved in this interaction?

41 / 100

Topic/Sub Topic: What Are the Different Types of Forces?

41. (A) The gravitational force between two objects is always attractive, whereas the electrostatic force can be either attractive or repulsive.
(R) Gravitational force depends on mass, while electrostatic force depends on charge.

42 / 100

Topic/Sub Topic: What Are the Different Types of Forces?

42. Which of the following is an example of a non-contact force?

43 / 100

Topic/Sub Topic: What Are the Different Types of Forces?

43. Which of the following is an example of a non-contact force?

44 / 100

Topic/Sub Topic: What Are the Different Types of Forces?

44. (A) Muscular force is an example of contact force.
(R) Muscular force occurs when muscles contract or stretch while performing physical activities.

45 / 100

Topic/Sub Topic: Contact Forces:

45. (A) Muscular force is a contact force because it requires physical interaction between objects.
(R) Muscular force results from the contraction and elongation of muscles during any activity.

46 / 100

Topic/Sub Topic: Contact Forces:

46. A ball is rolling on a smooth floor. What happens to the ball over time, and what force is primarily responsible for this?

47 / 100

Topic/Sub Topic: Contact Forces:

47. Which of the following forces requires physical contact between objects?

48 / 100

Topic/Sub Topic: Contact Forces:

48. How does friction change if the surface becomes rougher?

49 / 100

Topic/Sub Topic: Muscular force: Force caused by muscle action.

49. What is the primary characteristic of muscular force?

50 / 100

Topic/Sub Topic: Muscular force: Force caused by muscle action.

50. Which activity does NOT involve muscular force?

51 / 100

Topic/Sub Topic: Muscular force: Force caused by muscle action.

51. (A) Muscular force is a type of contact force.
(R) Muscular force requires direct physical contact between the object applying the force and the object experiencing it.

52 / 100

Topic/Sub Topic: Muscular force: Force caused by muscle action.

52. (A) Muscular force is essential for the digestion process in humans.
(R) Muscular contraction and elongation help push food through the alimentary canal during digestion.

53 / 100

Topic/Sub Topic: Friction: Force opposing motion between two surfaces.

53. A wooden block is pushed across a glass surface and a sandpaper surface with the same force. On which surface will the block travel a longer distance before stopping?

54 / 100

Topic/Sub Topic: Friction: Force opposing motion between two surfaces.

54. How does the roughness of a surface affect friction?

55 / 100

Topic/Sub Topic: Friction: Force opposing motion between two surfaces.

55. Which of the following factors does NOT affect the force of friction between two surfaces?

56 / 100

Topic/Sub Topic: Friction: Force opposing motion between two surfaces.

56. A box slides down an inclined plane with angle $\theta = 30^\circ$. The coefficient of kinetic friction between the box and the plane is 0.3. What is the acceleration of the box along the incline? (take $g = 10\, \text{m/s}^2$)

57 / 100

Topic/Sub Topic: Non-contact Forces:

57. A ball is thrown vertically upward with increasing force. What always happens regardless of how hard it is thrown?

58 / 100

Topic/Sub Topic: Non-contact Forces:

58. Which of the following is an example of a non-contact force?

59 / 100

Topic/Sub Topic: Non-contact Forces:

59. When comparing the behavior of a charged plastic ruler attracting paper pieces with that of a magnet attracting iron filings, which of the following represents the most significant difference in how these non-contact forces operate?

60 / 100

Topic/Sub Topic: Non-contact Forces:

60. What happens when two balloons rubbed with a woollen cloth are brought close to each other?

61 / 100

Topic/Sub Topic: Magnetic force: Attraction or repulsion between magnets.

61. (A) The second ring magnet floats above the first magnet when their like poles face each other due to the repulsive magnetic force.
(R) Like poles of magnets repel each other, and this repulsive force can balance the gravitational force acting on the second magnet.

62 / 100

Topic/Sub Topic: Magnetic force: Attraction or repulsion between magnets.

62. If you break a bar magnet into four equal pieces, how many North and South poles will be formed in total?

63 / 100

Topic/Sub Topic: Magnetic force: Attraction or repulsion between magnets.

63. What happens when two magnets are placed such that their like poles face each other?

64 / 100

Topic/Sub Topic: Magnetic force: Attraction or repulsion between magnets.

64. In an experiment with ring magnets, if you reverse the poles of both magnets so unlike poles face each other, what will happen?

65 / 100

Topic/Sub Topic: Electrostatic force: Force between charged objects.

65. Why does rubbing a plastic straw with polythene generate static electricity?

66 / 100

Topic/Sub Topic: Electrostatic force: Force between charged objects.

66. A positively charged glass rod attracts a small metallic ball suspended by an insulating thread. The metal ball could be:

67 / 100

Topic/Sub Topic: Electrostatic force: Force between charged objects.

67. Two identical conducting spheres, A and B, are initially uncharged. Sphere A is rubbed with silk and gains a positive charge. It is then brought close to Sphere B without touching. What happens when Sphere B makes contact with a grounded wire momentarily?

68 / 100

Topic/Sub Topic: Electrostatic force: Force between charged objects.

68. (A) When two balloons are rubbed with a woollen cloth and then hung apart, they repel each other.
(R) The balloons acquire similar charges due to rubbing, and like charges repel each other.

69 / 100

Topic/Sub Topic: Gravitational force: Force of attraction between Earth and objects.

69. A ball is thrown vertically upwards with an initial velocity of 20 m/s. How high will it go before it starts falling back down? (Take acceleration due to gravity as $10$ m/s$^2$.)

70 / 100

Topic/Sub Topic: Gravitational force: Force of attraction between Earth and objects.

70. An object of mass 5 kg is taken to the Moon. What will be its weight on the Moon? (Take acceleration due to gravity on the Moon as $1.6$ m/s$^2$.)

71 / 100

Topic/Sub Topic: Gravitational force: Force of attraction between Earth and objects.

71. (A) The weight of an object is the force with which the Earth attracts it.
(R) Weight is measured in newtons ($N$) because it is a force.

72 / 100

Topic/Sub Topic: Gravitational force: Force of attraction between Earth and objects.

72. What is the force with which the Earth attracts objects towards itself called?

73 / 100

Topic/Sub Topic: Weight and Its Measurement

73. (A) The weight of an object measured on the Moon would be less than its weight measured on Earth.
(R) The acceleration due to gravity on the Moon is approximately $1.6$ m/s², which is less than that on Earth ($10$ m/s²).

74 / 100

Topic/Sub Topic: Weight and Its Measurement

74. An object weighs $30 N$ on Jupiter. What would be its approximate weight on the Moon if Jupiter's gravity is $25.4 N$ for $1 kg$ and the Moon's gravity is $1.6 N$ for $1 kg$?

75 / 100

Topic/Sub Topic: Weight and Its Measurement

75. If an object weighs 49 N on Earth where $g = 9.8 m/s^2$, what would be its mass? What would be its weight on Mars where $g = 3.7 m/s^2$?

76 / 100

Topic/Sub Topic: Weight and Its Measurement

76. A spring balance shows a stretch corresponding to $7 N$ when an object is hung from it. What is the mass of the object assuming Earth's gravity ($10 N/kg$)?

77 / 100

Topic/Sub Topic: Weight measured in newtons (N).

77. A spring balance has the smallest division of 0.2 N and two bigger marks indicating a difference of 1 N. What weight will be shown if the pointer is at the third small division after the 3 N mark?

78 / 100

Topic/Sub Topic: Weight measured in newtons (N).

78. An object weighs 38 N when measured on Mars using a spring balance. What would be its mass if measured on Earth where gravitational acceleration is 10 m/s$^2$?

79 / 100

Topic/Sub Topic: Weight measured in newtons (N).

79. (A) The weight of an object on the Moon is less than its weight on Earth.
(R) The gravitational force on the Moon is weaker than that on Earth.

80 / 100

Topic/Sub Topic: Weight measured in newtons (N).

80. If an object weighs 25.4 N on Jupiter, what would be its mass in kilograms?

81 / 100

Topic/Sub Topic: Difference between weight and mass.

81. A box weighs 30 N on Earth. If the gravitational force on Jupiter is approximately 2.54 times that of Earth, what will be its weight on Jupiter?

82 / 100

Topic/Sub Topic: Difference between weight and mass.

82. (A) The weight of an object on the Moon is less than its weight on Earth because the gravitational pull of the Moon is weaker.
(R) The mass of an object remains constant regardless of its location in the universe.

83 / 100

Topic/Sub Topic: Difference between weight and mass.

83. An astronaut has a mass of 70 kg on Earth. What would be the weight of this astronaut on Mars, where the gravitational force is 3.8 N/kg?

84 / 100

Topic/Sub Topic: Difference between weight and mass.

84. A bag of rice weighs 5 kg on Earth. If taken to the Moon, what would be its mass and its weight respectively? (Given: Gravitational force on Moon is 1.6 N/kg)

85 / 100

Topic/Sub Topic: Measurement of weight using a spring balance.

85. (A) The weight measured by a spring balance on Earth will be different from its reading on the Moon.
(R) Weight is directly proportional to the gravitational acceleration of the celestial body.

86 / 100

Topic/Sub Topic: Measurement of weight using a spring balance.

86. When measuring a partially filled water bottle's weight using a spring balance, the pointer stops between 4.6 N and 4.8 N. If there are 5 divisions between these values, what is the most precise reading you can record?

87 / 100

Topic/Sub Topic: Measurement of weight using a spring balance.

87. If an object weighs 38 N on Mars, what would be its approximate mass in kilograms? (Given: Gravitational acceleration on Mars = 3.8 m/s$^2$)

88 / 100

Topic/Sub Topic: Measurement of weight using a spring balance.

88. (A) The weight of a 1 kg object measured using a spring balance on Mars would be approximately 3.8 N.
(R) A spring balance measures the gravitational force acting on an object, and gravitational acceleration on Mars is about 3.8 m/s$^2$.

89 / 100

Topic/Sub Topic: Floating and Sinking

89. A metal block weighs 50 N in air and 30 N when fully submerged in water. What is the buoyant force acting on the block when it is half-submerged in a liquid with density twice that of water?

90 / 100

Topic/Sub Topic: Floating and Sinking

90. (A) A plastic bottle filled with sand sinks in water.
(R) The weight of the displaced water is less than the weight of the bottle.

91 / 100

Topic/Sub Topic: Floating and Sinking

91. Three objects of the same size but different weights ($w_1$, $w_2$, $w_3$) are fully submerged in water. Object 1 floats, object 2 remains suspended, and object 3 sinks. What is the correct order of their weights?

92 / 100

Topic/Sub Topic: Floating and Sinking

92. A plastic bottle is submerged in water and then released. It bounces back to the surface. What can be concluded about the forces acting on the bottle?

93 / 100

Topic/Sub Topic: Upthrust or buoyant force: Upward force exerted by a liquid on an object.

93. What is the direction of the buoyant force acting on an object submerged in a liquid?

94 / 100

Topic/Sub Topic: Upthrust or buoyant force: Upward force exerted by a liquid on an object.

94. A ship made of steel floats in seawater because its average density compared to seawater is:

95 / 100

Topic/Sub Topic: Upthrust or buoyant force: Upward force exerted by a liquid on an object.

95. An object weighs $50 \, \text{N}$ in air and $30 \, \text{N}$ when fully immersed in water. What is the buoyant force acting on the object?

96 / 100

Topic/Sub Topic: Upthrust or buoyant force: Upward force exerted by a liquid on an object.

96. (A) A wooden block floats in water because the buoyant force acting on it is equal to its weight.
(R) According to Archimedes' Principle, the buoyant force equals the weight of the liquid displaced by the object.

97 / 100

Topic/Sub Topic: Archimedes' principle: Objects submerged in a fluid experience an upward force equal to the weight of the fluid displaced.

97. A hollow spherical shell made of steel (density 7800 kg/m$^3$) has an outer radius of 5 cm and inner radius of 4 cm. When placed in mercury (density 13600 kg/m$^3$), what happens to the sphere?

98 / 100

Topic/Sub Topic: Archimedes' principle: Objects submerged in a fluid experience an upward force equal to the weight of the fluid displaced.

98. An object weighs 500 N in air and displaces 400 N of water when fully submerged. Will the object float or sink?

99 / 100

Topic/Sub Topic: Archimedes' principle: Objects submerged in a fluid experience an upward force equal to the weight of the fluid displaced.

99. Why does pumice stone float on water?

100 / 100

Topic/Sub Topic: Archimedes' principle: Objects submerged in a fluid experience an upward force equal to the weight of the fluid displaced.

100. A cylindrical container has water $\rho = 1000\,\mathrm{kg/m^3}$ up to height H. A uniform rod of length L (>H), density 500 kg/m$^3$, and cross-sectional area A is hinged at the bottom and held at angle θ from vertical. When released, what is the net torque acting on the rod about the hinge just after release? (Use g = 10 m/s$^2$)

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