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Textbook Solution: Measurement and Motion | Living Science (Ratna Sagar) for Class 6 PDF Download

Oral Questions For Formative Assessment (P-123)

Q1:
Ans: Speed of a car, distance from Earth to Sun

Q2:
Ans: No.

Q3:
Ans: Metre, kilogram, second

Q4:
Ans: a. 10 kg
b. 5 cm
c. 1 kg
d. 20 cm

Oral Questions For Formative Assessment (P-126)

Q1:
Ans: Yes. A person inside a moving car can be in motion with respect to a building on the roadside but will be at rest with respect to the car itself.

Q2:
Ans: Both A and B because both rectilinear and curvilinear are kinds of translatory motion.

Q3:
Ans: Because the outer portions of the top move through a greater distance than the inner portions. This type of motion is called rotational motion.

Q4:
Ans: The revolution of the Earth is a translatory motion and the rotation of the Earth is a rotational motion. Another example is a bicycle wheel having both rotational motion and translatory motion while moving.

For Formative and Summative Assessment (P-127)

Part - A

Q1:
Ans: b

Q2:
Ans: c

Q3:
Ans: c

Q4:
Ans: b

Q5:
Ans: c

Q6:
Ans: b

Q7:
Ans: c

Q8:
Ans: b

Q9:
Ans: d

Q10:
Ans: a

Part - B

Q1:
Ans: physical

Q2:
Ans: true

Q3:
Ans: true

Q4:
Ans: 1960

Q5:
Ans: true

Q6:
Ans: false

Q7:
Ans: translatory motion

Q8:
Ans: rotational motion

Q9:
Ans: oscillatory motion

Q10:
Ans: fast periodic motion

Q11:
Ans: wheels of a car

Part - C

Q1:
Ans: Standard units are used in measurement because they remain the same everywhere and do not change. This makes measurement easier.

Q2:
Ans: CGS system (centimetre, gram, second) SI system (metre, kilogram, second)

Q3:
Ans: To make accurate measurements we must use appropriate measuring instruments and also know how to use these instruments properly.

Q4:
Ans: An object is said to be in motion if its position changes with time, in relation to a stationary object in its surroundings.

Q5:
Ans: The invention of the wheel and the invention of the steam engine brought about revolutions in transport.

Q6:
Ans: Rotational and translatory motion.

Part - D

Q1:
Ans: Because calculations with very large or very small numbers become very difficult and, therefore, impractical.

Q2:
Ans: (i) Keep the ruler exactly along the length to be measured.
(ii) Avoid using worn-out portions of the instrument.
(iii) Keep the eye vertically above the point where the measurement is to be taken.

Q3:
Ans: Two methods we can use to measure the length of a curved line are: by using a thread, by using a divider.

Q4:
Ans: a. Accurate measurement is necessary while conducting an experiment in the laboratory.
b. Only estimation is required while cooking in the kitchen. Because in an experiment, a slight mistake can lead to the wrong result but in cooking a curry, a minor error in measurement will make no difference to its taste.

Q5:
Ans: Translatory motion is of two kinds:
(i) Linear or rectilinear motion - when the object moves in a straight line. For example, a car running on a straight road, a bullet fired from a gun.
(ii) Circular or curvilinear motion - when the object moves along a curved path. For example, a cyclist going along a circular track.

Q6:
Ans: If the same motion occurs again and again, it is said to be repetitive motion. Repetitive motion that repeats itself at regular intervals of time is called periodic motion. For example, the pendulum of a clock and the revolution of the Earth around the Sun.

HOTS Questions

Q1:
Ans: No, we do not measure everything accurately in our daily lives. We estimate a number of things, for example, how much sugar to put in a cup of tea, or how long to boil an egg.

Q2:
Ans: Rotational and translatory motion

Q3:
Ans: Two kinds of rotational motion with different axes of rotation.

Q4:
Ans: Rotational and translatory motion.

Q5:
Ans: Yes, with respect to all other heavenly bodies in the universe except the Earth.

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FAQs on Textbook Solution: Measurement and Motion - Living Science (Ratna Sagar) for Class 6

1. What are the different types of measurements used in the field of physics?
Ans. In physics, the two main types of measurements are scalar measurements, which have only magnitude, and vector measurements, which have both magnitude and direction.
2. How is speed different from velocity in terms of measurement and motion?
Ans. Speed is a scalar quantity that only measures how fast an object is moving, while velocity is a vector quantity that measures both the speed and direction of an object's motion.
3. What is the significance of using units of measurement in physics?
Ans. Units of measurement are essential in physics as they provide a standard reference point for comparing and communicating measurements accurately. Without units, measurements would be meaningless and unreliable.
4. How can motion be described and analyzed using measurements in physics?
Ans. Motion in physics can be described and analyzed using measurements of distance, time, speed, velocity, and acceleration. By quantifying these measurements, physicists can predict and understand the behavior of moving objects.
5. Can you explain the difference between distance and displacement in terms of measurement and motion?
Ans. Distance is a scalar quantity that measures the total length traveled by an object, while displacement is a vector quantity that measures the straight-line distance and direction between the initial and final positions of the object.
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