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Science (English Medium) Class 11 - CBSE Question Bank Solutions

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A situation may be described by using different sets coordinate axes having different orientation. Which the following do not depended on the orientation of the axis?
(a) the value of a scalar
(b) component of a vector
(c) a vector
(d) the magnitude of a vector.

[1] Physical World
Chapter: [1] Physical World
Concept: undefined >> undefined

Let \[\vec{C} = \vec{A} + \vec{B}\]

[1] Physical World
Chapter: [1] Physical World
Concept: undefined >> undefined

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Let the angle between two nonzero vectors \[\vec{A}\] and \[\vec{B}\] be 120° and its resultant be \[\vec{C}\].

[1] Physical World
Chapter: [1] Physical World
Concept: undefined >> undefined

The x-component of the resultant of several vectors
(a) is equal to the sum of the x-components of the vectors of the vectors
(b) may be smaller than the sum of the magnitudes of the vectors
(c) may be greater than the sum of the magnitudes of the vectors
(d) may be equal to the sum of the magnitudes of the vectors.

[1] Physical World
Chapter: [1] Physical World
Concept: undefined >> undefined

The magnitude of the vector product of two vectors \[\left| \vec{A} \right|\] and \[\left| \vec{B} \right|\] may be

(a) greater than AB
(b) equal to AB
(c) less than AB
(d) equal to zero.

[1] Physical World
Chapter: [1] Physical World
Concept: undefined >> undefined

A vector \[\vec{A}\] makes an angle of 20° and \[\vec{B}\] makes an angle of 110° with the X-axis. The magnitudes of these vectors are 3 m and 4 m respectively. Find the resultant.

[1] Physical World
Chapter: [1] Physical World
Concept: undefined >> undefined

Let \[\vec{A} \text { and } \vec{B}\] be the two vectors of magnitude 10 unit each. If they are inclined to the X-axis at angle 30° and 60° respectively, find the resultant.

[1] Physical World
Chapter: [1] Physical World
Concept: undefined >> undefined

Add vectors \[\vec{A} , \vec{B} \text { and } \vec{C}\]  each having magnitude of 100 unit and inclined to the X-axis at angles 45°, 135° and 315° respectively.

[1] Physical World
Chapter: [1] Physical World
Concept: undefined >> undefined

Let \[\vec{a} = 4 \vec{i} + 3 \vec{j} \text { and } \vec{b} = 3 \vec{i} + 4 \vec{j}\]. Find the magnitudes of (a)  \[\vec{a}\] ,  (b)  \[\vec{b}\] ,(c) \[\vec{a} + \vec{b} \text { and }\] (d) \[\vec{a} - \vec{b}\].

[1] Physical World
Chapter: [1] Physical World
Concept: undefined >> undefined

Refer to figure (2 − E1). Find (a) the magnitude, (b) x and y component and (c) the angle with the X-axis of the resultant of \[\overrightarrow{OA}, \overrightarrow{BC} \text { and } \overrightarrow{DE}\].

[1] Physical World
Chapter: [1] Physical World
Concept: undefined >> undefined

Two vectors have magnitudes 2 unit and 4 unit respectively. What should be the angle between them if the magnitude of the resultant is (a) 1 unit, (b) 5 unit and (c) 7 unit.

[1] Physical World
Chapter: [1] Physical World
Concept: undefined >> undefined

A spy report about a suspected car reads as follows. "The car moved 2.00 km towards east, made a perpendicular left turn, ran for 500 m, made a perpendicular right turn, ran for 4.00 km and stopped". Find the displacement of the car.

[1] Physical World
Chapter: [1] Physical World
Concept: undefined >> undefined

A carrom board (4 ft × 4 ft square) has the queen at the centre. The queen, hit by the striker moves to the from edge, rebounds and goes in the hole behind the striking line. Find the magnitude of displacement of the queen (a) from the centre to the front edge, (b) from the front edge to the hole and (c) from the centre to the hole.

[1] Physical World
Chapter: [1] Physical World
Concept: undefined >> undefined

A mosquito net over a 7 ft × 4 ft bed is 3 ft high. The net has a hole at one corner of the bed through which a mosquito enters the net. It flies and sits at the diagonally opposite upper corner of the net. (a) Find the magnitude of the displacement of the mosquito. (b) Taking the hole as the origin, the length of the bed as the X-axis, it width as the Y axis, and vertically up as the Z-axis, write the components of the displacement vector.

[1] Physical World
Chapter: [1] Physical World
Concept: undefined >> undefined

Suppose \[\vec{a}\] is a vector of magnitude 4.5 units due north. What is the vector (a) \[3 \vec{a}\], (b) \[- 4 \vec{a}\] ?

[1] Physical World
Chapter: [1] Physical World
Concept: undefined >> undefined

Two vectors have magnitudes 2 m and 3m. The angle between them is 60°. Find (a) the scalar product of the two vectors, (b) the magnitude of their vector product.

[1] Physical World
Chapter: [1] Physical World
Concept: undefined >> undefined

Let A1 A2 A3 A4 A5 A6 A1 be a regular hexagon. Write the x-components of the vectors represented by the six sides taken in order. Use the fact the resultant of these six vectors is zero, to prove that
cos 0 + cos π/3 + cos 2π/3 + cos 3π/3 + cos 4π/3 + cos 5π/3 = 0.
Use the known cosine values to verify the result.

[1] Physical World
Chapter: [1] Physical World
Concept: undefined >> undefined

Let \[\vec{a} = 2 \vec{i} + 3 \vec{j} + 4 \vec{k} \text { and } \vec{b} = 3 \vec{i} + 4 \vec{j} + 5 \vec{k}\] Find the angle between them.

[1] Physical World
Chapter: [1] Physical World
Concept: undefined >> undefined

Prove that \[\vec{A} . \left( \vec{A} \times \vec{B} \right) = 0\].

[1] Physical World
Chapter: [1] Physical World
Concept: undefined >> undefined

If  \[\vec{A} = 2 \vec{i} + 3 \vec{j} + 4 \vec{k} \text { and } \vec{B} = 4 \vec{i} + 3 \vec{j} + 2 \vec{k}\] find \[\vec{A} \times \vec{B}\].

[1] Physical World
Chapter: [1] Physical World
Concept: undefined >> undefined
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