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Arts (English Medium) Class 12 - CBSE Question Bank Solutions

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Find a vector \[\vec{r}\] of magnitude \[3\sqrt{2}\] units which makes an angle of \[\frac{\pi}{4}\] and \[\frac{\pi}{4}\] with y and z-axes respectively. 

[10] Vectors
Chapter: [10] Vectors
Concept: undefined >> undefined

A vector \[\vec{r}\] is inclined at equal angles to the three axes. If the magnitude of \[\vec{r}\] is \[2\sqrt{3}\], find \[\vec{r}\].

[10] Vectors
Chapter: [10] Vectors
Concept: undefined >> undefined

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Define "zero vector".

[10] Vectors
Chapter: [10] Vectors
Concept: undefined >> undefined

Evaluate the following integrals as limit of sums:

\[\int_1^3 \left( 3 x^2 + 1 \right)dx\]
[7] Integrals
Chapter: [7] Integrals
Concept: undefined >> undefined

Write a vector of magnitude 12 units which makes 45° angle with X-axis, 60° angle with Y-axis and an obtuse angle with Z-axis.

[10] Vectors
Chapter: [10] Vectors
Concept: undefined >> undefined

Write the length (magnitude) of a vector whose projections on the coordinate axes are 12, 3 and 4 units.

[10] Vectors
Chapter: [10] Vectors
Concept: undefined >> undefined

Find a vector in the direction of \[\overrightarrow{a} = 2 \hat{i} - \hat{j} + 2 \hat{k} ,\] which has magnitude of 6 units.

[10] Vectors
Chapter: [10] Vectors
Concept: undefined >> undefined

Write two different vectors having same magnitude.

[10] Vectors
Chapter: [10] Vectors
Concept: undefined >> undefined

Write a vector in the direction of vector \[5 \hat{i} - \hat{j} + 2 \hat{k}\] which has magnitude of 8 unit.

[10] Vectors
Chapter: [10] Vectors
Concept: undefined >> undefined

Find a vector \[\overrightarrow{a}\] of magnitude \[5\sqrt{2}\], making an angle of \[\frac{\pi}{4}\] with x-axis, \[\frac{\pi}{2}\] with y-axis and an acute angle θ with z-axis. 

[10] Vectors
Chapter: [10] Vectors
Concept: undefined >> undefined

Find a vector in the direction of vector \[2 \hat{i} - 3 \hat{j} + 6 \hat{k}\] which has magnitude 21 units.

[10] Vectors
Chapter: [10] Vectors
Concept: undefined >> undefined

If in a ∆ABC, A = (0, 0), B = (3, 3 \[\sqrt{3}\]), C = (−3\[\sqrt{3}\], 3), then the vector of magnitude 2 \[\sqrt{2}\] units directed along AO, where O is the circumcentre of ∆ABC is 

 

[10] Vectors
Chapter: [10] Vectors
Concept: undefined >> undefined

\[\int\frac{\sqrt{\tan x}}{\sin x \cos x} dx\]

[7] Integrals
Chapter: [7] Integrals
Concept: undefined >> undefined

Evaluate `int_1^4 ( 1+ x +e^(2x)) dx` as limit of sums.

[7] Integrals
Chapter: [7] Integrals
Concept: undefined >> undefined

Evaluate `int_(-1)^2 (7x - 5)"d"x` as a limit of sums

[7] Integrals
Chapter: [7] Integrals
Concept: undefined >> undefined

If f and g are continuous functions in [0, 1] satisfying f(x) = f(a – x) and g(x) + g(a – x) = a, then `int_0^"a" "f"(x) * "g"(x)"d"x` is equal to ______.

[7] Integrals
Chapter: [7] Integrals
Concept: undefined >> undefined

Evaluate the following as limit of sum:

`int _0^2 (x^2 + 3) "d"x`

[7] Integrals
Chapter: [7] Integrals
Concept: undefined >> undefined

Evaluate the following as limit of sum:

`int_0^2 "e"^x "d"x`

[7] Integrals
Chapter: [7] Integrals
Concept: undefined >> undefined

Evaluate the following:

`int_0^2 ("d"x)/("e"^x + "e"^-x)`

[7] Integrals
Chapter: [7] Integrals
Concept: undefined >> undefined

Evaluate the following:

`int_0^(pi/2) (tan x)/(1 + "m"^2 tan^2x) "d"x`

[7] Integrals
Chapter: [7] Integrals
Concept: undefined >> undefined
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