1
BITSAT 2020
MCQ (Single Correct Answer)
+3
-1

The value of the definite integral $$\int\limits_0^{\pi /2} {{{dx} \over {\tan x + \cot x + \cos ec\,x + \sec x}}} $$

A
$$1 - {\pi \over 4}$$
B
$$1 + {\pi \over 4}$$
C
$$\pi + {1 \over 4}$$
D
None of these
2
BITSAT 2020
MCQ (Single Correct Answer)
+3
-1

If a and b are two vectors such that | a | = 1, | b | = 4 a . b = 2. If c = (2a $$\times$$ b) $$-$$ 3b, then angle between b and c

A
$${\pi \over 6}$$
B
$${\pi \over 3}$$
C
$${2\pi \over 3}$$
D
$${5\pi \over 6}$$
3
BITSAT 2020
MCQ (Single Correct Answer)
+3
-1

Let x1 and x2 be the real roots of the equation $${x^2} - (k - 2)x + ({k^2} + 3k + 5) = 0$$, then maximum value of $$x_1^2 + x_2^2$$ is

A
19
B
22
C
18
D
17
4
BITSAT 2020
MCQ (Single Correct Answer)
+3
-1

Circle centered at origin and having radius $$\pi$$ units is divided by the curve y = sin x in two parts. Then area of upper parts equals to

A
$${{{\pi ^2}} \over 2}$$
B
$${{{\pi ^3}} \over 4}$$
C
$${{{\pi ^3}} \over 2}$$
D
$${{{\pi ^3}} \over 8}$$
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