1
IIT-JEE 1999
MCQ (Single Correct Answer)
+2
-0.5
Let $$a=2i+j+k, b=i+2j-k$$ and a unit vector $$c$$ be coplanar. If $$c$$ is perpendicular to $$a,$$ then $$c =$$
A
$${1 \over {\sqrt 2 }}\left( { - j + k} \right)$$
B
$${1 \over {\sqrt 3 }}\left( {- i - j - k} \right)$$
C
$${1 \over {\sqrt 5 }}\left( {i - 2j} \right)$$
D
$${1 \over {\sqrt 3 }}\left( {i - j - k} \right)$$
2
IIT-JEE 1999
MCQ (More than One Correct Answer)
+3
-0.75
Let $$a$$ and $$b$$ two non-collinear unit vectors. If $$u = a - \left( {a\,.\,b} \right)\,b$$ and $$v = a \times b,$$ then $$\left| v \right|$$ is
A
$$\left| u \right|$$
B
$$\,\left| u \right| + \left| {u\,.\,a} \right|$$
C
$$\,\left| u \right| + \left| {u\,.\,b} \right|$$
D
$$\left| u \right| + u.\left( {a + b} \right)$$
3
IIT-JEE 1999
Subjective
+10
-0
Let $$u$$ and $$v$$ be units vectors. If $$w$$ is a vector such that $$w + \left( {w \times u} \right) = v,$$ then prove that $$\left| {\left( {u \times v} \right) \cdot w} \right| \le 1/2$$ and that the equality holds if and only if $$u$$ is perpendicular to $$v .$$
4
IIT-JEE 1999
MCQ (Single Correct Answer)
+2
-0.5
$$\int\limits_{\pi /4}^{3\pi /4} {{{dx} \over {1 + \cos x}}} $$ is equal to
A
$$2$$
B
$$-2$$
C
$$1/2$$
D
$$-1/2$$
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