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Question 22 Marks
Find the area of that parallelogram whose diagonals are denoted by vectors $2 \hat{i}-\hat{j}+5 \hat{k}$ and $3 \hat{i}+\hat{j}+2 \hat{k}$.
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Question 32 Marks
If $A=[1 \ 2 \ 3], B=\left[\begin{array}{l}3 \\ 2 \\ 1\end{array}\right]$ then find $AB$ and $BA$.
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Question 52 Marks
If $A$ and $B$ are independent events show that the probability of happening at least one of $A$ and $B$ will be $1-P\left(A^{\prime}\right) P\left(B^{\prime}\right)$
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Question 62 Marks
Find that minimum value of a for which the function $f(x)=x^2+a x+1$ is increasing in interval $(1,2)$.
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Question 112 Marks
Show that the points $2 \hat{i},-\hat{i}-4 \hat{j},-i+4 \hat{j}$ represent an isosceles triangle.
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Question 152 Marks
If $\vec{a}=2 \hat{i}+2 \hat{j}+3 \hat{k}, \vec{b}=-\hat{i}+2 \hat{j}+\hat{k}$ and $\vec{c}=3 \hat{i}+\hat{j}$ are such that $\vec{a}+\lambda \vec{b}$ is perpendicular on vector $\vec{c}$, then find the value of $\lambda$.
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Question 162 Marks
Find the value $k$, so that the given function is continuous at $x=5$
$
f(x)=\left\{\begin{array}{ccc}
k x+1 & \text { if } & x \leq 5 \\
3 x-5 & \text { if } & x>5
\end{array}\right.
$
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Question 192 Marks
The probability distribution of a random variable $\mathrm{X}$ is following, where $\mathrm{k}$ is any number $\mathrm{P}(X)=\left\{\begin{array}{l}k \text { if } X=0 \\ 2 k \text { if } X=1 \\ 3 k \text { if } X=2 \\ 0 \quad \text { otherwise }\end{array}\right.$
$(a)$ Find the value of $\mathrm{k}$
$(b)$ Find the value of $\mathrm{P}(\mathrm{X}<2), \mathrm{P}(\mathrm{X} \leq 2), \mathrm{P}(\mathrm{X} \geq 2)$
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Question 202 Marks
If the area of a triangle is 18 sq units and vertices are $(x, 7) ;(2,2)$ and $(10,8)$, then find the value of $x$.
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Question 212 Marks
If $\mathrm{A}=\left[\begin{array}{cc}\cos \alpha & -\sin \alpha \\ \sin \alpha & \cos \alpha\end{array}\right]$ and $\mathrm{A}+\mathrm{A}^{\prime}=\mathrm{I}$, then find the value of $\alpha$
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Question 222 Marks
If $f, g: R \rightarrow R$ is defined such that $f(x)=x^2+1, g(x)=2 x-3$, then find the value of $fog(x)$, gof $(x)$ and $gog (3)$.
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Question 242 Marks
Find that point on curve $y=x^2-2 x+3$, the tangent drawn on that is parallel to line $2 \mathrm{x}-\mathrm{y}+9=0$.
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Question 272 Marks
If $\mathrm{A}=\left[\begin{array}{lll}2 & -4 & 3\end{array}\right]$ and $\mathrm{B}=\left[\begin{array}{r}2 \\ -4 \\ 8\end{array}\right]$ then find $(\mathrm{AB})^{\mathrm{T}}$.
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Question 282 Marks
If $P ( A )=0.6, P ( B )=0.3, P ( A \cap B )=0.2$, then find the value of $P$ (neither $A$ nor $B$ ).
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Question 292 Marks
If $\left[\begin{array}{lll}x & 4 & 1\end{array}\right]\left[\begin{array}{ccc}2 & 0 & 1 \\ 1 & 0 & 2 \\ 0 & 2 & -4\end{array}\right]\left[\begin{array}{c}-2 \\ 4 \\ 1\end{array}\right]=0$ then find the value of $x$.
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Question 302 Marks
If a relation $R$ is defined in a set $A$, then show that if $R$ is symmetric then $R=R^{-1}$
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Question 342 Marks
Prove that the function $y=\sin ^p \theta \cdot \cos ^q \theta$ has maxima at $\theta=\tan ^{-1}(\sqrt{p / q})$.
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Question 352 Marks
Find the equation of tangent to the curve $y=x^2-2 x+3$, which is parallel to the line $2 x + y +9=0$.
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Question 362 Marks
If the function $f(x)=\left\{\begin{array}{cc}\frac{k \cos x}{\pi-2 x} & , x \neq \frac{\pi}{2} \\ 5 & , x=\frac{\pi}{2}\end{array}, \quad\right.$ is continuous at $x=\frac{\pi}{2}$, then find the value of $k$.
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Question 372 Marks
If $\left|\begin{array}{ll}2 & 3 \\ y & x\end{array}\right|=3,\left|\begin{array}{ll}x & y \\ 4 & 2\end{array}\right|=5$, then find the value of $x$ and $y$.
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Question 382 Marks
Prove that $\left|\begin{array}{ccc}x+4 & 2 x & 2 x \\ 2 x & x+4 & 2 x \\ 2 x & 2 x & x+4\end{array}\right|=(5 x+4)(x-4)^2$
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Question 392 Marks
If $A=\left[\begin{array}{c}-2 \\ 4 \\ 5\end{array}\right], B=\left[\begin{array}{lll}1 & 3 & 6\end{array}\right]$, then show that $(A B)^T=B^T \cdot A^T$
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Question 402 Marks
Consider the function $f(x)=2 x+3, f: R \rightarrow R$, prove that $F$ is invertible. Also find the inverse function of $F$.
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Question 412 Marks
If vector $\vec{a}=2 \hat{i}-\hat{j}+\hat{k}, \vec{b}=3 \hat{i}+\hat{j}-2 \hat{k}$ then find a unit vector in the direction of $\vec{a} \times \vec{b}$.
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Question 442 Marks
Prove that if $A$ and $B$ are two independent events, then $A ^{\prime}$ and $B ^{\prime}$ will also be independent.
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2 Marks Questions - MATHS STD 12 Science Questions - Vidyadip