1
MHT CET 2024 2nd May Evening Shift
MCQ (Single Correct Answer)
+2
-0

The equation of normal to the curve $x=\theta+\sin \theta, y=1+\cos \theta$ at $\theta=\frac{\pi}{2}$ is

A
$2 x+2 y-\pi=0$
B
$2 x-y-\pi=0$
C
$2 x-2 y-\pi=0$
D
$2 x+y-\pi=0$
2
MHT CET 2024 2nd May Evening Shift
MCQ (Single Correct Answer)
+2
-0

The equation of the line, through $\mathrm{A}(1,2,3)$ and perpendicular to the vector $2 \hat{\mathrm{i}}+\hat{\mathrm{j}}-\hat{\mathrm{k}}$ and $\hat{i}+3 \hat{j}+2 \hat{k}$, is

A
$\overline{\mathrm{r}}=(\hat{\mathrm{i}}+2 \hat{\mathrm{j}}+3 \hat{\mathrm{k}})+\lambda(\hat{\mathrm{i}}+\hat{\mathrm{j}}+\hat{\mathrm{k}})$
B
$\overline{\mathrm{r}}=(\hat{\mathrm{i}}+2 \hat{\mathrm{j}}+3 \hat{\mathrm{k}})+\lambda(\hat{\mathrm{i}}-\hat{\mathrm{j}}-\hat{\mathrm{k}})$
C
$\overline{\mathrm{r}}=(\hat{\mathrm{i}}+2 \hat{\mathrm{j}}+3 \hat{\mathrm{k}})+\lambda(\hat{\mathrm{i}}+\hat{\mathrm{j}}-\hat{\mathrm{k}})$
D
$\overline{\mathrm{r}}=(\hat{\mathrm{i}}+2 \hat{\mathrm{j}}+3 \hat{\mathrm{k}})+\lambda(\hat{\mathrm{i}}-\hat{\mathrm{j}}+\hat{\mathrm{k}})$
3
MHT CET 2024 2nd May Evening Shift
MCQ (Single Correct Answer)
+2
-0

$\int \frac{\log \sqrt{x}}{3 x} \mathrm{dx}$ is equal to

A
$\frac{1}{3}(\log \sqrt{x})+\mathrm{c}$, (where $c$ is a constant of integration)
B
$\frac{2}{3}(\log \sqrt{x})^2+\mathrm{c}$, (where c is a constant of integration)
C
$\frac{2}{3}(\log x)^2+\mathrm{c}$, (where c is a constant of integration)
D
$\frac{1}{12}(\log x)^2+\mathrm{c},($ where c is a constant of integration)
4
MHT CET 2024 2nd May Evening Shift
MCQ (Single Correct Answer)
+2
-0

The negation of contrapositive of the statement $\mathrm{p} \rightarrow(\sim \mathrm{q} \wedge \mathrm{r})$ is

A
$(\sim q \vee \sim r) \wedge \sim p$
B
$(q \vee \sim r) \wedge p$
C
$(q \wedge \sim r) \vee p$
D
$(\sim q \wedge \sim r) \vee \sim p$
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