1
MHT CET 2024 9th May Morning Shift
MCQ (Single Correct Answer)
+1
-0

In the given circuit diagram, in the steady state the current through the battery and the charge on the capacitor respectively are

MHT CET 2024 9th May Morning Shift Physics - Capacitor Question 15 English

A
2 A and $3 \mu \mathrm{C}$
B
$\frac{6}{11} \mathrm{~A}$ and $\frac{12}{7} \mu \mathrm{C}$
C
11 A and $3 \mu \mathrm{C}$
D
zero ampere and $3 \mu \mathrm{C}$
2
MHT CET 2024 9th May Morning Shift
MCQ (Single Correct Answer)
+1
-0

Water is flowing in a conical tube as shown in figure. Velocity of water at area ' $\mathrm{A}_2$ ' is $60 \mathrm{~cm} / \mathrm{s}$. The value of ' $\mathrm{A}_1$ ' and ' $\mathrm{A}_2$ ' is $10 \mathrm{~cm}^2$ and $5 \mathrm{~cm}^2$ respectively. The pressure difference at both the cross-section is

MHT CET 2024 9th May Morning Shift Physics - Fluid Mechanics Question 34 English

A
$230 \mathrm{~N} / \mathrm{m}^2$
B
$200 \mathrm{~N} / \mathrm{m}^2$
C
$135 \mathrm{~N} / \mathrm{m}^2$
D
$105 \mathrm{~N} / \mathrm{m}^2$
3
MHT CET 2024 9th May Morning Shift
MCQ (Single Correct Answer)
+1
-0

A point object kept at P in front of a glass sphere of radius ' $R$ ' has its image formed at $Q$ such that $\mathrm{PO}=\mathrm{QO}$. The refractive index of material of glass sphere is 1.4. The distance PO is equal to

MHT CET 2024 9th May Morning Shift Physics - Ray Optics Question 24 English

A
$\frac{\mathrm{R}}{2}$
B
2R
C
5R
D
6R
4
MHT CET 2024 9th May Morning Shift
MCQ (Single Correct Answer)
+1
-0

The magnetic flux through a coil of resistance ' $R$ ' changes by an amount ' $\Delta \phi$ ' in time ' $\Delta t$ '. The amount of induced current and induced charge in the coil are respectively

A
$\left(\frac{\Delta \phi}{\Delta t}\right) R$ and $\frac{R}{\Delta \phi}$
B
  $\frac{\Delta \phi}{\mathrm{R}}$ and $\mathrm{R}\left(\frac{\Delta \mathrm{t}}{\Delta \phi}\right)$
C
$\frac{\Delta \phi}{\mathrm{R}}+\mathrm{R}$ and $\frac{\Delta \phi}{\Delta \mathrm{t}}$
D
$\left(\frac{\Delta \phi}{\Delta \mathrm{t}}\right) \times \frac{1}{\mathrm{R}}$ and $\frac{\Delta \phi}{\mathrm{R}}$
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