1
MHT CET 2026 17th April Morning Shift
MCQ (Single Correct Answer)
+1
-0
In a single slit diffraction experiment, for wavelength '$\lambda$', half angular width of the principal maxima is '$\theta$'. Also for wavelength of light '$p\lambda$', the half angular width of the principal maxima is '$q\theta$'. The ratio of the half angular widths of the first secondary maxima in the first case to second case will be
A
$p : 1$
B
$1 : q$
C
$p : q$
D
$q : p$
2
MHT CET 2026 16th April Evening Shift
MCQ (Single Correct Answer)
+1
-0
Three identical polaroids $P_1$, $P_2$ and $P_3$ are placed one after another. The pass axis of $P_2$ and $P_3$ are inclined at angle of $60^\circ$ and $90^\circ$ with respect to axis of $P_1$. The source has an intensity $I_0$. The intensity of light finally coming out is
A
$\dfrac{I_0}{2}\cos^2 30^\circ\cos^2 90^\circ$
B
$\dfrac{I_0}{2}\cos^2 60^\circ\cos^2 30^\circ$
C
$I_0\cos^2 60^\circ\cos^2 30^\circ$
D
zero
3
MHT CET 2026 16th April Evening Shift
MCQ (Single Correct Answer)
+1
-0
In Young's double slit experiment, two slits are illuminated with a light of wavelength $\lambda$. The line joining $A_1P$ is perpendicular to $A_1A_2$ as shown in figure. If the first minimum is detected at P, the value of slits separation 'a' will be
(D = distance between source and screen)
MHT CET 2026 16th April Evening Shift Physics - Wave Optics Question 8 English
A
$\lambda\text{D}$
B
$\sqrt{\lambda\text{D}}$
C
$\sqrt{\dfrac{\lambda}{\text{D}}}$
D
$\sqrt{\dfrac{\text{D}}{\lambda}}$
4
MHT CET 2026 16th April Morning Shift
MCQ (Single Correct Answer)
+1
-0
In Young's double slit experiment, the fringe width is 0.4 mm. What is the distance between $4^{\text{th}}$ dark band and $6^{\text{th}}$ bright band on the same side of the interference pattern?
A
$0.5$ mm
B
$0.75$ mm
C
$1.0$ mm
D
$1.5$ mm

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