h = 6.626 x 10-347-S c = 3 x 108 m/s e = 1.6 x 10-19 C Q1:- In the laws of reflection and refraction 8, relate to B Vertical Wave A Incident Wave Transmitted Wave Reflected Wave D C Q2:- Given the wave function (in SI units) for an electric component of light waveE(y.t) 10-cosm(10%y-3 x 10°t). The wave number (in SI units) is C A 12.56Mm B 18.86Mm 3.14Mm D 6.28Mm 03 room temperature and sodium P line wavelength, the density and refractive index of diamond

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c = 3 x 108 m/s
e = 1.6 x 10-1⁹ C
Q1:- In the laws of reflection and refraction 8, relate to
Incident Wave
Vertical Wave
A
B
Q2:- Given the wave function (in S1 units) for an
10² cosm(10%y-3 x 10't). The wave number (in SI units) is
A
12.56Mm
B
18.86Mm
C
3.14Mm
D
6.28Mm
Q3:- At room temperature and sodium D line wavelength, the density and refractive index of diamond
are (Pa = 3.5g/cm³ n = 2.4). Using Lorentz Lorenz equation, the specific refraction of diamond
is
h = 6.626 x 10-347-S
Transmitted Wave
D
C
Reflected Wave
electric component of light wave (y.t) =
A 0.4857 cm³/g B 0.1666 cm/g C 0.1569 cm³/g D 0.1753 cm³/g
Q4:- Envision the interface between two regions, one of glass (ng 1.5) and the other of water
(72₁ 1.33). A ray traveling in the glass impinges on the interface at 45° and refracts into the water.
The transmission angle is
A
53"
40°
239
66
Q5: The electric susceptibility per unit volume of diamond (n = 2.4) caused by electric field
component of incident electromagnetic wave (d = 500nm) is
0.092
A
0.379
B
C
0.112
D
0.061
Q6:- When the distance from object to a thin convex lens is less than the focal length, the image will be
Inverted
B
Real
C
Virtual
D
Minified
A
Q7:- This differential equation is one of Maxwell's
equations for electromagnetic fields which is called
Gauss's Law
B
C
Ampere's Law
Q8:- Optical fibers are a modern technology used
phenomenon that is used in work of optical fiber is
Total Internal B Optical Absorption C
A
Ohm's Law:
B
Faraday's Law
to transfer information. The main optical
Heat Transfer D
Super
Conductivity
Reflectance
Q9:- Given the wave function of magnetic component (in SI units) for a sodium yellow light
wave B(z. t) = Bosin2m(1.7 x 10°z-5.1 x 10¹3). The energy for this photon of light (in electron
volts) is
A
0.277
C
Q11: For this thin lens (plano-convex) shown in
Figure. R, and R, will be equal
VXE
ƏB
at
2.274cV
1.864eV
B
A
2.845cV
C
D
2.1136V
Q10:- The numerical value of the amplitude coefficient of reflection r, for normal incidence case of a
liquid-diamond (n = 1.37.n,= 2.418) interface is
B
-0.415
0.585
-0.277
B
R₁-x, R. R
C
R₁=R. R. x
D
A
R. R. RE
R₁-0, R. R
Q12:- If a glass prism (Prism angle 60) is placed inside the water (n = 1.33), What is the refractive
index of the prism if the deviation angle equal 11'
Transcribed Image Text:c = 3 x 108 m/s e = 1.6 x 10-1⁹ C Q1:- In the laws of reflection and refraction 8, relate to Incident Wave Vertical Wave A B Q2:- Given the wave function (in S1 units) for an 10² cosm(10%y-3 x 10't). The wave number (in SI units) is A 12.56Mm B 18.86Mm C 3.14Mm D 6.28Mm Q3:- At room temperature and sodium D line wavelength, the density and refractive index of diamond are (Pa = 3.5g/cm³ n = 2.4). Using Lorentz Lorenz equation, the specific refraction of diamond is h = 6.626 x 10-347-S Transmitted Wave D C Reflected Wave electric component of light wave (y.t) = A 0.4857 cm³/g B 0.1666 cm/g C 0.1569 cm³/g D 0.1753 cm³/g Q4:- Envision the interface between two regions, one of glass (ng 1.5) and the other of water (72₁ 1.33). A ray traveling in the glass impinges on the interface at 45° and refracts into the water. The transmission angle is A 53" 40° 239 66 Q5: The electric susceptibility per unit volume of diamond (n = 2.4) caused by electric field component of incident electromagnetic wave (d = 500nm) is 0.092 A 0.379 B C 0.112 D 0.061 Q6:- When the distance from object to a thin convex lens is less than the focal length, the image will be Inverted B Real C Virtual D Minified A Q7:- This differential equation is one of Maxwell's equations for electromagnetic fields which is called Gauss's Law B C Ampere's Law Q8:- Optical fibers are a modern technology used phenomenon that is used in work of optical fiber is Total Internal B Optical Absorption C A Ohm's Law: B Faraday's Law to transfer information. The main optical Heat Transfer D Super Conductivity Reflectance Q9:- Given the wave function of magnetic component (in SI units) for a sodium yellow light wave B(z. t) = Bosin2m(1.7 x 10°z-5.1 x 10¹3). The energy for this photon of light (in electron volts) is A 0.277 C Q11: For this thin lens (plano-convex) shown in Figure. R, and R, will be equal VXE ƏB at 2.274cV 1.864eV B A 2.845cV C D 2.1136V Q10:- The numerical value of the amplitude coefficient of reflection r, for normal incidence case of a liquid-diamond (n = 1.37.n,= 2.418) interface is B -0.415 0.585 -0.277 B R₁-x, R. R C R₁=R. R. x D A R. R. RE R₁-0, R. R Q12:- If a glass prism (Prism angle 60) is placed inside the water (n = 1.33), What is the refractive index of the prism if the deviation angle equal 11'
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