Q.1 Application of laser with special emphasis on holography?
Q: The angles made with the plane of the interface are found from E,.a, = |E¡|cos(90° – 8,) - 5= V38…
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A: Given Width of the glasses yg = 52 mm Refractive index of glass ng = 1.4 Air gap ya = 41.6 mm…
Q: 4- |Ā| A 5- | B| 6-А. В
A: Given data: A→ = 2i^ + 3j^ + 4k^B →= i^ - 2j^ + 3k^
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A: LASER stands for light amplification by stimulated emission of radiation. The optical pump is used…
Q: Suppose a ray comes from a point (2, 8) and hits at mirror point (6, 6). Assume that perpendicular…
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Q: Şekilde görüldüğü gibi S, den S4 e kadar dört kapalı yüzey, +4Q, -6Q. -30 ve +Q yükleriyle birlikte…
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Q: Show that if Two mirrors with a radius of curvature of 0.7 m, separated by a distance of 0.7 m leads…
A: Radius of curvature , R1 = R2 = 0.7 m Distance , d = 0.7 m To find = Check for stability
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A: Given, width of parking land = 478 feet deep of parking land = 300 feet and the module is single…
Q: The index of refraction. Od one medium is n(low)=1.6 & the index of refraction of an adjoining…
A: refractive index of medium having low refractive index = n (low)= 1.6refractive index of medium…
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A: Given that, the vector is A→=x^x-4ey/6coszπ2 And the rectangular prism is To find the value of…
Q: mirror of radius 2R. The distance between the two mirrors is d. (a) Sketch the cavity (b). Determine…
A: In the optical cavity, stability condition is given by g - factors.
Q: Can we use Eq. 7-7 (W = Fdcos(theta)) for a one-dimensional variable force, F? a. Yes b. No
A: In the given question We have to discuss about the work done for a one dimensional variable force.
Q: Problem 2. A beam of laser light has a diameter D in air and shines on glass (ng = 1.5) under the…
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Q: What is Brewster's angle when the light in the air is reflected off a surface of a lake?
A: Brewster's angle for visible light is approximately 56°, while for an air-water interface (n2 ≈…
Q: Q. 18: A source of laser (S), a receiver (R) and a fixed mir- ror (F) - all lie on an arc of a…
A: Given data R=0.5 kmd=0.5 m Here, R is the radius. While d is the distance between the source and…
Q: Consider the boundary system below. Assume that the upper material is benzene (n = 1.501) while the…
A: Given data: The refractive index of the benzene is nb=1.501 The refractive index of the silicon is…
Q: Suppose the glass paperweight in Figure26-67 has an index of refraction n = 1.38. (a) Find the value…
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Q: Problem. Consider the helix R(t) = cos(2t)î + sin(2t)ĵ + 4tk (a) Compute R'(t) and R"(t) (b) Comnute…
A: (a) Given: The equation of helix is R^t=cos2ti^sin2tj^+4tk^. Introduction: The curvature measures…
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Q: Quartz has hexagonal 32 point group symmetry. Its unit cell dimensions are a = 4.914 Å and c = 5.405…
A: We have given that, quartz has hexagonal 32 point group symmetry. It unit cell dimensions are a =…
Q: For the transformation Q = /2g e-1+2a cos p, P = /2g e-a-1 sinp (where a is a constant) to be…
A: To be determined: For the canonical transformation, the value of alpha.
Q: Show that the function given by f(x) 3x + 17 is strictly increasing on R.
A: Given: The function is f(x) = 3 x + 17
Q: The Brewster's angle i, for an interface should be: 0° < is < 30° 30° < i, < 45° 45° < is < 90° iz =…
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Q: Problem 1 : Prove that V. (pū) = pV · T +ū . Vp %3D Problem 2 : Prove that V. (ũ + ở) = ỹ ũ+ Ÿ · õ.
A: Given,∇.(ρv→)=ρ∇.v→+v→.∇ρ ∇.(ρv→)=ρ∇.v→+v→.∇ρ∇.(ρv→)=∑k=1n∂(ρvk)∂xk∇.(ρv→)=∑…
Q: Ex. 2. If H = m q² + V(g), then show that i nq = qH - Hq is satisfied if dq IP – pq = iħ where q =…
A: The Hamiltonian is given as, H=12mq˙2+Vq Here, m is the mass of the particle, q˙ is the velocity of…
Q: A ray of light is incident on an air/water interface. The ray makes an angle of θ1 = 34 degrees with…
A: Given data The angle of incident is θ1=34o The refractive index of the air is n1=1 The refractive…
Q: In the configuration shown in the figure, how much flux in watts falls on a 1-mm x 1-mm detector…
A: The following information is given in the question: Configuration: A source of 2 cm x 2 cm is…
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Q: Problem 3 A 1mm filament produces a 1mm x 1mm electron beam incident on an anode disk with anode…
A: Source size - 1 mm = 0.001 m Anode angle Width of detector = 40 cm = 0.4 m.Detector to focal spot…
Q: (b) What is the pressure increase in the fluid in a syringe when a nurse applies a force of 10 N to…
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Q: A baseball has a 0.145 kg mass for and seconds. and a Major League Baseball now registers that pitch…
A: Given: The mass of the ball is 47 kg. The initial velocity of the ball is 0.145 m/s.
Q: To determine the refractvie index of a glass slab, an experiment was done. when the result is…
A: Incident medium = air Refracted medium = glassAngle of incidence = θ1Angle of refraction =…
Q: Incident Angle 0₁ (degrees) 0 5 10 15 20 25 30 35 40 45 Laser and Refraction Cell Data Sin (0₁) 0…
A: θiθrSin θisin…
Q: At the very end of Wagner's series of operas Ring of the Nibelung, Brünnhilde takes the golden ring…
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Q: Wite the following y=Ss+9 polar eqiuation. as a
A: y=5x+9⇒5x−y=−9 Now let x=rcosθy=rsinθ
Q: Q1/ Consider a laser cavity consisting of a concave mirror and a convex mirror, separated by 2m as…
A: Concave mirror,radius of curvature R1=2 m (radius of curvature is negative)Convex mirror, radius of…
Q: [N.O] = [N,d] INiat] = [ ata 1at)=t,ot ]a +atTays 「N,aコ= at Ñ a-aN=- â → Na = a (N-4) - a %3D %3D
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Q: Prove that V. (pū) = pV · J+ ở · Vp Prove that V. (ũ + 0) = · ū+ ỹ · J.
A: To prove the identities: 1) ∇.(ρv→)=ρ∇.v→+v→∇ρ2)∇→.(u→+v→)=∇→.u→+∇→.v→
Q: For cubic system of [100] reflection, (100), (010), (001), (T00), (0T0), (00T), therefore, p100=6.…
A: The planes for cubic system [100] as, (1,0,0) (0,1,0) (0,0,1)
Q: How much heat is transferred to a 0.1 kg silver chain from the human body if was at 25°C and now its…
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Q: A laser and a set of five mirrors are arranged to create a perfect hexagon of laser light. What is…
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