For what ratio of slit width to wavelength will the first minima of a single-slit diffraction pattern occur at +90°?
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A: D=2.4 md=1 mm = 1 x 10-3 mw=λD the definitions of D,d and w can be observed in the question
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A: Given that :
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Q: Ex. 56: In a biprism experiment interference bands are abserved at a distance of 1 m from the slit.…
A: Given :- Distance od band=1 mDistance between the images=0.7 cmwidth of band=100Distance of lence…
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- Wavelength (nam) Rr4. ACRY 12921 Visible spectruini 2. A single-slit is illuminated by violet light of wavelength 405 nm. The width of the slit is 1.25 mm. The slit-to-screen distance is 4.50 m. Calculate the distance between the third diffraction minima (m3) and the first diffraction minima (m = 1) on the same side of the central diffraction maximum.White light is incident on a diffraction grating with 2500 lines/cm. The screen is at a distance of 3.0 m. At what point nearest the central maximum will a maximum for red light (λ=600 nm) coincide with a maximum for violet light ( λ=400nm)? Identify the order of each maximum.P9 E4
- Light with wavelength 2 passes through a narrow slit of width w and is seen on a screen which is located at a distance D in front of the slit. The first minimum of the diffraction pattern is at distance d from the middle of the central maximum. Calculate the wavelength of light if D=2.4 m, d =1 mm and w = VAD.Give your answer in nanometers. Answer: Choose...A 25-turn circular coil has radius of r = 3 [cm] and a resistance of R = 10 [Q]. The coil is in a uniform magnetic field of 0.46 [T] that is perpendicular to the plane of the coil. a. magnetic flux? What is the value of the b. What is the value of the induced emf and the induced current in the coil? lemf| = [V] I = [A] Now, the value of the magnetic field is increasing from 0.46 [T] to 2.1 [T] in At = 1.4 [s]. C. emf? lemf| I = What is the value of the induced [V] d. current in the coil? [A] What is the value of the inducedThere is a circular slit with its radius a = 0.1mm. The distance between the slit plane and detector plane is given by R=1m. Roughly estimate the requirement of the wavelength of incident light for Fraunhofer diffraction with appropriate justification.