(a) A spectrum of colours has the following wavelengths: violet, 415 nm: blue, 475nm. green 517...
A beam of light containing red (660 nm) and violet (410 nm) wavelengths travels from air, through a flat piece of crown glass 2.34 cm thick, and then back to air.If the beam has an angle of incidence of 15.2° in air, determine the angle at which the two colors of light emerge from the crown glass. The index of refraction respectively for red and violet light in crown glass is 1.512 and 1.530 (b) Determine the distance separating the...
A beam of light containing red (660 nm) and violet (410 nm) wavelengths travels from air, through a flat piece of crown glass 2.54 cm thick, and then back to air. (a) If the beam has an angle of incidence of 18.0° in air, determine the angle at which the two colors of light emerge from the crown glass. The index of refraction respectively for red and violet light in crown glass is 1.512 and 1.530. (Enter a number to...
A beam of light containing red (660 nm) and violet (410 nm) wavelengths travels from air, through a flat piece of crown glass 1.06 cm thick, and then back to air.(a) If the beam has an angle of incidence of 20.8° in air, determine the angle at which the two colors of light emerge from the crown glass. The index of refraction respectively for red and violet light in crown glass is 1.512 and 1.530. (Enter a number to three...
(11%) Problem 6: A beam of light containing orange (610 nm) and violet (410 nm) wavelengths passes from fused quartz into water, striking the surface between them at a 49° incident angle with respect to the normal. Medium Red Orange Yellow Green Blue Violet (660 nm) (610 nm) (580 nm) (550 nm) (470 nm) (410 nm) | 1.331 1.332 1.333 | 1.335 | 1.338 1.342 Water Randomized Variables Diamond 2.410 2.415 2.4172.426 2.444 2.458 O= 49° Glass, | 1.512 1514...
Problem 6: A narrow beam of light containing yellow (580 nm) and green (550 nm) wavelengths goes from polystyrene to air, striking the surface at a 25° incident angle with respect to the normal. Randomized Variables: Θ = 25 ° What is the angle in degrees between the colors when they emerge from the polystyrene? Θg - Θy =_______ Part (b) How far in meters would they have to travel to be separated by 1.00 mm? x=_________ Medium Red Orange Yellow...
400 nm Violet Blue In a discharge tube, nitrogen atoms emit light as they undergo transitions from one energy level to another that is 4.845x10-19 J lower in energy. Calculate the wavelength of the light emitted and by referring to the figure to the right, predict the color of the line in the discharge spectrum. Green 500 nm Yellow Wavelength- 600 nmm Orange Color- Red 700 nm Submit Answer 5 question attempts remaining
Gases Color Energy (E, ev) Wavelength (λ, nm) 1/λ (1/nm) H2 Blue Green Orange Red 2.31 2.30 2.10 2.00 538 540 580 620 1.86 x 10^-3 1.85 x 10^-3 1.72 x 10^-3 1.61 x 10^-3 Ne Green Yellow Yellow Orange Orange Red 2.25 2.14 2.10 2.01 2.05 1.90 550 580 590 605 610 650 1.82 x 10^-3 1.72 x 10^-3 1.69 x 10^-3 1.65 x 10^-3 1.64 x 10^-3 1.54 x 10^-3 Hg Purple Blue Green Yellow Red 2.85 2.52...
The hydrogen spectrum has a red line at 656 nm and a violet line at 434 nm. What angular separation between these two spectral lines is obtained with a diffraction grating that has 4014 lines/cm? (Assume that the light is incident normally on the grating.) 5.11 x first order separation Your incorrect answer may have resulted from roundoff error. Make sure you keep extra significant figures in intermediate steps of your calculation. 10.21 x second order By how many wavelengths...