Question

Q4. Light of wavelength 750 nm is incident on a slit of width 0.500 mm. An...

Q4. Light of wavelength 750 nm is incident on a slit of width 0.500 mm. An observing screen is placed 2.00m from the slit. Find the position of the second order dark fringe from the center of the screen.

Homework Answers

Answer #1

Hello Dear,

Hope this helps...

Know the answer?
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for?
Ask your own homework help question
Similar Questions
light of wavelength 580 nm is incident on a slit of width 5.47 x 10^-6m. An...
light of wavelength 580 nm is incident on a slit of width 5.47 x 10^-6m. An observing screen is placed 2.00 m from the slit. A) Find he position of the first order dark fringe from the center of the screen (in meters) B) At most, how many dark fringes can be formed on either side of the central bright fringe (assuming that the observing screen is infinitely long)?
The second-order dark fringe in a single-slit diffraction pattern is 1.40 mm from the center of...
The second-order dark fringe in a single-slit diffraction pattern is 1.40 mm from the center of the central maximum. Assuming the screen is 89.2 cm from a slit of width 0.660 mm and assuming monochromatic incident light, calculate the wavelength of the incident light. nm
a) A laser beam is incident on a single slit of width 0.020 mm. On a...
a) A laser beam is incident on a single slit of width 0.020 mm. On a viewing screen placed 1.20 m away from the slit, the first minimum is observed at a distance 2.40 cm from the center of the screen. What is the wavelength of the laser used (in nm)? [6] (b) Laser light of wavelength 480 nm is incident on a transmission grating with 2000 groves/cm. How far away from the center of a screen placed at a...
1. monochromatic light of wavelength 540 nm from a source passes through a slit that is...
1. monochromatic light of wavelength 540 nm from a source passes through a slit that is 0.03mm wide. What is the width of the central bright fringe on the diffraction pattern formed on a screen placed at a distance of 2.00 m away from the slit? 2. Light of wavelength 500 nm is incident on a single slit of width 0.02 mm to produce a diffraction pattern with intensity 4.00×10^-4 W/m^2 at the center of a screen placed far away...
A single slit of width 0.45 mm is illuminated with monochromatic light (λ = 650 nm)....
A single slit of width 0.45 mm is illuminated with monochromatic light (λ = 650 nm). A screen is placed 2.70 m from the slit to observe the fringe pattern. What is the distance from the main principle axis and the third dark fringe? Answer in cm.
Green light of 532 nm is incident on a single slit with a width of 2000...
Green light of 532 nm is incident on a single slit with a width of 2000 nm. A screen that is 60 cm wide is placed 40 cm away from the slit. The interference pattern is centered on the screen. How many interference minima (dark fringes) will be visible on the screen?
Light with a wavelength of 460 nm is incident on a single slit with a slit...
Light with a wavelength of 460 nm is incident on a single slit with a slit width of 1.55 mm. A Single Slit Diffraction Pattern is observed on a screen that is 1.55 m away from the slit. What is the angle for the 1st order minimum? What is the angle (in degrees - written as "deg") for the 2nd order minimum? How wide (in mm) is the Central Maximum? How wide (in mm) is the First Maximum that is...
Coherent light of wavelength 600 nm is incident on a narrow slit. The diffraction pattern is...
Coherent light of wavelength 600 nm is incident on a narrow slit. The diffraction pattern is observed on a screen that is 4.00 m from the slit. On the screen the width of the central maximum of the diffraction pattern is 3.00 mm. What is the width of the slit? answer is 1.6 mm
Light of wavelength 587.5 nm illuminates a slit, of width 0.74 mm. (a) At what distance...
Light of wavelength 587.5 nm illuminates a slit, of width 0.74 mm. (a) At what distance from the slit should a screen be placed if the first minimum in the diffraction pattern is to be 0.82mm from the central maximum? ________m (b) Calculate the width of the central maximum. _________ mm
When a light source with wavelength of 500 nm is normally incident to a plate with...
When a light source with wavelength of 500 nm is normally incident to a plate with a single slit, the central diffraction maximum observed on a screen that is 2.95 mm  behind the plate has a width w. The incident light is then changed to a source with wavelength of 632 nm. How far behind the plate should the screen now be placed in order to obtain the same width w for the central diffraction maximum?
ADVERTISEMENT
Need Online Homework Help?

Get Answers For Free
Most questions answered within 1 hours.

Ask a Question
ADVERTISEMENT