Announcements Homework for tomorrow… Ch. 22, Probs. 30, 32, & 49

Slides:



Advertisements
Similar presentations
Examples Wave Optics.
Advertisements

The waves spread out from the opening!
The Wave Nature of Light Chapter 24. Properties of Light Properties of light include reflection, refraction, interference, diffraction, and dispersion.
Copyright © 2009 Pearson Education, Inc. Lecture 3 – Physical Optics b) Diffraction.
When wavefronts pass through a narrow slit they spread out. This effect is called diffraction.
Chapter 37 Wave Optics EXAMPLES.
Announcements Homework for tomorrow… (Ch. 22, CQ3, Probs. 2, 5, & 8)
Announcements Homework for tomorrow…
Announcements Homework for tomorrow… (Ch. 23, CQ 3, Probs. 3, 8, & 10)
Announcements Homework for tomorrow… (Ch. 22, CQ5, Probs. 16 & 18)
Lecture 33 Review for Exam 4 Interference, Diffraction Reflection, Refraction.
Single-Slit Diffraction: Interference Caused by a Single “Slit” or “Hole in the Wall”
PHY 1371Dr. Jie Zou1 Chapter 38 Diffraction and Polarization.
Lecture 21 Wave Optics-2 Chapter 22
Interference & Diffraction
Double Slit Diffraction Physics 202 Professor Lee Carkner Lecture 27.
Diffraction Physics 202 Professor Lee Carkner Lecture 26.
Double Slit Diffraction Physics 202 Professor Lee Carkner Lecture 27.
Chapter 16 Interference and Diffraction Interference Objectives: Describe how light waves interfere with each other to produce bright and dark.
Multiple-Slit Interference Uniform slits, distance d apart. Light of wavelength. Screen L away “Thin” slits  compared to d) L >> d then path length difference.
Announcements  1 st EXAM on Tuesday, February 17!  Homework for tomorrow… Ch. 28: CQ 12, Probs. 24, 37, & 50 CQ6: a) see handoutb) x = 3.0 m 28.12: 11V.
I NTERFERENCE AND D IFFRACTION Chapter 15 Holt. Section 1 Interference: Combining Light Waves I nterference takes place only between waves with the same.
Happyphysics.com Physics Lecture Resources Prof. Mineesh Gulati Head-Physics Wing Happy Model Hr. Sec. School, Udhampur, J&K Website: happyphysics.com.
Announcements  Homework for tomorrow… Ch. 32: Probs. 11, 13, & 14 CQ1: a. not affectedb. not affected CQ4: out of page CQ5: down  Office hours… MW 12:30-1:30.
Announcements Homework for tomorrow… Ch. 30: Probs. 24, 53, & 56
Light and diffraction.
© 2010 Pearson Education, Inc. PowerPoint ® Lectures for College Physics: A Strategic Approach, Second Edition Chapter 17 Wave Optics.
Physics Light: Geometric Optics 24.1 Waves versus Particles 24.2 Huygens’ Principle 24.3 Young’s double-slit Interference 24.5 Single-slit Diffractin.
The waves spread out from the opening!
1© Manhattan Press (H.K.) Ltd. 9.7Diffraction Water waves Water waves Light waves Light waves Fraunhofer diffraction Fraunhofer diffraction.
Wave superposition If two waves are in the same place at the same time they superpose. This means that their amplitudes add together vectorially Positively.
Chapter 38: Diffraction and Polarization  For a single opening in a barrier, we might expect that a plane wave (light beam) would produce a bright spot.
Light of wavelength passes through a single slit of width a. The diffraction pattern is observed on a screen a distance x from the slit. Q double.
diffraction (Physical optics)
13.4 Double slit interference. From one source and two gaps 1 st bright fringe 1 st bright fringe central fringe.
1 Chapter 33: Interference and Diffraction Homework: 17, 31, 37, 55 Cover Sections: 1, 2, 3, 4, 6, 7 Omit Sectons: 5, 8.
Interference of Light Intensity of double-slit pattern Three slits
Announcements  Homework for tomorrow… (Ch. 22, Probs. 20, 30, & 31) CQ2: a) & c) 22.10: 43.2° 22.12: m 22.13: 7.9 x m  Office hours… MW 12:30-1:30.
Double the slit width a and double the wavelength
Announcements Homework for tomorrow… Ch. 33: CQ 3, Probs. 4, 6, & : 0.28 Am : a) 1.3 x Nm b) 900 CW rotation 32.63:
Announcements Homework for tomorrow… Ch. 28, CQ 1 & 2, Probs. 6 & 36
Announcements Homework for tomorrow… Ch. 22, CQ 3, Probs. 2, 4, & 8
The Space Movie.
Announcements Homework for tomorrow…
Announcements FINAL EXAM:
Announcements Homework for tomorrow… Ch. 32: CQ 7, Probs. 16, 18, & 48
Diffraction Part 2 Thin film interference with herring (Friday homework !) Butterfly pigmentation Today: Lots of clicker questions on diffraction. Goal:
Announcements Homework for tomorrow…
Geometry of Young’s Double Slit Experiment
Announcements Homework for tomorrow…
Announcements Homework for tomorrow…
Announcements Homework for tomorrow… Ch. 23, CQ 3, Probs. 4, 8, & 9
Announcements EXAM 2 on Tuesday, March 14! Homework for tomorrow…
Wave superposition If two waves are in the same place at the same time they superpose. This means that their amplitudes add together vectorially Positively.
Wave superposition If two waves are in the same place at the same time they superpose. This means that their amplitudes add together vectorially Positively.
Young’s Double Slit Experiment.
Interference Requirements
Interference of Light.
Announcements Homework for tomorrow… Ch. 30: CQ 6, Probs. 10, 14, & 16
Announcements Homework for tomorrow… Ch. 32: Probs. 10, 13, & 14
A. Double the slit width a and double the wavelength λ.
Example: 633 nm laser light is passed through a narrow slit and a diffraction pattern is observed on a screen 6.0 m away. The distance on the screen.
A. Double the slit width a and double the wavelength l.
Single Slit Diffraction
The Geometry of Interference and Diffraction
LEAD Tutors/Peer Instructors Needed!
Examples of single-slit diffraction (Correction !!)
Diffraction Grating calculation of light wavelength
MSTC Physics C Chapter 24 Section 3.
The waves spread out from the opening!
Presentation transcript:

Announcements Homework for tomorrow… Ch. 22, Probs. 30, 32, & 49 CQ2: a) & c) 22.10: 43.2° 22.12: 0.142 m 22.14: 396 nm Office hours… MW 10-11 am TR 9-10 am F 12-1 pm Tutorial Learning Center (TLC) hours: MTWR 8-6 pm F 8-11 am, 2-5 pm Su 1-5 pm

Wave Optics (Single-Slit Diffraction) Chapter 22 Wave Optics (Single-Slit Diffraction)

Last time… The intensity of the bright fringes of the diffraction grating… The dark fringes of single-slit diffraction occur at angular positions…

i.e. 22.4: Diffraction of a laser through a slit Light from a helium-neon laser (λ = 633 nm) passes through a narrow slit and is seen on a screen 2.0 m behind the slit. The first minimum in the diffraction pattern is 1.2 cm from the central maximum. How wide is the slit?

The Width of a Single-Slit Diffraction Pattern… The angular positions of the dark fringes in the interference pattern are.. Where does the pth dark fringe occur?

The Width of a Single-Slit Diffraction Pattern… The angular positions of the dark fringes in the interference pattern are.. Where does the pth dark fringe occur?

The Width of a Single-Slit Diffraction Pattern… What is the width of the central maximum?

The Width of a Single-Slit Diffraction Pattern… What is the width of the central maximum? Notice: The width of the central maximum is twice the spacing between the dark fringes on either side. The smaller the opening you squeeze a wave through, the more it spreads out on the other side.

i.e. 22.5: Determining the wavelength Light passes through a 0.12 mm wide slit and forms a diffraction pattern on a screen 1.00 m behind the slit. The width of the central maximum is 0.85 cm. What is the wavelength of light?

Quiz Question 1 A laboratory experiment produces a single-slit diffraction pattern on a screen. The slit width is a and the light wavelength is . In this case,   a.   a.   a. Not enough info to compare  to a.