lecture 30 friday, april 17 review two slits, gratings thin film interference

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Lecture 30 Friday, April 17 Review two slits, gratings Thin Film Interference

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Page 1: Lecture 30 Friday, April 17 Review two slits, gratings Thin Film Interference

Lecture 30

Friday, April 17Review two slits, gratings

Thin Film Interference

Page 2: Lecture 30 Friday, April 17 Review two slits, gratings Thin Film Interference

Two slit interference

• Bright fringes occur at angles

• On the observing screen,

sin mm d

tanm my L

Page 3: Lecture 30 Friday, April 17 Review two slits, gratings Thin Film Interference

Workbook Problems

• Graphical representation• WB 17: 1-9• 1 and 2:• 3: Shadow when d>>λ• 4: Two slit diffraction to compare with 3• 5: Graphical picture of two slit diffraction

paths.

0n n

Page 4: Lecture 30 Friday, April 17 Review two slits, gratings Thin Film Interference

Grating Problems

• **6: Graphical path differences for four slits• 7. What happens when wavelength is

doubled?• 8: What happens when slit width is doubled?• 9. Δr = 2λ and ½λ

Page 5: Lecture 30 Friday, April 17 Review two slits, gratings Thin Film Interference

The Intensity Pattern Due to a Diffraction Grating

Slide 17-14

Page 6: Lecture 30 Friday, April 17 Review two slits, gratings Thin Film Interference

The Fringes Become Very Narrow as the Number of Slits is Increased

Slide 17-15

Page 7: Lecture 30 Friday, April 17 Review two slits, gratings Thin Film Interference

All waves spread out after passing through a small enough gap in a barrier. This phenomenon is

known as

Ant

irefle

ction

dou

ble-sli

t in...

Refr

actio

n

diff

ract

ion

25% 25%25%25%1. Antireflection

2. double-slit interference

3. Refraction

4. diffraction

Page 8: Lecture 30 Friday, April 17 Review two slits, gratings Thin Film Interference

Problems due Today

• 17: 1, 2, 4, 7, 9, 10, 12• 2: speed in glass• 4: wavelength in glass• 7: two slit interference• 9: ditto, given d and y5 – y1, find λ• 10: two slits given fringe spacing, λ• 12: Δr

Page 9: Lecture 30 Friday, April 17 Review two slits, gratings Thin Film Interference

Thin-Film Interference

Slide 17-17

Page 10: Lecture 30 Friday, April 17 Review two slits, gratings Thin Film Interference

Phase Changes Due to Reflection

Slide 17-18

Page 11: Lecture 30 Friday, April 17 Review two slits, gratings Thin Film Interference

Workbook Problem 10-11

• Wave reflected at various interfaces

Page 12: Lecture 30 Friday, April 17 Review two slits, gratings Thin Film Interference

A film of oil (noil = 1.2) floats on top of an unknown fluid “X” (with unknown index of refraction nx). The thickness of the oil film is known to be very small, on the order of 10 nm. A beam of white light illuminates the oil from the top, and you

observe that there is very little reflected light, much less reflection than at an interface between air and X. What can

you say about the index of refraction of X?

nx >

1.2

nx <

1.2

nx =

1.2

Ther

e is i

nsuf..

.

25% 25%25%25%

1. nx > 1.2

2. nx < 1.2

3. nx = 1.2

4. There is insufficient information to tell.

Page 13: Lecture 30 Friday, April 17 Review two slits, gratings Thin Film Interference

Assignment for Monday

• Enjoy your weekend