Calculating Distance Between Double Slits Using the Double-Slit Equation

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Homework Help Overview

The discussion revolves around problems related to the double-slit experiment and diffraction patterns, specifically focusing on calculating distances between slits and various fringe positions based on given wavelengths and distances. The subject area includes wave optics and interference patterns.

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  • Mixed

Approaches and Questions Raised

  • Participants discuss the application of the double-slit equation and its variants to find distances between slits and fringe positions. Some express uncertainty about how to approach problems involving both bright and dark fringes, while others clarify the use of specific equations for different fringe types.

Discussion Status

Several participants have provided attempts at solving the problems, and some have offered guidance on using appropriate formulas. There is ongoing exploration of different interpretations and methods, particularly regarding the relationship between fringe positions and slit separation.

Contextual Notes

Participants note constraints such as the need to consider both bright and dark fringes in certain problems, and there are mentions of specific values and setups that may affect calculations. Some participants express confusion about the correct application of formulas and the interpretation of results.

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[SOLVED] Double slit equations

In an experiment, blue light with a wavelength of 645 nm is shone through a double-slit and lands on a screen that is located 1.35 m from the slits. If the distance from the centre maximum to the 8th order bright fringe is 2.6 cm, calculate the distance between the two slits.

Here is what I did:
wavelength=6.45*10^-7 m
L=1.35 m
m=8
X=0.026m

I used X/L = m*wavelength/d to find d.
Is this right?
 
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got another question:

Two slits are separated by a distance of 2.00 10-5 m. They are illuminated by light of wavelength 5.60 10-7 m. If the distance from the slits to the screen is 6.00 m, what is the separation between the central bright fringe and the third dark fringe?

Have no idea to solve it since it involves both a bright and a dark fringe..
 
Anyone??
 
i would really appreciate it if someone could help me with this..
 
I used X/L = m*wavelength/d to find d. This formula is correct.
The position of the dark fringe is given by X/L = (2m + 1)*wavelength/2d .
m = 0 gives the first dark fringe
 
ok but I am asked to find the distane between the middle bright fringe and the 3rd dark fringe.
 
Oh wait, so you are saying I sub in m=2, and the given values to find X?
 
All the distances are measured from the central bright fringe. You want to find the distance of third dark fringe. So put m = 3
 
umm..ok..got it..!..thnkz..got another question..this one is on single slit phenonmenon:
Light of wavelength 625 nm shines through a single slit of width 0.32 mm and forms a diffraction pattern on a flat screen located 8.0 m away. Determine the distance between the middle of the central bright fringe and the first dark fringe?

So what i did was using wavelength/width= X/L, i found X. this is the distance from one dark to another dark fringe (on the other side of the middle light fringe) then i divided tht by 2. tht right?
 
  • #10
So what i did was using wavelength/width= X/L, i found X. this is the distance of the first dark fringe from the central bright fringe.
 
Last edited:
  • #11
um..ok..so this is the dist. of the 1st dark fringe to the dark fringe after the central bright fringe yea?
 
  • #12
i am still unclear on how to find the distance from the 1st dark fringe to the MIDDLE of the central bright fringe..
 
  • #13
The distance of the first dark fringe is half the width of the central bright fringe.
 
  • #14
so my answer is write yea..?..i mean the method..find findind the distance, and then divinding it by 2 gives the right answer..
 
  • #15
No need to divid by 2. X itself is the distance of the first dark fringe from the central maximum.
 
  • #16
Oh..ok..thankz..:)..One more question..Light of wavelength 600 nm is incident upon a single slit with width 4.0 × 10-4 m. The figure shows the pattern observed on a screen positioned 2.0 m from the slits.Determine the distance s. see attached pic..
So here we have the wavelength, w and L. Now since both the bright and the dark fringe is invloved do we have to cobine their equations??
like: (m+0.5)wave/w= X/L...Dont know how to proceed with this problem..
 

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  • #17
I can't see the picture. Any way, the distance of the nth secondary maximum from the mid point of the central maximum = (2n + 1)lambda*L/2d and the distance of the nth secondary minimum from the mid point of the central maximum = n*lambda*L/d
 
  • #18
umm..but in the pic..we are supposed to find the distance between the middle of the central max...to the middle of the 2nd dark fringe from the central max..
 
  • #19
All the fringes are of finite width. In the case of diffraction the fringe widths are not same. As you move away from the central bright fringe the width decreases. So always you have to take the reading from center to center of any fringe.
 
  • #20
so then, for solving this problem we would use X=Lnlamda/w. I have attached the pic again for you to see.
 

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  • #21
And here are solutions to some of the questions. Could you please just check my solutions.
1)Calculate the angle that will form between the centre maximum and the third-order dark fringe if the wavelength of the light that strikes two slits is 650 nm and the distance between the slits is 2.2 10-6 m.
1. n=3, λ=6.5* m, d=2.2* m
(n-0.5)λ= d*Sinθ
Sinθ= (n-0.5)*λ/d
= (3-0.5)6.5* /2.2*
= 2.5*6.5* /2.2
= 7.3863*0.1= 0.73863
Sinθ= 0.73863
θ= (0.73863)= 47.61 degrees
2)In an experiment, blue light with a wavelength of 645 nm is shone through a double-slit and lands on a screen that is located 1.35 m from the slits. If the distance from the centre maximum to the 8th order bright fringe is 2.6 cm, calculate the distance between the two slits.

2. m=8, λ=6.45* m, L =1.35m, X=0.026m
X/L=mλ/d
d=Lmλ/X
d= 1.35*6.45* *8/0.026
=2.68* m
3)In an experiment, the distance from one slit to the third dark fringe is found to be 2.200 046 8 m. If the wavelength of the light being shone through the two slits is 590 nm, calculate the distance from the second slit to this same dark fringe.
3. n=3, PS1= 2.2000468m,λ=5.9* m
(n-0.5)λ=lPS1-PS2l
+/- (3-0.5)5.9* = 2.2000468-PS2
+/- 14.75* = 2.2000468-PS2
PS2= 2.2000468-14.75* OR 2.2000468+14.75*
PS2= 2.200045325m or 2.200048275m

4)Two slits are separated by a distance of 2.00 10-5 m. They are illuminated by light of wavelength 5.60 10-7 m. If the distance from the slits to the screen is 6.00 m, what is the separation between the central bright fringe and the third dark fringe?

4. X/L= (2n+1)λ/2d
X= (2n+1)λL/2d= 42*5.60*10-6/4*10-5
= 58.8*10-2= 0.60m
 
  • #22
anyone?
 
  • #23
650 nm = 650*10^-9 = 6.5*10-7m
Sinθ= 0.073863
Recheck all the problems
 
  • #24
i did change nm to m..i don't know y its not showing that in the messege. I have sent a file to you as a private msg. Those are the same solutions, i pasted in here. Take a look at them please. And for the previous question (with the pic), we have to use X=Lnlamda/w yes?
 
  • #25
I am unable to send it to you: here is the file. Plese check it.
 

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  • #26
Light of wavelength 625 nm shines through a single slit of width 0.32 mm and forms a diffraction pattern on a flat screen located 8.0 m away. Determine the distance between the middle of the central bright fringe and the first dark fringe

λ=6.25*〖10〗^(-7)m, w=0.32*〖10〗^(-3)m, L=8.0m
λ/w=X/L
X=Lλ/w= 8*6.25*〖10〗^(-7)/0.32*〖10〗^(-3)
= 156.25*10000
1.56*〖10〗^6m

Light of 600.0 nm is incident on a single slit of width 6.5 mm. The resulting diffraction pattern is observed on a nearby screen and has a central maximum of width 3.5 m. What is the distance between the screen and the slit?

λ=6.00*〖10〗^(-7)m, w=6.5*〖10〗^(-3)m, 2X=3.5;X=1.75m
λ=wX/L
L=wX/λ= 6.5*1.75*〖10〗^(-3)/6*〖10〗^(-7)= 11.375*〖10〗^4/6 =2.00*〖10〗^4m

A monochromatic beam of microwaves with a wavelength of 0.052 m is directed at a rectangular opening of width 0.35 m. The resulting diffraction pattern is measured along a wall 8.0 m from the opening. What is the distance between the first- and second-order dark fringes?

. λ=0.052m, w=0.35m, L=8m
λ/w=X/L
X= Lλ/w= 8*0.052/0.35
= 1.18 m
Light from a red laser passes through a single slit to form a diffraction pattern. If the width of the slit is increased by a factor of two, what happens to the width of the central maximum?

λ1=wy1/L, y1= Lλ/w
λ2=2wy/L, y2= Lλ/2w
y2/y1= λ2L*w/2w*Lλ1
y2/y1= 0.5
y2=0.5y1

And for the previous question (with the pic), we have to use X=Lnlamda/w yes?
 
  • #27
please could someone go through this?
 
  • #28
Hello..Anyone?
 
  • #29
could someone please check my solutions..?
 
  • #30
Hello..??
 

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