Distance from Center to Light Source for Destructive Interference in YDSE Solution

STEP 0: Pre-Calculation Summary
Formula Used
Distance from Center to Light Source for D I = (2*Integer-1)*(Wavelength*Distance between Slits and Screen)/(2*Distance between Two Coherent Sources)
yDI = (2*n-1)*(λ*D)/(2*d)
This formula uses 5 Variables
Variables Used
Distance from Center to Light Source for D I - (Measured in Meter) - Distance from Center to Light Source for D I is the distance between the center of a light source and the point where destructive interference occurs in a wave pattern.
Integer - Integer is a whole number, either positive, negative, or zero, without a fractional part, used to represent a count or a quantity in various mathematical and real-world applications.
Wavelength - (Measured in Meter) - Wavelength is the distance between two consecutive peaks or troughs of a wave, which is a fundamental property of a wave that characterizes its spatial periodicity.
Distance between Slits and Screen - (Measured in Meter) - Distance between Slits and Screen is the distance between the slits and the screen in a Young's double-slit experiment, used to measure the interference pattern of light waves.
Distance between Two Coherent Sources - (Measured in Meter) - Distance between Two Coherent Sources is the distance between two sources that emit waves in phase with each other, resulting in an interference pattern.
STEP 1: Convert Input(s) to Base Unit
Integer: 5 --> No Conversion Required
Wavelength: 26.8 Centimeter --> 0.268 Meter (Check conversion ​here)
Distance between Slits and Screen: 20.2 Centimeter --> 0.202 Meter (Check conversion ​here)
Distance between Two Coherent Sources: 10.6 Centimeter --> 0.106 Meter (Check conversion ​here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
yDI = (2*n-1)*(λ*D)/(2*d) --> (2*5-1)*(0.268*0.202)/(2*0.106)
Evaluating ... ...
yDI = 2.29822641509434
STEP 3: Convert Result to Output's Unit
2.29822641509434 Meter -->229.822641509434 Centimeter (Check conversion ​here)
FINAL ANSWER
229.822641509434 229.8226 Centimeter <-- Distance from Center to Light Source for D I
(Calculation completed in 00.004 seconds)

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9 Young's Double-Slit Experiment (YDSE) Calculators

Path Difference in Young's Double-Slit Experiment
​ Go Path Difference = sqrt((Distance from Center to Light Source+Distance between Two Coherent Sources/2)^2+Distance between Slits and Screen^2)-sqrt((Distance from Center to Light Source-Distance between Two Coherent Sources/2)^2+Distance between Slits and Screen^2)
Distance from Center to Light Source for Destructive Interference in YDSE
​ Go Distance from Center to Light Source for D I = (2*Integer-1)*(Wavelength*Distance between Slits and Screen)/(2*Distance between Two Coherent Sources)
Distance from Center to Light Source for Constructive Interference in YDSE
​ Go Distance from Center to Light Source for C I = (Integer+(1/2))*(Wavelength*Distance between Slits and Screen)/Distance between Two Coherent Sources
Path Difference for Constructive Interference in YDSE
​ Go Path Difference for Constructive Interference = (Distance from Center to Light Source for C I*Distance between Two Coherent Sources)/Distance between Slits and Screen
Path Difference in YDSE given Distance between Coherent Sources
​ Go Path Difference = Distance between Two Coherent Sources*sin(Angle from Slit Center to Light Source)
Fringe Width
​ Go Fringe Width = (Wavelength*Distance between Slits and Screen)/Distance between Two Coherent Sources
Path Difference for Destructive Interference in YDSE
​ Go Path Difference for Destructive Interference = (2*Integer-1)*(Wavelength/2)
Path Difference for Minima in YDSE
​ Go Path Difference for Minima = (2*Integer+1)*Wavelength/2
Path Difference for Maxima in YDSE
​ Go Path Difference for Maxima = Integer*Wavelength

Distance from Center to Light Source for Destructive Interference in YDSE Formula

Distance from Center to Light Source for D I = (2*Integer-1)*(Wavelength*Distance between Slits and Screen)/(2*Distance between Two Coherent Sources)
yDI = (2*n-1)*(λ*D)/(2*d)

What is fringe width in YDSE?

In Young's Double-Slit Experiment (YDSE), fringe width is the distance between adjacent bright or dark fringes on the observation screen. It is determined by the wavelength of the light used, the distance between the slits, and the distance from the slits to the screen.








How to Calculate Distance from Center to Light Source for Destructive Interference in YDSE?

Distance from Center to Light Source for Destructive Interference in YDSE calculator uses Distance from Center to Light Source for D I = (2*Integer-1)*(Wavelength*Distance between Slits and Screen)/(2*Distance between Two Coherent Sources) to calculate the Distance from Center to Light Source for D I, Distance from Center to Light Source for Destructive Interference in YDSE formula is defined as the calculation of the distance from the center of the screen to the light source in a Young's Double Slit Experiment, where destructive interference occurs, providing insight into the wave nature of light and its behavior in such experiments. Distance from Center to Light Source for D I is denoted by yDI symbol.

How to calculate Distance from Center to Light Source for Destructive Interference in YDSE using this online calculator? To use this online calculator for Distance from Center to Light Source for Destructive Interference in YDSE, enter Integer (n), Wavelength (λ), Distance between Slits and Screen (D) & Distance between Two Coherent Sources (d) and hit the calculate button. Here is how the Distance from Center to Light Source for Destructive Interference in YDSE calculation can be explained with given input values -> 22982.26 = (2*5-1)*(0.268*0.202)/(2*0.106).

FAQ

What is Distance from Center to Light Source for Destructive Interference in YDSE?
Distance from Center to Light Source for Destructive Interference in YDSE formula is defined as the calculation of the distance from the center of the screen to the light source in a Young's Double Slit Experiment, where destructive interference occurs, providing insight into the wave nature of light and its behavior in such experiments and is represented as yDI = (2*n-1)*(λ*D)/(2*d) or Distance from Center to Light Source for D I = (2*Integer-1)*(Wavelength*Distance between Slits and Screen)/(2*Distance between Two Coherent Sources). Integer is a whole number, either positive, negative, or zero, without a fractional part, used to represent a count or a quantity in various mathematical and real-world applications, Wavelength is the distance between two consecutive peaks or troughs of a wave, which is a fundamental property of a wave that characterizes its spatial periodicity, Distance between Slits and Screen is the distance between the slits and the screen in a Young's double-slit experiment, used to measure the interference pattern of light waves & Distance between Two Coherent Sources is the distance between two sources that emit waves in phase with each other, resulting in an interference pattern.
How to calculate Distance from Center to Light Source for Destructive Interference in YDSE?
Distance from Center to Light Source for Destructive Interference in YDSE formula is defined as the calculation of the distance from the center of the screen to the light source in a Young's Double Slit Experiment, where destructive interference occurs, providing insight into the wave nature of light and its behavior in such experiments is calculated using Distance from Center to Light Source for D I = (2*Integer-1)*(Wavelength*Distance between Slits and Screen)/(2*Distance between Two Coherent Sources). To calculate Distance from Center to Light Source for Destructive Interference in YDSE, you need Integer (n), Wavelength (λ), Distance between Slits and Screen (D) & Distance between Two Coherent Sources (d). With our tool, you need to enter the respective value for Integer, Wavelength, Distance between Slits and Screen & Distance between Two Coherent Sources and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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