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

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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. Check FAQs
yDI=(2n-1)λD2d
yDI - Distance from Center to Light Source for D I?n - Integer?λ - Wavelength?D - Distance between Slits and Screen?d - Distance between Two Coherent Sources?

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

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Here is how the Distance from Center to Light Source for Destructive Interference in YDSE equation looks like with Values.

Here is how the Distance from Center to Light Source for Destructive Interference in YDSE equation looks like with Units.

Here is how the Distance from Center to Light Source for Destructive Interference in YDSE equation looks like.

229.8226Edit=(25Edit-1)26.8Edit20.2Edit210.6Edit
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Distance from Center to Light Source for Destructive Interference in YDSE Solution

Follow our step by step solution on how to calculate Distance from Center to Light Source for Destructive Interference in YDSE?

FIRST Step Consider the formula
yDI=(2n-1)λD2d
Next Step Substitute values of Variables
yDI=(25-1)26.8cm20.2cm210.6cm
Next Step Convert Units
yDI=(25-1)0.268m0.202m20.106m
Next Step Prepare to Evaluate
yDI=(25-1)0.2680.20220.106
Next Step Evaluate
yDI=2.29822641509434m
Next Step Convert to Output's Unit
yDI=229.822641509434cm
LAST Step Rounding Answer
yDI=229.8226cm

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

Variables
Distance from Center to Light Source for D I
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.
Symbol: yDI
Measurement: LengthUnit: cm
Note: Value can be positive or negative.
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.
Symbol: n
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Wavelength
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.
Symbol: λ
Measurement: LengthUnit: cm
Note: Value can be positive or negative.
Distance between Slits and Screen
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.
Symbol: D
Measurement: LengthUnit: cm
Note: Value should be greater than 0.
Distance between Two Coherent Sources
Distance between Two Coherent Sources is the distance between two sources that emit waves in phase with each other, resulting in an interference pattern.
Symbol: d
Measurement: LengthUnit: cm
Note: Value can be positive or negative.

Other formulas in Young's Double Slit Experiment (YDSE) category

​Go Path Difference for Constructive Interference in YDSE
ΔxCI=yCIdD
​Go Path Difference in Young's Double-Slit Experiment
Δx=(y+d2)2+D2-(y-d2)2+D2
​Go Path Difference for Maxima in YDSE
Δxmax=nλ
​Go Path Difference in YDSE given Distance between Coherent Sources
Δx=dsin(θ)

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

Distance from Center to Light Source for Destructive Interference in YDSE evaluator 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 evaluate 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 evaluate Distance from Center to Light Source for Destructive Interference in YDSE using this online evaluator? To use this online evaluator 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.

FAQs on Distance from Center to Light Source for Destructive Interference in YDSE

What is the formula to find Distance from Center to Light Source for Destructive Interference in YDSE?
The formula of Distance from Center to Light Source for Destructive Interference in YDSE is expressed as Distance from Center to Light Source for D I = (2*Integer-1)*(Wavelength*Distance between Slits and Screen)/(2*Distance between Two Coherent Sources). Here is an example- 22982.26 = (2*5-1)*(0.268*0.202)/(2*0.106).
How to calculate Distance from Center to Light Source for Destructive Interference in YDSE?
With Integer (n), Wavelength (λ), Distance between Slits and Screen (D) & Distance between Two Coherent Sources (d) we can find Distance from Center to Light Source for Destructive Interference in YDSE using the 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).
Can the Distance from Center to Light Source for Destructive Interference in YDSE be negative?
Yes, the Distance from Center to Light Source for Destructive Interference in YDSE, measured in Length can be negative.
Which unit is used to measure Distance from Center to Light Source for Destructive Interference in YDSE?
Distance from Center to Light Source for Destructive Interference in YDSE is usually measured using the Centimeter[cm] for Length. Meter[cm], Millimeter[cm], Kilometer[cm] are the few other units in which Distance from Center to Light Source for Destructive Interference in YDSE can be measured.
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