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a_sh-v [17]
4 years ago
12

A double-slit arrangement produces interference fringes for yellow sodium light. To produce narrower-spaced fringes, should red

light or blue light be used?
a. blue lightb. red light
Physics
1 answer:
Reika [66]4 years ago
6 0

Answer:

Blue light

Explanation:

y=Lwm/d  

where:  

y is the distance between the finges  

w is the wavelength is light (I dont have a symbol for lambda)  

m is the fringe order (the central bright fringe is the zeroth- order, the next on either side is the + or - first order, et cet)  

d is the distace between the slits  

So to reduce y, the spacing between the fringes, you could move your screen closer to the slits, use slits that are spaced farther apart, or use a shorter wavelength of light (shift toward the blue)

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Answer:

Length = 2.92 m

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Explanation:

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m = 1.0 g = 1 \times 10^{-3} \ kg\\R = 1.3 \ \Omega\\\rho = 1.7 \times 10^{-8} \Omega m\\d = 8.96 \ g/cm^3 = 8960 kg/m^3

We divide the first equation by the second equation to get:

\frac{m}{R} = \frac{d A^2}{\rho}

A^2 = \frac{m \rho}{dR} \\\\A^2 = \frac { 1 \times 10^{-3} \times 1.7 \times 10^{-8}}{8960 \times 1.3}\\\\A^2 = 1.5 \times 10^{-15}\\\\ A= 3.8 \times 10^{-8}   \ m^2

Using this Area, we find the diameter of the wire:

D = \sqrt{\frac{4A}{\pi}}

D = \sqrt{\frac{4 \times 3.8 \times 10^{-8} }{\pi}}

D = 0.00011 \ m = 1.1 \times 10^ {-4} = 0.11 \ mm

To find the length, we multiply the two equations stated initially:

mR = d\rho l^2\\\\l^2 = \frac{mR}{d\rho} \\\l^2 = \frac {1.0 \times 10^{-3} \times 1.3}{8960 \times 1.7\times 10^{-8}}

l^2 = 8.534\\l =   2.92 \ m

8 0
3 years ago
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Paraphin [41]

Answer:

 c = 5 m

Explanation:

this exercise you want to divide the rectangular room into two triangular rooms

                 

the area of ​​triangles is

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this is the length of the curtain

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4 years ago
When driving across Death Valley in the summertime, it is recommended that you release some air from your tires before making th
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3 years ago
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Refrigerant-134a enters a compressor at 180 kPa as a saturated vapor with a flow rate of 0.35 m3/min and leaves at 900 kPa. The
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Answer:

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= 52.5°C

7 0
3 years ago
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