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Solve the all parts of given question:
Question: Light passes through a diffraction grating with a slit spacing of 0.001 mm. A viewing screen is 100 cm behind the grating.
A- If the light is blue, with a wavelength of 450 nm, at about what distance from the center of the interference pattern will the first-order maximum appear?
Please show me how you do the above question.
consider a mass connected to 4 identical springs. each spring has spring constant k and unstretched length l0 and the
A wave pulse travels down a slinky. The mass of the slinky is m = 0.86 kg and is initially stretched to a length L = 7.8 m. What is the average speed of a piece of the slinky
the edges of a cube consists of equal resistors of resistance r which are joined at the corners. let a battery be
a 2.0 nc charge is placed on the x-axis at x=-3.0cm another 2.0nc charge is placed on the x-axis at x=3.0cm, What is the potential at the origin
Two equal length strips of aluminum and steel are heated. Which expands more? How much more - that is, by what factor is one expansion greater than the other?
What are the lowest and the highest frequencies. calculate the acceleration of the crate.
Water is ejected from a garden hose of radius 1.07 cm at a speed of 5.31m/s. Find the flow rate through the hose.
A 0.15 kg meter stick is balanced with the pivot point at the 18 cm mark. A weight of 3.2N is hung from the shorter end. Where should the weight be positioned in order to balance the meter stick?
A liquid of density 1.39 × 103 kg/m3 flows steadily during a pipe of varying diameter and height. At location 1 along the pipe the flow speed is 9.35 m/s and the pipe diameter is 12.9 cm.
Define the velocity and the potential energy of an object briefly.
if 23.6 g of gold is deposited on the negative electrode of an electrolytic cell in a period of 2.99 hours then what is
A certain fluid has a density of 1080 kg/m3 and is observed to rise to a height of 1.8 cm in a 1.0-mm-diameter tube. Calculate the surface tension of the fluid
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