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Diffraction grating could be used as the dispersive element because of the ability of light to be broken according to various wavelength.

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Q: How diffraction grating could be used as the dispersive element?
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How can you tell what sort of gas is emitting light?

Diffract the light you see with a diffraction grating (a transparent material with microscopic lines cut into it). Each element has a distinctive pattern of bands of color when viewed through a diffraction grating. Compare what you see with known color patterns, keeping in mind that you could be viewing multiple elements.


What do you mean by transmission grating?

Grating is nothing but having many parallel slits or parallel reflectors. If slits are there then light could pass through and so it is named as transmission grating. Otherwise in case of reflection it is termed as reflecting grating. Any way in both the case diffraction phenomenon takes place.


What do you mean by transmission?

Grating is nothing but having many parallel slits or parallel reflectors. If slits are there then light could pass through and so it is named as transmission grating. Otherwise in case of reflection it is termed as reflecting grating. Any way in both the case diffraction phenomenon takes place.


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Not usually, but it could be an element of a set.


How could you use the diffraction of a laser beam by a slit to determine the wavelength of the laser light?

Students will determine the wavelength of a helium neon laser. Students will collect six different sets of measurements in this experiment and use these measurements to solve for the wavelength of the laser. Preparations: Put out one or sets of a laser, screen and two diffraction gratings for student use. The intent is to have the laser beam pass through a diffraction grating resuling in an interference pattern on the screen. Either the screen or the grating will need to be movable since each grating will be used three times at different distances from the screen. Decide ahead of time which object will be moveable. Each of the three distances should yield a clearly observable interference pattern. The photos on the following page show visual representations of the materials, setup, and interference patterns generated during the experiment. A graphic of the electromagnetic spectrum with wavelengths specified is also shown. Procedure: Have students record the diffraction grating lines (mm) and convert them into centimeters to determine the slit width (d). Students will also record the distance from grating to screen (L) and distance from a maximum bright spot to an adjacent maximum bright spot (x). Two different gratings are to be used at three different distances from the screen and measurements recorded. Students will then use these measurements to determine the wavelength of the laser. Connection to APOL Biocomplexity Project: Lasers are of many wavelengths and each type of laser has a particular application based on that wavelength. The lasers used in the APOL project are designed to give a final output of 4.3 x10-6 meters. This is in the mid-infrared range and is invisible to the eye. In this activity, a laser that has an output visible to the eye will be necessary. The He-Ne laser is the most common type of laser in the school environment. Solution: Most schools will use a standard red helium neon laser. The wavelength for this laser is 633 nanometers. Some schools may have access to helium neon lasers of different wavelengths. The results for those lasers should be as follows: Green: 543.5 nm, Orange: 612 nm, and yellow: 594 nm.


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Grating has a wide variety of uses. Grating is normally placed over open holes where it would be dangerous to leave the orifice open, such as water drains or sewage systems. Grating needs to be strong enough to support the wear and tear of everyday use, and it needs to be durable enough to last several years. Fiberglass grating is the best choice for most of these situations, as fiberglass is one of the most weather resistant materials on the planet and is still strong enough to support several tons of force. While fiberglass is the obvious material for the job, there are still several different types of grating to choose from. Depending on the area that is to be grated a lighter and less expensive fiberglass grating could be used as opposed to a heavier, more expensive design. If the sole purpose of the grate is to prevent garbage from getting into a drainage system, then a light fiberglass grate with little reinforcement should suffice for the job at hand. If the grate is to be placed over the opening of a sewer system where there might be traffic passing over it, then a rough fiberglass grate with several reinforcement bars should be used. Different manufacturers produce different varieties of fiberglass grating. While they might have different names for their designs, most will have three different levels of grates. The cheapest will be the lighter and thinner fiberglass grating. These grates are rarely reinforced and provide an economical solution when strength isn’t needed. The medium grating is perhaps the best value in terms of durability and strength, and can even be used in commercial applications. The heaviest of the fiberglass grating is almost used exclusively for construction and city applications. These grates can support several tons of weight and will last the longest. While steel might be stronger than fiberglass, it will not last nearly as long. Fiberglass grating can last decades, where a steel grating will need to be replaced after a few years due to corrosion. When choosing the right fiberglass grating, the most important aspect to keep in mind is that there is likely a grate that will meet your specialized needs.


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What are some common uses of Diffraction?

Without refraction of light eyes cannot see and eye sight problems could not be rectified. Camera cannot function. Pojector fails to magnify the image and projects it on the screen. Optical fibre could not have been made into reality.