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Nouveau texte de la page, après la modification (new_wikitext) | <br>The distance between two points in the Gaussian distribution that has intensities of 1/e 2 is called the diameter of a laser beam. However, not all lasers have the same beam size. Certain lasers begin by forming a coherent beam and an injection-seeder is utilized to focus the laser's energies to a lesser extent than is otherwise feasible. The strength of the source is what determines the size of the laser and that's why classes 3B and class 4R have different.<br><br><br>The laser is placed over a thin fuel pellet to achieve the best intensity distribution. The laser beam is heated by the fuel and causes it to melt. It is basically an imitation of the conditions that exist deep inside the stars. This process produces enormous quantities of energy. California's Lawrence Livermore National Laboratory developed the technology. These are the major benefits of a power source based on lasers Ability to store renewable energy sources.<br><br><br>A laser emits light in the narrow wavelength range. Lasers emit light at a narrow frequency, the most prevalent center frequency is 1064 nm. The material used to create the laser determines the wavelength of the laser light. For [http://to.m.m.y.bye.1.2@srv5.cineteck.net/phpinfo/?a%5B%5D=%3Ca+href%3Dhttp%3A%2F%2Fyf0d0l56lls-9rw.3pco.ourwebpicvip.comn.3%40www.telecom.uu.ru%2F%3Fa%255B%255D%3D%253Ca%2Bhref%253Dhttps%253A%252F%252Fwww.laserpointerstore.com%252Fcategory%252Flaser-knowledge%252F%253E500mw%2Blaser%253C%252Fa%253E%253Cmeta%2Bhttp-equiv%253Drefresh%2Bcontent%253D0%253Burl%253Dhttps%253A%252F%252Fwww.laserpointerstore.com%252Fproducts%252Fthor-m2-end-cap%252F%2B%252F%253E%3Eusb+laser+303%3C%2Fa%3E%3Cmeta+http-equiv%3Drefresh+content%3D0%3Burl%3Dhttps%3A%2F%2Fonlinetraining.nmcadv.org%2Fblog%2Findex.php%3Fentryid%3D44249+%2F%3E usb laser 303] example, a Neodymium-Yttrium-Algarnet (Nd:YAG) crystal produces a red-orange light with a wavelength of 1064 nm. The most common uses for CO2 lasers include welding and cutting.<br><br><br>Lasers are a very powerful instrument. The laser has a large power density and narrow divergence, and is able to melt and vaporize substances. This makes it extremely valuable in science. There are many ways in which a laser can be employed. The most popular use is cutting. After the process is finished it might be able to help with global warming. This is a crucial step in developing energy solutions. It is possible to be part of the next wave of green energy.<br><br><br>In the laser, electrons get excited. They are the ones responsible for generating the light. Their orbits change as they're exposed to electric, which releases photons. Nuclear fusion can occur when they are exposed to electromagnetic radiation or electrical fields. In this case the laser could create particles of high energy. This is known as a "laser". It's an energy-rich material that generates electricity.<br><br><br>Lasers are a powerful source of light that emits the form of a narrow beam. Because its energy is focused on a small area, it's referred to"laser "laser" and is an extremely strong source of light. The power of a beam's optics is concentrated within a narrow area. A high-quality laser has the highest spatial coherence which means that the beam is collimated with minimal divergence.<br><br><br>A laser's coherence and its small size make it an extremely powerful light source. The intensity of a beam depends on its distance from its source, and it is vital to remember that this can be very high or low. Because of its diffraction-limited characteristics this beam is extremely efficient and can be directed at tiny points. Its diffraction-limited properties make it a great candidate for use in a solar power module.<br><br><br>The wavelength of the laser beam is determined by the material that is used to make it. A semiconductor, such as ruby, is composed of many components. One laser component is utilized for a single-mode application, whereas a multimode device uses multimode lasers to serve multiple applications. The output of a multimode device a laser. Its high frequency allows it to be placed anywhere on the Earth and can be positioned within the sphere of the star.<br><br><br>Laser beams are extremely strong and are able to be utilized in solar energy units. The laser beam's rays can be focused over a broad spectrum, which means that it can be utilized to generate electricity from renewable sources. The heat generated by a hybrid system is more efficient than a single-mode device, and is much more efficient than a separate source of power. A hybrid system is easier to build than a traditional solar panel.<br><br><br>If the laser beam is in phase, its output is coherent. It is very coherent and has low divergence. Lasers with high power can be utilized for a myriad of applications such as entertainment to medical equipment. They also are used for machines vision as well as dynamic measurements. If one wears an eyepiece with a [https://pharmento.com/blog/index.php?entryid=317338 usb laser 303], it can be used to view objects. The strength of the beam is limited by the size of the lens.<br><br> |
Diff unifié des changements faits lors de la modification (edit_diff) | @@ -1,1 +1,1 @@
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+<br>The distance between two points in the Gaussian distribution that has intensities of 1/e 2 is called the diameter of a laser beam. However, not all lasers have the same beam size. Certain lasers begin by forming a coherent beam and an injection-seeder is utilized to focus the laser's energies to a lesser extent than is otherwise feasible. The strength of the source is what determines the size of the laser and that's why classes 3B and class 4R have different.<br><br><br>The laser is placed over a thin fuel pellet to achieve the best intensity distribution. The laser beam is heated by the fuel and causes it to melt. It is basically an imitation of the conditions that exist deep inside the stars. This process produces enormous quantities of energy. California's Lawrence Livermore National Laboratory developed the technology. These are the major benefits of a power source based on lasers Ability to store renewable energy sources.<br><br><br>A laser emits light in the narrow wavelength range. Lasers emit light at a narrow frequency, the most prevalent center frequency is 1064 nm. The material used to create the laser determines the wavelength of the laser light. For [http://to.m.m.y.bye.1.2@srv5.cineteck.net/phpinfo/?a%5B%5D=%3Ca+href%3Dhttp%3A%2F%2Fyf0d0l56lls-9rw.3pco.ourwebpicvip.comn.3%40www.telecom.uu.ru%2F%3Fa%255B%255D%3D%253Ca%2Bhref%253Dhttps%253A%252F%252Fwww.laserpointerstore.com%252Fcategory%252Flaser-knowledge%252F%253E500mw%2Blaser%253C%252Fa%253E%253Cmeta%2Bhttp-equiv%253Drefresh%2Bcontent%253D0%253Burl%253Dhttps%253A%252F%252Fwww.laserpointerstore.com%252Fproducts%252Fthor-m2-end-cap%252F%2B%252F%253E%3Eusb+laser+303%3C%2Fa%3E%3Cmeta+http-equiv%3Drefresh+content%3D0%3Burl%3Dhttps%3A%2F%2Fonlinetraining.nmcadv.org%2Fblog%2Findex.php%3Fentryid%3D44249+%2F%3E usb laser 303] example, a Neodymium-Yttrium-Algarnet (Nd:YAG) crystal produces a red-orange light with a wavelength of 1064 nm. The most common uses for CO2 lasers include welding and cutting.<br><br><br>Lasers are a very powerful instrument. The laser has a large power density and narrow divergence, and is able to melt and vaporize substances. This makes it extremely valuable in science. There are many ways in which a laser can be employed. The most popular use is cutting. After the process is finished it might be able to help with global warming. This is a crucial step in developing energy solutions. It is possible to be part of the next wave of green energy.<br><br><br>In the laser, electrons get excited. They are the ones responsible for generating the light. Their orbits change as they're exposed to electric, which releases photons. Nuclear fusion can occur when they are exposed to electromagnetic radiation or electrical fields. In this case the laser could create particles of high energy. This is known as a "laser". It's an energy-rich material that generates electricity.<br><br><br>Lasers are a powerful source of light that emits the form of a narrow beam. Because its energy is focused on a small area, it's referred to"laser "laser" and is an extremely strong source of light. The power of a beam's optics is concentrated within a narrow area. A high-quality laser has the highest spatial coherence which means that the beam is collimated with minimal divergence.<br><br><br>A laser's coherence and its small size make it an extremely powerful light source. The intensity of a beam depends on its distance from its source, and it is vital to remember that this can be very high or low. Because of its diffraction-limited characteristics this beam is extremely efficient and can be directed at tiny points. Its diffraction-limited properties make it a great candidate for use in a solar power module.<br><br><br>The wavelength of the laser beam is determined by the material that is used to make it. A semiconductor, such as ruby, is composed of many components. One laser component is utilized for a single-mode application, whereas a multimode device uses multimode lasers to serve multiple applications. The output of a multimode device a laser. Its high frequency allows it to be placed anywhere on the Earth and can be positioned within the sphere of the star.<br><br><br>Laser beams are extremely strong and are able to be utilized in solar energy units. The laser beam's rays can be focused over a broad spectrum, which means that it can be utilized to generate electricity from renewable sources. The heat generated by a hybrid system is more efficient than a single-mode device, and is much more efficient than a separate source of power. A hybrid system is easier to build than a traditional solar panel.<br><br><br>If the laser beam is in phase, its output is coherent. It is very coherent and has low divergence. Lasers with high power can be utilized for a myriad of applications such as entertainment to medical equipment. They also are used for machines vision as well as dynamic measurements. If one wears an eyepiece with a [https://pharmento.com/blog/index.php?entryid=317338 usb laser 303], it can be used to view objects. The strength of the beam is limited by the size of the lens.<br><br>
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Lignes ajoutées lors de la modification (added_lines) | <br>The distance between two points in the Gaussian distribution that has intensities of 1/e 2 is called the diameter of a laser beam. However, not all lasers have the same beam size. Certain lasers begin by forming a coherent beam and an injection-seeder is utilized to focus the laser's energies to a lesser extent than is otherwise feasible. The strength of the source is what determines the size of the laser and that's why classes 3B and class 4R have different.<br><br><br>The laser is placed over a thin fuel pellet to achieve the best intensity distribution. The laser beam is heated by the fuel and causes it to melt. It is basically an imitation of the conditions that exist deep inside the stars. This process produces enormous quantities of energy. California's Lawrence Livermore National Laboratory developed the technology. These are the major benefits of a power source based on lasers Ability to store renewable energy sources.<br><br><br>A laser emits light in the narrow wavelength range. Lasers emit light at a narrow frequency, the most prevalent center frequency is 1064 nm. The material used to create the laser determines the wavelength of the laser light. For [http://to.m.m.y.bye.1.2@srv5.cineteck.net/phpinfo/?a%5B%5D=%3Ca+href%3Dhttp%3A%2F%2Fyf0d0l56lls-9rw.3pco.ourwebpicvip.comn.3%40www.telecom.uu.ru%2F%3Fa%255B%255D%3D%253Ca%2Bhref%253Dhttps%253A%252F%252Fwww.laserpointerstore.com%252Fcategory%252Flaser-knowledge%252F%253E500mw%2Blaser%253C%252Fa%253E%253Cmeta%2Bhttp-equiv%253Drefresh%2Bcontent%253D0%253Burl%253Dhttps%253A%252F%252Fwww.laserpointerstore.com%252Fproducts%252Fthor-m2-end-cap%252F%2B%252F%253E%3Eusb+laser+303%3C%2Fa%3E%3Cmeta+http-equiv%3Drefresh+content%3D0%3Burl%3Dhttps%3A%2F%2Fonlinetraining.nmcadv.org%2Fblog%2Findex.php%3Fentryid%3D44249+%2F%3E usb laser 303] example, a Neodymium-Yttrium-Algarnet (Nd:YAG) crystal produces a red-orange light with a wavelength of 1064 nm. The most common uses for CO2 lasers include welding and cutting.<br><br><br>Lasers are a very powerful instrument. The laser has a large power density and narrow divergence, and is able to melt and vaporize substances. This makes it extremely valuable in science. There are many ways in which a laser can be employed. The most popular use is cutting. After the process is finished it might be able to help with global warming. This is a crucial step in developing energy solutions. It is possible to be part of the next wave of green energy.<br><br><br>In the laser, electrons get excited. They are the ones responsible for generating the light. Their orbits change as they're exposed to electric, which releases photons. Nuclear fusion can occur when they are exposed to electromagnetic radiation or electrical fields. In this case the laser could create particles of high energy. This is known as a "laser". It's an energy-rich material that generates electricity.<br><br><br>Lasers are a powerful source of light that emits the form of a narrow beam. Because its energy is focused on a small area, it's referred to"laser "laser" and is an extremely strong source of light. The power of a beam's optics is concentrated within a narrow area. A high-quality laser has the highest spatial coherence which means that the beam is collimated with minimal divergence.<br><br><br>A laser's coherence and its small size make it an extremely powerful light source. The intensity of a beam depends on its distance from its source, and it is vital to remember that this can be very high or low. Because of its diffraction-limited characteristics this beam is extremely efficient and can be directed at tiny points. Its diffraction-limited properties make it a great candidate for use in a solar power module.<br><br><br>The wavelength of the laser beam is determined by the material that is used to make it. A semiconductor, such as ruby, is composed of many components. One laser component is utilized for a single-mode application, whereas a multimode device uses multimode lasers to serve multiple applications. The output of a multimode device a laser. Its high frequency allows it to be placed anywhere on the Earth and can be positioned within the sphere of the star.<br><br><br>Laser beams are extremely strong and are able to be utilized in solar energy units. The laser beam's rays can be focused over a broad spectrum, which means that it can be utilized to generate electricity from renewable sources. The heat generated by a hybrid system is more efficient than a single-mode device, and is much more efficient than a separate source of power. A hybrid system is easier to build than a traditional solar panel.<br><br><br>If the laser beam is in phase, its output is coherent. It is very coherent and has low divergence. Lasers with high power can be utilized for a myriad of applications such as entertainment to medical equipment. They also are used for machines vision as well as dynamic measurements. If one wears an eyepiece with a [https://pharmento.com/blog/index.php?entryid=317338 usb laser 303], it can be used to view objects. The strength of the beam is limited by the size of the lens.<br><br>
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Horodatage Unix de la modification (timestamp) | 1679788437 |