gas-forming admix - significado y definición. Qué es gas-forming admix
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Qué (quién) es gas-forming admix - definición

Image-forming; Image-forming system; Image forming device; Image-forming device; Image forming optics

Forming (metalworking)         
METALWORKING PROCESS OF FASHIONING PARTS AND OBJECTS THROUGH MECHANICAL DEFORMATION; THE WORKPIECE IS RESHAPED WITHOUT ADDING OR REMOVING MATERIAL
Metal forming; Metal Forming; Shaping (metalworking)
Forming, metal forming, is the metalworking process of fashioning metal parts and objects through mechanical deformation; the workpiece is reshaped without adding or removing material, and its mass remains unchanged. Forming operates on the materials science principle of plastic deformation, where the physical shape of a material is permanently deformed.
Hot metal gas forming         
Hot metal gas forming (HMGF) is a method of die forming in which a metal tube is heated to a pliable state, near to but below its melting point, then pressurized internally by a gas in order to form the tube outward into the shape defined by an enclosing die cavity. The high temperatures allow the metal to elongate, or stretch, to much greater degrees without rupture than are possible in previously utilized cold and warm forming methods.
gas range         
  • A gas stove in a San Francisco apartment, 1975.
  • blue]] [[flame]] colour, meaning complete combustion, as with other gas appliances.
  • Early gas stoves produced by Windsor. From ''[[Mrs Beeton's Book of Household Management]]'', 1904.
  • Electric ignition spark
  • A built-in Japanese three burner gas stove with a fish grill. Note the thermistor buttons protruding from the gas burners, which cut off the flame if the temperature exceeds 250{{nbsp}}°C.
STOVE THAT IS FUELED BY COMBUSTIBLE GAS
Gas oven; Gas stoves; Gas range; Gas cooker; Cook with Gas; Cook with gas; Cook Gas; Gas hob; Natural gas stove
n. to light, turn on a gas range

Wikipedia

Image-forming optical system

In optics, an image-forming optical system is a system capable of being used for imaging. The diameter of the aperture of the main objective is a common criterion for comparison among optical systems, such as large telescopes.

The two traditional optical systems are mirror-systems (catoptrics) and lens-systems (dioptrics). However, in the late twentieth century, optical fiber was introduced as a technology for transmitting images over long distances. Catoptrics and dioptrics have a focal point that concentrates light onto a specific point, while optical fiber the transfer of an image from one plane to another without the need for an optical focus.

Isaac Newton is reported to have designed what he called a catadioptrical phantasmagoria, which can be interpreted to mean an elaborate structure of both mirrors and lenses.

Catoptrics and optical fiber have no chromatic aberration, while dioptrics need to have this error corrected. Newton believed that such correction was impossible, because he thought the path of the light depended only on its color. In 1757 John Dollond was able to create an achromatised dioptric, which was the forerunner of the lenses used in all popular photographic equipment today.

Lower-energy X-Rays are the highest energy electromagnetic radiation that can be formed into an image, using a Wolter telescope. There are three types of Wolter telescopes Near infrared is typically the longest wavelength that are handled optically, such as in some large telescopes.