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  2. Wax thermostatic element - Wikipedia

    en.wikipedia.org/wiki/Wax_thermostatic_element

    The wax thermostatic element was invented in 1934 by Sergius Vernet (1899–1968). [1] Its principal application is in automotive thermostats used in the engine cooling system. The first applications in the plumbing and heating industries were in Sweden (1970) and in Switzerland (1971).

  3. Microcrystalline wax - Wikipedia

    en.wikipedia.org/wiki/Microcrystalline_wax

    The melted wax can be cast to make multiple copies that are further carved with details. Jewelry suppliers sell wax molded into the basic forms of rings as well as details that can be heat welded together and tubes and sheets for cutting and building the wax models. Rings may be attached to a wax "tree" so that many can be cast in one pouring.

  4. Ceramic engineering - Wikipedia

    en.wikipedia.org/wiki/Ceramic_engineering

    Simulation of the outside of the Space Shuttle as it heats up to over 1,500 °C (2,730 °F) during re-entry into the Earth's atmosphere Bearing components made from 100% silicon nitride Si 3 N 4 Ceramic bread knife. Ceramic engineering is the science and technology of creating objects from inorganic, non-metallic materials. This is done either ...

  5. The Pros and Cons of Electric Cars - AOL

    www.aol.com/pros-cons-electric-cars-132500463.html

    The Pros and Cons of Electric Cars. Brendan McAleer. September 29, 2022 at 9:25 AM ... Pros and Cons of Partial Electrification. PRO: Hybrids deliver better fuel economy without lifestyle changes.

  6. Gas vs. Electric Cars: Pros and Cons of Each - AOL

    www.aol.com/gas-vs-electric-cars-pros-170000149.html

    Gas cars also refuel more quickly than even the fastest-charging EVs, reducing downtime and overall trip length on longer journeys.Fixing a gas car tends to be less expensive as well, despite the ...

  7. Ceramic engine - Wikipedia

    en.wikipedia.org/wiki/Ceramic_engine

    A ceramic engine is an internal combustion engine made from specially engineered ceramic materials. Ceramic engines allow for the compression and expansion of gases at extremely high temperatures without loss of heat or engine damage. [1] Proof-of-concept ceramic engines were popularized by successful studies in the early 1980s and 1990s.

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