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  2. Smart glass - Wikipedia

    en.wikipedia.org/wiki/Smart_glass

    Smart glass, also known as switchable glass, dynamic glass, and smart-tinting glass, is a type of glass that can change its optical properties, becoming opaque or tinted, in response to electrical or thermal signals.

  3. Electrochromic device - Wikipedia

    en.wikipedia.org/wiki/Electrochromic_device

    Windows have both direct and indirect impacts on building energy consumption. Electrochromic windows, or the application of electrochromic switchable glazes deposited on to windows, also known as smart windows, are a technology for energy efficiency used in buildings by controlling the amount of sunlight passing through. [4]

  4. Electrochromism - Wikipedia

    en.wikipedia.org/wiki/Electrochromism

    Redox couple for a viologen.The 2+ species on the left is colorless, and the 1+ species on the right is deep blue or red, depending on the identity of R. [1] Electrochromism is a phenomenon in which a material displays changes in color or opacity in response to an electrical stimulus. [2]

  5. Optical head-mounted display - Wikipedia

    en.wikipedia.org/wiki/Optical_head-mounted_display

    A man controls Google Glass using the touchpad built into the side of the device.. An optical head-mounted display (OHMD) is a wearable device that has the capability of reflecting projected images as well as allowing the user to see through it.

  6. Factory tint - Wikipedia

    en.wikipedia.org/wiki/Factory_tint

    Unlike window film, privacy glass is a pigment within the glass that is installed during the manufacturing process. There is no way to remove the tint from the glass except to replace the glass with untinted glass. The only alternative to getting the same benefits of window film is to install window film over the factory tint.

  7. Transparent conducting film - Wikipedia

    en.wikipedia.org/wiki/Transparent_conducting_film

    Doped metal oxides for use as transparent conducting layers in photovoltaic devices are typically grown on a glass substrate. This glass substrate, apart from providing a support that the oxide can grow on, has the additional benefit of blocking most infrared wavelengths greater than 2 μm for most silicates, and converting it to heat in the glass layer.

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