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#thermalir — Public Fediverse posts

Live and recent posts from across the Fediverse tagged #thermalir, aggregated by home.social.

  1. Repost from MinCup24: Antimony Tin Oxide scatters the wavelengths of infrared light emitted by warm humans. The antimony is often sourced from . This material is being used to create fabric infrared invisibility cloaks!

    from Jeong et al. (2020) NPG Asia Materials

  2. Repost from MinCup24: Antimony Tin Oxide scatters the wavelengths of infrared light emitted by warm humans. The antimony is often sourced from #stibnite. This material is being used to create fabric infrared invisibility cloaks!

    from Jeong et al. (2020) NPG Asia Materials

    #MinCup25 #Antimony #ThermalInfraRed #ThermalIR

  3. Repost from MinCup24: Antimony Tin Oxide scatters the wavelengths of infrared light emitted by warm humans. The antimony is often sourced from #stibnite. This material is being used to create fabric infrared invisibility cloaks!

    from Jeong et al. (2020) NPG Asia Materials

    #MinCup25 #Antimony #ThermalInfraRed #ThermalIR

  4. Repost from MinCup24: Antimony Tin Oxide scatters the wavelengths of infrared light emitted by warm humans. The antimony is often sourced from #stibnite. This material is being used to create fabric infrared invisibility cloaks!

    from Jeong et al. (2020) NPG Asia Materials

    #MinCup25 #Antimony #ThermalInfraRed #ThermalIR

  5. Repost from MinCup24: Antimony Tin Oxide scatters the wavelengths of infrared light emitted by warm humans. The antimony is often sourced from #stibnite. This material is being used to create fabric infrared invisibility cloaks!

    from Jeong et al. (2020) NPG Asia Materials

    #MinCup25 #Antimony #ThermalInfraRed #ThermalIR

  6. A cold cup filled with warm water imaged using a #Melexis MLX90640 from #Sparkfun. Colors are scaled to span the minimum and maximum temperatures (degrees Celsius) and rescale dynamically. #infrared #thermalIR #imaging

  7. A cold cup filled with warm water imaged using a MLX90640 from . Colors are scaled to span the minimum and maximum temperatures (degrees Celsius) and rescale dynamically.

  8. A cold cup filled with warm water imaged using a #Melexis MLX90640 from #Sparkfun. Colors are scaled to span the minimum and maximum temperatures (degrees Celsius) and rescale dynamically. #infrared #thermalIR #imaging

  9. A cold cup filled with warm water imaged using a #Melexis MLX90640 from #Sparkfun. Colors are scaled to span the minimum and maximum temperatures (degrees Celsius) and rescale dynamically. #infrared #thermalIR #imaging

  10. A cold cup filled with warm water imaged using a #Melexis MLX90640 from #Sparkfun. Colors are scaled to span the minimum and maximum temperatures (degrees Celsius) and rescale dynamically. #infrared #thermalIR #imaging

  11. Room temperature objects glow with their own light (at (~10-15 micron wavelengths). If imaged objects are the same temperature, there is very little contrast and the objects are invisible! #Melexis MLX90640 from #Sparkfun. Colors are scaled to span the minimum and maximum temperatures. #infrared #thermalIR #imaging

  12. Room temperature objects glow with their own light (at (~10-15 micron wavelengths). If imaged objects are the same temperature, there is very little contrast and the objects are invisible! MLX90640 from . Colors are scaled to span the minimum and maximum temperatures.

  13. Room temperature objects glow with their own light (at (~10-15 micron wavelengths). If imaged objects are the same temperature, there is very little contrast and the objects are invisible! #Melexis MLX90640 from #Sparkfun. Colors are scaled to span the minimum and maximum temperatures. #infrared #thermalIR #imaging

  14. Room temperature objects glow with their own light (at (~10-15 micron wavelengths). If imaged objects are the same temperature, there is very little contrast and the objects are invisible! #Melexis MLX90640 from #Sparkfun. Colors are scaled to span the minimum and maximum temperatures. #infrared #thermalIR #imaging