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  • An X-ray of an energy efficient light bulb.
    energy-bulb1blue.jpg
  • An X-ray of an energy efficient light bulb.
    energy-bulb1blue.tif
  • An X-ray of an energy efficient light bulb.
    energy-bulb1blue.jpg
  • X-ray of an energy efficient light bulb.
    K11-xbulbsc2.jpg
  • X-ray of an energy efficient light bulb.
    K11-xbulbsc1.jpg
  • X-ray of an energy efficient light bulb. This bulb uses Light emmitting diode (LED) technology.
    K15X-newLED002D.jpg
  • X-ray of an energy efficient light bulb. This bulb uses Light emmitting diode (LED) technology.
    K15X-newLED002C.jpg
  • X-ray of an energy efficient light bulb. This bulb uses Light emmitting diode (LED) technology.
    K15X-newLED002B.jpg
  • X-ray of an energy efficient light bulb. This bulb uses Light emmitting diode (LED) technology.
    K15X-newLED002.jpg
  • X-ray of an energy efficient light bulb. This buld uses Light emmitting diode (LED) technology. THis is a false color x-ray.
    K14X-LED-bulb01C.jpg
  • X-ray of an energy efficient light bulb.
    K12X-light3A.jpg
  • An energy efficient light bulb.
    K12X-light3-optical.jpg
  • X-ray of an energy efficient light bulb. This buld uses Light emmitting diode (LED) technology. THis is a false color x-ray.
    K14X-LED-bulb01.jpg
  • X-ray of an energy efficient light bulb.
    K12X-light3comboB.jpg
  • X-ray of an energy efficient light bulb. This buld uses Light emmitting diode (LED) technology. THis is a false color x-ray.
    K14X-LED-bulb01D.jpg
  • X-ray of an energy efficient light bulb. This buld uses Light emmitting diode (LED) technology. THis is a false color x-ray.
    K14X-LED-bulb01B.jpg
  • X-ray of an energy efficient light bulb.
    K12X-light3combo.jpg
  • X-ray of an energy efficient light bulb.
    K12X-light3B.jpg
  • X-Ray of Grape Hyacinth (Muscari armeniacum)
    K11X-grapehy1.jpg
  • A light bulb breaking as it hits the floor.  Photographed with high-speed flash of a duration of 1/1,000,000th of a second.  This light bulb contains trace amounts of mercury, and can represent a toxic waste when it is disposed of..
    K080126Smash0025A.jpg
  • An x ray of a neon light bulb.  THis type of bulb is often used for spectrum experiments.
    x07-bulb12.jpg
  • A light bulb breaking as it hits the floor.  Photographed with high-speed flash of a duration of 1/1,000,000th of a second.  .
    K080127Smash0044A.jpg
  • A light bulb breaking as it hits the floor.  Photographed with high-speed flash of a duration of 1/1,000,000th of a second.  .
    K080126Smash0016A.jpg
  • Schlieren image of a hot light bulb.  The schlieren images identifies areas of different temperature by using the change in the index of refraction of a fluid due to a change in temperature.
    K07Sch1327.jpg
  • An x ray of a projection light bulb.
    x07-reflector-bulb.jpg
  • X-Ray of a light bulb with broken filliment.
    x07-lightbulb1.jpg
  • Schlieren image of a hot light bulb.  The schlieren images identifies areas of different temperature by using the change in the index of refraction of a fluid due to a change in temperature.
    K07Sch1346.jpg
  • An X-ray of a modern LED light bulb reveals the structure of the internal electronics. This design is very energy efficient.
    K19X-LEDbulb-TWIST5C.jpg
  • An X-ray of a modern LED light bulb reveals the structure of the internal electronics. This design is very energy efficient.
    K19X-LEDbulb-TWIST5A.jpg
  • This is an x-ray of a hand crank Flashlight.  The flashlight has no batteries and is activated by pressing the handle.  The handle is connected to a generator that creates electricity for the light bulb.  This is an example of an environmentally friendly design.  The flashlight does not consume chemical batteries.
    handcrank-flashlightFC.jpg
  • Thermogram of an energy efficient fluorescent light.  These lights use less energy than incandescent lights and operate at a cooler temperature.  The different colors represent different temperatures on the object. The lightest colors are the hottest temperatures, while the darker colors represent a cooler temperature.  Thermography uses special cameras that can detect light in the far-infrared range of the electromagnetic spectrum (900?14,000 nanometers or 0.9?14 µm) and creates an  image of the objects temperature..
    ir07-1643.jpg
  • Thermogram of an energy efficient fluorescent light.  These lights use less energy than incandescent lights and operate at a cooler temperature.  The different colors represent different temperatures on the object. The lightest colors are the hottest temperatures, while the darker colors represent a cooler temperature.  Thermography uses special cameras that can detect light in the far-infrared range of the electromagnetic spectrum (900?14,000 nanometers or 0.9?14 µm) and creates an  image of the objects temperature..
    ir07-1652.jpg
  • Thermogram of an energy efficient fluorescent light.  These lights use less energy than incandescent lights and operate at a cooler temperature.  The different colors represent different temperatures on the object. The lightest colors are the hottest temperatures, while the darker colors represent a cooler temperature.  Thermography uses special cameras that can detect light in the far-infrared range of the electromagnetic spectrum (900?14,000 nanometers or 0.9?14 µm) and creates an  image of the objects temperature..
    ir07-1641.jpg
  • Thermogram of an energy efficient fluorescent light.  These lights use less energy than incandescent lights and operate at a cooler temperature.  The different colors represent different temperatures on the object. The lightest colors are the hottest temperatures, while the darker colors represent a cooler temperature.  Thermography uses special cameras that can detect light in the far-infrared range of the electromagnetic spectrum (900?14,000 nanometers or 0.9?14 µm) and creates an  image of the objects temperature..
    ir07-1654.jpg
  • X-Ray of the  Hybrid hyacinth (Hyacinthus sp.) .
    K11X-hyacinth01.jpg
  • X-ray of a gladiola flower.  This low power x-ray shows all the structure of the plants flower.
    gladsneg.jpg
  • X-Ray of the  Hybrid hyacinth (Hyacinthus sp.) .
    K11X-hyacinth02.jpg
  • A Kodak Reflex Synchro model camera with flash bulb is shown in X-ray.
    K19X-Kodak-Reflex-Synchro-011A.jpg
  • Garrett-watersplash-color-calibrated.jpg
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Ted Kinsman

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