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  • This image of a man over inflating a balloon was taken with a high speed flash system. The motion is effectively frozen in time due to the short duration of the flash (1/20,000 th of a second). The balloon was filled with a few milliliters of water before it was inflated. When the balloon is popped, the gas quickly expands and cools. This cooling converts the water vapor in the balloon into suspended water droplets which can be seen as a cloud.
    tedk0025.jpg
  • This image is part of a sequence where a man over inflates a balloon until it burst.  The image was taken with a high speed flash system. The motion is effectively frozen in time due to the short duration of the flash (1/20,000 th of a second). The balloon was filled with a few milliliters of water before it was inflated. When the balloon is popped, the gas quickly expands and cools. This cooling converts the water vapor in the balloon into suspended water droplets which can be seen as a cloud.
    K11-hsballoon6873A.jpg
  • This image is part of a sequence where a man over inflates a balloon until it burst.  The image was taken with a high speed flash system. The motion is effectively frozen in time due to the short duration of the flash (1/20,000 th of a second). The balloon was filled with a few milliliters of water before it was inflated. When the balloon is popped, the gas quickly expands and cools. This cooling converts the water vapor in the balloon into suspended water droplets which can be seen as a cloud.
    K11-hsballoon6863A.jpg
  • This image is part of a sequence where a man over inflates a balloon until it burst.  The image was taken with a high speed flash system. The motion is effectively frozen in time due to the short duration of the flash (1/20,000 th of a second). The balloon was filled with a few milliliters of water before it was inflated. When the balloon is popped, the gas quickly expands and cools. This cooling converts the water vapor in the balloon into suspended water droplets which can be seen as a cloud.
    K11-hsballoon6826.JPG
  • A black belt karate expert performs a punch. A special stroboscopic camera records the motion.  The record of the motion can be analyzed to show both the timing and range of the motion.  This type of image is very important in the science of biomechanics.both the timing and range of the motion.  This type of image is very important in the science of biomechanics.
    karate8314.jpg
  • A black belt karate expert performs a kick. A special stroboscopic camera records the motion.  The record of the motion can be analyzed to show both the timing and range of the motion.  This type of image is very important in the science of biomechanics.
    karate8329.jpg
  • False Color X-ray of a snapping turtle (Chelydra serpentina). This particular turtle is a female and is full of eggs.  This specimen was collected after it was killed by a car – look closely at the x-ray and you can see extensive shell damage as well as a number of unlaid eggs. This freshwater turtle is found in wetlands throughout North America, from southern Canada to the Gulf of Mexico. An adult can have a shell length of around 45 centimeters.  They feed on whatever they can catch in their powerful beaks, including fish, birds, mammals, amphibians and carrion.
    K14X-Snapper-Turtle01C.jpg
  • False Color X-ray of a snapping turtle (Chelydra serpentina). This particular turtle is a female and is full of eggs.  This specimen was collected after it was killed by a car – look closely at the x-ray and you can see extensive shell damage as well as a number of unlaid eggs. This freshwater turtle is found in wetlands throughout North America, from southern Canada to the Gulf of Mexico. An adult can have a shell length of around 45 centimeters.  They feed on whatever they can catch in their powerful beaks, including fish, birds, mammals, amphibians and carrion.
    K14X-Snapper-Turtle01B.jpg
  • False Color X-ray of a snapping turtle (Chelydra serpentina). This particular turtle is a female and is full of eggs.  This specimen was collected after it was killed by a car – look closely at the x-ray and you can see extensive shell damage as well as a number of unlaid eggs. This freshwater turtle is found in wetlands throughout North America, from southern Canada to the Gulf of Mexico. An adult can have a shell length of around 45 centimeters.  They feed on whatever they can catch in their powerful beaks, including fish, birds, mammals, amphibians and carrion.
    K14X-Snapper-Turtle01.jpg
  • Scanning electron microscope image of a  mosquito larva (family Culicidae). The larva hatches and lives in water until it attains its adult form. It breathes air through its siphon tube (upper right), This image represents a field of view of 2 mm...
    K08SEMMosquito-larva51.jpg
  • Front end of a bed bug (cimex lectularius), a bloodsucking nocturnal parasite. The adult is brown, oval, and dependent on blood for its nutrition. The bed bug's bite is painless but may cause the skin to become inflamed. Bed bugs hide in bedclothes, mattresses, and under wallpaper. They are active at night, traveling to the host for a blood meal, and then returning to their lair. They exude an offensive sweet odor. Good sanitation, achieved by thoroughly cleaning bed cloths, mattresses and pillows, can control bed bugs. This specimen is 4 mm in length.
    K13LM-bedbug1.jpg
  • Carpet beetle larva. Colored scanning electron micrograph (SEM) of a carpet beetle (Anthrenus sp.)  These larvae are a significant pest, feeding on animal materials including fur, feathers, hair, leather and other fabrics and stored food products. The larvae can survive for two to three years indoors, before hatching into free-living adult beetles. They are covered in hairs (setae) that can cause irritation to humans on contact with skin or if inhaled. Magnification: x110 when printed 10 centimeters wide.
    K13-SEM-carpetbeetle001.jpg
  • A Thermogram of a two different hands.  The adult hand is much cooler than the childs hand. 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..
    ir07-127.jpg
  • A Thermogram of different hands.  The adult hands are much cooler than the childs hands. 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..
    ir07-129.jpg
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Ted Kinsman

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