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  • X-Ray of a Paintball Gun. A paintball gun is a gun that shoots round balls of paint using high pressure carbon dioxide gas.  The gas cylinder is shown in the picture, as are the paint balls.  Paintball is now a sport.
    K07x07painball1FC.jpg
  • X-Ray of a Paintball Gun. A paintball gun is a gun that shoots round balls of paint using high pressure carbon dioxide gas.  The gas cylinder is shown in the picture, as are the paint balls.  Paintball is now a sport.
    K07x07painball1FC2.jpg
  • An X-ray of Yellow Perch (Perca flavescens). The Yellow Perch (Perca flavescens) is a favorite for anglers due to its firm white flesh when cooked. Easily caught in all seasons, this is a popular sport fish. Perch prefer a diet of young fish and aquatic insects and can reach a length of up to 30 centimeters and a mass of 2 kilograms.
    perch-middleblue-13x19.jpg
  • Feet walking.  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.
    walker8472.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 dancers performing modern dance.  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.
    dance8599.jpg
  • A dancer performing modern dance.  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.
    dance8612.jpg
  • Two dancers performing modern dance.  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.
    Dance8589.jpg
  • Feet walking.  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.
    walking8462.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
  • A boy juggles three balls.  The motion is recorded by a special stroboscopic camera.  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.
    juggle_8268.jpg
  • A boy juggles three balls.  The motion is recorded by a special stroboscopic camera.  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.
    juggle8288.jpg
  • An x-ray of a human head in a football helmet.  The modern helmet is an important safety device.
    K12footballhelmet3-Brain02.jpg
  • A Weightlifter.  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.
    weightlifter8496.jpg
  • An x-ray of a human head in a football helmet.  The modern helmet is an important safety device.
    K12footballhelmet3-brain.jpg
  • X-Ray of a Skateboard Helmet
    K12X-skateboard-helmetA.jpg
  • An x-ray of a human head in a football helmet.  The modern helmet is an important safety device.
    K12footballhelmet3-brainB.jpg
  • Boy juggling three juggling pins.
    K09juggler4815.jpg
  • Thermogram of two ice skaters.  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..
    ir07-273.jpg
  • X-Ray of a Skateboard Helmet
    K12X-skateboard-helmetBrain3B.jpg
  • X-ray Classic English Show and Dressage Helmet.  This is the classic helmet used in show horseback riding and offers little protection to the riders head.
    K12X-riding-helmet01A.jpg
  • Boy juggling three multi-colored light-up balls.
    K09juggler4877.jpg
  • Boy juggling three flaming torches.
    K09juggler4860.jpg
  • An X-ray of a Rollerblade Boot. The rollerblade boot is shown in x-ray imaging.  The wheels and bearings are at the bottom and the latches and rivets appear as dark, since they are made out of denser materials.  Rollerblading is a popular activity for exercise.
    roller-full3FC.jpg
  • X-ray Classic English Show and Dressage Helmet.  This is the classic helmet used in show horseback riding and offers little protection to the riders head.
    K12X-riding-helmet02A.jpg
  • X-ray Classic English Show and Dressage Helmet.  This is the classic helmet used in show horseback riding and offers little protection to the riders head.
    K12X-riding-helmet01B.jpg
  • Boy juggling three multi-colored light-up balls.
    K09juggler4873.jpg
  • Boy juggling three flaming torches.
    K09juggler4866.jpg
  • Boy juggling three flaming torches.
    K09juggler4833.jpg
  • Boy juggling three balls.
    K09juggler4787.jpg
  • An X-ray of an ice skate.
    x07iceskateablue.jpg
  • An X-ray of a Foot in a Rollerblade Boot. The rollerblade boot is shown in x-ray imaging.  The wheels and bearings are at the bottom and the latches and rivets appear as dark, since they are made out of denser materials.  This image is made from two different images.  The foot and rollerblade images were combined digitally due to the boot requiring a much larger x-ray exposure than the human foot.
    roller-full3A2FC.jpg
  • An X-ray of a Foot in a Rollerblade Boot. The rollerblade boot is shown in x-ray imaging.  The wheels and bearings are at the bottom and the latches and rivets appear as dark, since they are made out of denser materials.  This image is made from two different images.  The foot and rollerblade images were combined digitally due to the boot requiring a much larger x-ray exposure than the human foot.
    roller-full3A2screen.jpg
  • A Tennis Ball hitting a Racket .  Note the deformation of both the tennis ball and the tennis racket.  The ball has a velocity of approximately 20 meters per second in this image.  This image was photographed using high speed flash to freeze the motion taking place in 1/15,000th of a second.
    tennis8527.jpg
  • A Tennis Ball hitting a Racket .  Note the deformation of both the tennis ball and the tennis racket.  The ball has a velocity of approximately 20 meters per second in this image.  This image was photographed using high speed flash to freeze the motion taking place in 1/15,000th of a second.
    tennis8526.jpg
  • X-Ray of a Skateboard Helmet
    K12X-skateboard-helmetB.jpg
  • Boy juggling three flaming torches.
    K09juggler4842.jpg
  • A tennis ball moving at 95 feet per second, or 28.95 meters per second is captured in flight just after a collision with a  cinderblock wall. The tennis ball was launched from an air cannon as is commonly used to practice tennis.
    K18AfterCollision6922.jpg
  • A man throws a boomerang at night with built in lights.  The Camera's shutter is kept open for the flight to record the motion.
    K08boomerang-combo2.jpg
  • X-Ray of a Ski Helmet with goggles.
    x07-ski-helmet1neg.jpg
  • A tennis ball moving at 95 feet per second, or 28.95 meters per second collides with a cinderblock wall. During the collision, the tennis ball compresses. In this type of Collison momentum is conserved. The tennis ball was launched from an air cannon as is commonly used to practice tennis.
    K18HittingWall6919.jpg
  • A tennis ball moving at 95 feet per second, or 28.95 meters per second collides with a cinderblock wall. During the collision, the tennis ball compresses. In this type of Collison momentum is conserved. The tennis ball was launched from an air cannon as is commonly used to practice tennis.
    K18HittingWall6913.jpg
  • X-Ray of a ski boot
    x07ski-bootFC.jpg
  • X-Ray of a speed skate.  Ice skate.
    x07-speed-skate1blue.jpg
  • X-Ray of a ski boot
    x07ski-bootblue-metal.jpg
  • A tennis ball moving at 95 feet per second, or 28.95 meters per second is captured in flight just before it collides with a cinderblock wall. The tennis ball was launched from an air cannon as is commonly used to practice tennis.
    K18BeforeCollision6927.jpg
  • X-Ray of a basketball.
    x07-basket-ballorange.jpg
  • A golf ball that has been sliced in half sits next to a whole ball, demonstrating how golf balls are designed in layers.
    golfball-callaway3_0232.jpg
  • Enhanced X-ray of a fractured tibia in a ski boot.
    K11-xskibootbones1.jpg
  • A historic wooden duck decoy is imaged with x-rays.  The nails, construction, and lead paint show up clearly in the image.  This type of image is often used to establish age of duck decoys.
    duck3blue.jpg
  • A golf club moving at 97 miles per hour (43.36 m/s) hits a stationary golf ball.  The action is recorded by a fast strobe with a duration of 1/1,000,000th of a second.  In all collisions momentum is conserved. .
    K07-golfb0152.jpg
  • A golf ball that has been sliced in half sits next to a whole ball, demonstrating how golf balls are designed in layers.
    golfball-topflight-xl1_0224.jpg
  • A golf ball that has been sliced in half sits next to a whole ball, demonstrating how golf balls are designed in layers.
    golfball-caliaway1_0223.jpg
  • Enhanced X-ray of a fractured tibia in a ski boot.
    K11-xskibootbones2.jpg
  • A golf club moving at 97 miles per hour (43.36 m/s) hits a stationary golf ball.  The action is recorded by a fast strobe with a duration of 1/20,000th of a second.  In all collisions momentum is conserved. .
    K07-golfb0167.jpg
  • A golf club moving at 97 miles per hour (43.36 m/s) hits a stationary golf ball.  The action is recorded by a fast strobe with a duration of 1/1,000,000th of a second.  In all collisions momentum is conserved.   This ball is a soft driving ball - not a regulation play ball..
    K07-golfb0147.jpg
  • A golf ball that has been sliced in half sits next to a whole ball, demonstrating how golf balls are designed in layers.
    golfball-maxfli-md1_0225.jpg
  • A historic wooden duck decoy is imaged with x-rays.  The nails, construction, and lead paint show up clearly in the image.  This type of image is often used to establish age of duck decoys.  Note the buck shot, or lead bullets still in the duck decoy.
    duck-Three.jpg
  • A smallmouth bass (Micropterus dolomieu) photograped in New York State.  This fish has been widely introduced to freshwater lakes and streams for sport fishing.
    K08UWKL_2810.jpg
  • A smallmouth bass (Micropterus dolomieu) photograped in New York State.  This fish has been widely introduced to freshwater lakes and streams for sport fishing.
    K07keuw0986.jpg
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Ted Kinsman

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