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John K De Witt

Showing results (1-10 of 12) with videos related to

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Journal of Biomechanics|August 31, 2010
Determination of toe-off event time during treadmill locomotion using kinematic dataJohn K De Witt
Sports Biomechanics|October 18, 2012
Mechanical factors associated with the development of high ball velocity during an instep soccer kickJohn K De Witt, Richard N Hinrichs
Journal of Biomechanics|May 20, 2014
Ground reaction forces during treadmill running in microgravityJohn K De Witt, Lori L Ploutz-Snyder
Aviation, Space, and Environmental Medicine|April 24, 2014
Bungee force level, stiffness, and variation during treadmill locomotion in simulated microgravityJohn K De Witt, Grant Schaffner, Lori L Ploutz-Snyder
The Journal of Experimental Biology|March 18, 2008
The effect of increasing inertia upon vertical ground reaction forces and temporal kinematics during locomotionJohn K De Witt, R Donald Hagan, Ronita L Cromwell
Journal of Strength and Conditioning Research|April 14, 2010
Effects of different lifting cadences on ground reaction forces during the squat exerciseJason R Bentley, William E Amonette, John K De Witt, et al.
Journal of Strength and Conditioning Research|April 24, 2009
Determinants of time to fatigue during nonmotorized treadmill exerciseJohn K De Witt, Stuart M C Lee, Cassie A Wilson, et al.
Journal of Human Kinetics|July 18, 2014
Physical determinants of interval sprint times in youth soccer playersWilliam E Amonette, Denham Brown, Terry L Dupler, et al.
The Journal of Experimental Biology|September 19, 2014
The preferred walk to run transition speed in actual lunar gravityJohn K De Witt, W Brent Edwards, Melissa M Scott-Pandorf, et al.
Aviation, Space, and Environmental Medicine|January 5, 2011
Locomotion in simulated and real microgravity: horizontal suspension vs. parabolic flightJohn K De Witt, Gail P Perusek, Beth E Lewandowski, et al.
Pageof 2

Showing results (1-10 of 12) with videos related to

Sort By:
Pageof 2
Journal of Biomechanics|August 31, 2010
Determination of toe-off event time during treadmill locomotion using kinematic dataJohn K De Witt
Sports Biomechanics|October 18, 2012
Mechanical factors associated with the development of high ball velocity during an instep soccer kickJohn K De Witt, Richard N Hinrichs
Journal of Biomechanics|May 20, 2014
Ground reaction forces during treadmill running in microgravityJohn K De Witt, Lori L Ploutz-Snyder
Aviation, Space, and Environmental Medicine|April 24, 2014
Bungee force level, stiffness, and variation during treadmill locomotion in simulated microgravityJohn K De Witt, Grant Schaffner, Lori L Ploutz-Snyder
The Journal of Experimental Biology|March 18, 2008
The effect of increasing inertia upon vertical ground reaction forces and temporal kinematics during locomotionJohn K De Witt, R Donald Hagan, Ronita L Cromwell
Journal of Strength and Conditioning Research|April 14, 2010
Effects of different lifting cadences on ground reaction forces during the squat exerciseJason R Bentley, William E Amonette, John K De Witt, et al.
Journal of Strength and Conditioning Research|April 24, 2009
Determinants of time to fatigue during nonmotorized treadmill exerciseJohn K De Witt, Stuart M C Lee, Cassie A Wilson, et al.
Journal of Human Kinetics|July 18, 2014
Physical determinants of interval sprint times in youth soccer playersWilliam E Amonette, Denham Brown, Terry L Dupler, et al.
The Journal of Experimental Biology|September 19, 2014
The preferred walk to run transition speed in actual lunar gravityJohn K De Witt, W Brent Edwards, Melissa M Scott-Pandorf, et al.
Aviation, Space, and Environmental Medicine|January 5, 2011
Locomotion in simulated and real microgravity: horizontal suspension vs. parabolic flightJohn K De Witt, Gail P Perusek, Beth E Lewandowski, et al.
Pageof 2