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R J Sheppard

Showing results (1-10 of 29) with videos related to

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Bioelectromagnetics|January 1, 1986
Dielectric properties of lens tissue at microwave frequenciesM C Steel, R J Sheppard
Physics in Medicine and Biology|July 1, 1993
Dielectric properties of human blood at microwave frequenciesJ M Alison, R J Sheppard
Journal of Environmental Management|July 5, 2008
The ethics of Google Earth: crossing thresholds from spatial data to landscape visualisationStephen R J Sheppard, Petr Cizek
Physics in Medicine and Biology|July 1, 1985
Dielectric properties of mammalian brain tissue between 1 and 18 GHzM C Steel, R J Sheppard
Physics in Medicine and Biology|April 1, 1988
The dielectric properties of rabbit tissue, pure water and various liquids suitable for tissue phantoms at 35 GHzM C Steel, R J Sheppard
Physics in Medicine and Biology|November 1, 1986
The modelling of biological systems in three dimensions using the time domain finite-difference method: I. The implementation of the modelR W Lau, R J Sheppard
Physics in Medicine and Biology|January 1, 1983
Dielectric properties of ocular tissues at 37 degrees CC Gabriel, R J Sheppard, E H Grant
Physics in Medicine and Biology|May 1, 1984
Dielectric properties of insulin in solutionA A Laogun, R J Sheppard, E H Grant
The Journal of Microwave Power|March 1, 1981
A generalized model for the interaction of microwave radiation with bound water in biological materialV E McClean, R J Sheppard, E H Grant
Biophysical Journal|July 1, 1984
Dielectric behavior of DNA solution at radio and microwave frequencies (at 20 degrees C)S Takashima, C Gabriel, R J Sheppard, et al.
Pageof 3

Showing results (1-10 of 29) with videos related to

Sort By:
Pageof 3
Bioelectromagnetics|January 1, 1986
Dielectric properties of lens tissue at microwave frequenciesM C Steel, R J Sheppard
Physics in Medicine and Biology|July 1, 1993
Dielectric properties of human blood at microwave frequenciesJ M Alison, R J Sheppard
Journal of Environmental Management|July 5, 2008
The ethics of Google Earth: crossing thresholds from spatial data to landscape visualisationStephen R J Sheppard, Petr Cizek
Physics in Medicine and Biology|July 1, 1985
Dielectric properties of mammalian brain tissue between 1 and 18 GHzM C Steel, R J Sheppard
Physics in Medicine and Biology|April 1, 1988
The dielectric properties of rabbit tissue, pure water and various liquids suitable for tissue phantoms at 35 GHzM C Steel, R J Sheppard
Physics in Medicine and Biology|November 1, 1986
The modelling of biological systems in three dimensions using the time domain finite-difference method: I. The implementation of the modelR W Lau, R J Sheppard
Physics in Medicine and Biology|January 1, 1983
Dielectric properties of ocular tissues at 37 degrees CC Gabriel, R J Sheppard, E H Grant
Physics in Medicine and Biology|May 1, 1984
Dielectric properties of insulin in solutionA A Laogun, R J Sheppard, E H Grant
The Journal of Microwave Power|March 1, 1981
A generalized model for the interaction of microwave radiation with bound water in biological materialV E McClean, R J Sheppard, E H Grant
Biophysical Journal|July 1, 1984
Dielectric behavior of DNA solution at radio and microwave frequencies (at 20 degrees C)S Takashima, C Gabriel, R J Sheppard, et al.
Pageof 3