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R J Sheppard

Showing results (11-20 of 29) with videos related to

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Physics in Medicine and Biology|November 1, 1986
The modelling of biological systems in three dimensions using the time domain finite-difference method: II. The application and experimental evaluation of the method in hyperthermia applicator designR W Lau, R J Sheppard, G Howard, et al.
Bioelectromagnetics|January 1, 1985
Dielectric properties of developing rabbit brain at 37 degrees CM Thurai, M C Steel, R J Sheppard, et al.
Physics in Medicine and Biology|January 1, 1981
Electrical properties of lens material at microwave frequenciesA W Dawkins, C Gabriel, R J Sheppard, et al.
Physics in Medicine and Biology|November 1, 1984
Microwave dielectric measurements (0.8-70 GHz) on Artemia cysts at variable water contentJ S Clegg, V E McClean, S Szwarnowski, et al.
Journal of Environmental Management|June 19, 2008
The digital workshop: exploring the use of interactive and immersive visualisation tools in participatory planningJonathan D Salter, Cam Campbell, Murray Journeay, et al.
The Biochemical Journal|May 1, 1974
An investigation by dielectric methods of hydration in myoglobin solutionsE H Grant, B G Mitton, G P South, et al.
Physics in Medicine and Biology|August 1, 1983
The dielectric properties of the cerebellum, cerebrum and brain stem of mouse brain at radiowave and microwave frequenciesN R Nightingale, V D Goodridge, R J Sheppard, et al.
Physics in Medicine and Biology|May 1, 1980
The anomalous behaviour of the permittivity of human serum low density lipoprotein around 37 degrees CG S Chana, R J Sheppard, G L Mills, et al.
Bioelectromagnetics|January 1, 1986
Dielectric behavior of water in biological solutions: studies on myoglobin, human low-density lipoprotein, and polyvinylpyrrolidoneE H Grant, V E McClean, N R Nightingale, et al.
Physics in Medicine and Biology|November 1, 1979
The role of water in microwave absorption by biological material with particular reference to microwave hazardsA W Dawkins, N R Nightingale, G P South, et al.
Pageof 3

Showing results (11-20 of 29) with videos related to

Sort By:
Pageof 3
Physics in Medicine and Biology|November 1, 1986
The modelling of biological systems in three dimensions using the time domain finite-difference method: II. The application and experimental evaluation of the method in hyperthermia applicator designR W Lau, R J Sheppard, G Howard, et al.
Bioelectromagnetics|January 1, 1985
Dielectric properties of developing rabbit brain at 37 degrees CM Thurai, M C Steel, R J Sheppard, et al.
Physics in Medicine and Biology|January 1, 1981
Electrical properties of lens material at microwave frequenciesA W Dawkins, C Gabriel, R J Sheppard, et al.
Physics in Medicine and Biology|November 1, 1984
Microwave dielectric measurements (0.8-70 GHz) on Artemia cysts at variable water contentJ S Clegg, V E McClean, S Szwarnowski, et al.
Journal of Environmental Management|June 19, 2008
The digital workshop: exploring the use of interactive and immersive visualisation tools in participatory planningJonathan D Salter, Cam Campbell, Murray Journeay, et al.
The Biochemical Journal|May 1, 1974
An investigation by dielectric methods of hydration in myoglobin solutionsE H Grant, B G Mitton, G P South, et al.
Physics in Medicine and Biology|August 1, 1983
The dielectric properties of the cerebellum, cerebrum and brain stem of mouse brain at radiowave and microwave frequenciesN R Nightingale, V D Goodridge, R J Sheppard, et al.
Physics in Medicine and Biology|May 1, 1980
The anomalous behaviour of the permittivity of human serum low density lipoprotein around 37 degrees CG S Chana, R J Sheppard, G L Mills, et al.
Bioelectromagnetics|January 1, 1986
Dielectric behavior of water in biological solutions: studies on myoglobin, human low-density lipoprotein, and polyvinylpyrrolidoneE H Grant, V E McClean, N R Nightingale, et al.
Physics in Medicine and Biology|November 1, 1979
The role of water in microwave absorption by biological material with particular reference to microwave hazardsA W Dawkins, N R Nightingale, G P South, et al.
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