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A C Neville

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

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Nature|January 10, 1970
"Airborne organism" identifiedA C Neville
Tissue & Cell|January 1, 1988
The need for a constraining layer in the formation of monodomain helicoids in a wide range of biological structuresA C Neville
Planta|November 21, 2013
Helicoidal orientation of cellulose microfibrils in Nitella opaca internode cells: ultrastructure and computed theoretical effects of strain reorientation during wall growthA C Neville, S Levy
International Journal of Biological Macromolecules|May 20, 1998
The role of pH, temperature and nucleation in the formation of cholesteric liquid crystal spherulites from chitin and chitosanS B Murray, A C Neville
Tissue & Cell|January 1, 1981
Helicoidal architecture of fish eggshellJ P Grierson, A C Neville
International Journal of Biological Macromolecules|April 1, 1997
The role of the electrostatic coat in the formation of cholesteric liquid crystal spherulites from alpha-chitinS B Murray, A C Neville
Journal of Cell Science|January 1, 1971
A biological system producing a self-assembling cholesteric protein liquid crystalA C Neville, B M Luke
Journal of Cell Science|June 1, 1976
The chitin crystallite in arthropod cuticleA C Neville, D A Parry, J Woodhead-Galloway
Tissue & Cell|January 1, 1971
Fine structure of the chorion of a moth, hyalophora cecropiaD S Smith, W H Telfer, A C Neville
Biopolymers|February 1, 1977
Proton magnetic resonance investigation of interactions between L-tryptophan and dinucleoside phosphates at low pDN H Kolodny, A C Neville, D L Coleman, et al.
Pageof 1

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

Sort By:
Pageof 1
Nature|January 10, 1970
"Airborne organism" identifiedA C Neville
Tissue & Cell|January 1, 1988
The need for a constraining layer in the formation of monodomain helicoids in a wide range of biological structuresA C Neville
Planta|November 21, 2013
Helicoidal orientation of cellulose microfibrils in Nitella opaca internode cells: ultrastructure and computed theoretical effects of strain reorientation during wall growthA C Neville, S Levy
International Journal of Biological Macromolecules|May 20, 1998
The role of pH, temperature and nucleation in the formation of cholesteric liquid crystal spherulites from chitin and chitosanS B Murray, A C Neville
Tissue & Cell|January 1, 1981
Helicoidal architecture of fish eggshellJ P Grierson, A C Neville
International Journal of Biological Macromolecules|April 1, 1997
The role of the electrostatic coat in the formation of cholesteric liquid crystal spherulites from alpha-chitinS B Murray, A C Neville
Journal of Cell Science|January 1, 1971
A biological system producing a self-assembling cholesteric protein liquid crystalA C Neville, B M Luke
Journal of Cell Science|June 1, 1976
The chitin crystallite in arthropod cuticleA C Neville, D A Parry, J Woodhead-Galloway
Tissue & Cell|January 1, 1971
Fine structure of the chorion of a moth, hyalophora cecropiaD S Smith, W H Telfer, A C Neville
Biopolymers|February 1, 1977
Proton magnetic resonance investigation of interactions between L-tryptophan and dinucleoside phosphates at low pDN H Kolodny, A C Neville, D L Coleman, et al.
Pageof 1