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Biomathematics: Mathematics of Biostructures and Biodynamics (Hardback)100%: Sous la direction de: S. Andersson, Sous la direction de: K. Larsson, Sous la direction de: M. Larsson, Sous la direction de: M. Jacob: Biomathematics: Mathematics of Biostructures and Biodynamics (Hardback) (ISBN: 9780444502735) 1999, Erstausgabe, in Englisch, Broschiert.
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Biomathematics - Mathematics of Biostructures and Biodynamics100%: Herausgeber: S. Andersson, Herausgeber: K. Larsson, Herausgeber: M. Larsson, Herausgeber: M. Jacob: Biomathematics - Mathematics of Biostructures and Biodynamics (ISBN: 9780080528076) 1999, in Englisch, auch als eBook.
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Biomathematics: Mathematics of Biostructures and Biodynamics (Hardback)
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9780444502735 - Andersson, Sten Larsson, Marcus Larsson, Kare: Biomathematics: Mathematics of Biostructures and Biodynamics
Andersson, Sten Larsson, Marcus Larsson, Kare

Biomathematics: Mathematics of Biostructures and Biodynamics

Lieferung erfolgt aus/von: Deutschland EN HC NW

ISBN: 9780444502735 bzw. 0444502734, in Englisch, ELSEVIER SCIENCE & TECHNOLOGY, gebundenes Buch, neu.

Lieferung aus: Deutschland, Versandkostenfrei.
buecher.de GmbH & Co. KG, [1].
Main description:This book presents new mathematics for the description of structure and dynamics in molecular and cellular biology. On an exponential scale it is possible to combine functions describing inner organisation, including finite periodicity, with functions for outside morphology into a complete definition of structure. This mathematics is particularly fruitful to apply at molecular and atomic distances. The structure descriptions can then be related to atomic and molecular forces and provide information on structural mechanisms. The calculations have been focussed on lipid membranes forming the surface layers of cell organelles. Calculated surfaces represent the mid-surface of the lipid bilayer. Membrane dynamics such as vesicle transport are described in this new language. Periodic membrane assemblies exhibit conformations based on the standing wave oscillations of the bilayer, considered to reflect the true dynamic nature of periodic membrane structures. As an illustration the structure of an endoplasmatic reticulum has been calculated. The transformation of such cell membrane assemblies into cubosomes seems to reflect a transition into vegetative states. The organisation of the lipid bilayer of nerve cells is analyzed, taking into account an earlier observed lipid bilayer phase transition associated with the depolarisation of the membrane. Evidence is given for a new structure of the alveolar surface, relating the mathematical surface defining the bilayer organisation to new experimental data. The surface layer is proposed to consist of a coherent phase, consisting of a lipid-protein bilayer curved according to a classical surface - the CLP surface. Without employing this new mathematics it would not be possible to give an analytical description of this structure and its deformation during the respiration cycle. In more general terms this mathematics is applied to the description of the structure and dynamic properties of motor proteins, cytoskeleton proteins, and RNA/DNA. On a macroscopic scale the motions of cilia, sperm and flagella are modelled.This mathematical description of biological structure and dynamics, biomathematics, also provides significant new information in order to understand the mechanisms governing shape of living organisms.Table of contents:Chapter headings: Introduction. Counting, algebra and periodicity - the roots of mathematics are the roots of life. Nodal surfaces of tetragonal and hexagonal symmetry, and rods. Nodal surfaces, planes, rods and transformations. Motion in biology. Periodicity in biology - periodic motion. Finite periodicity and the cubosomes. Cubic cell membrane systems/cell organelles. Cells and their division - motion in muscles and in DNA. Concentration gradients, filaments, motor proteins and again - flagella. Transportation. Icosahedral symmetry, chathrin structures, spikes, axons, the tree, and solitary waves. Axon membranes and synapses - a role of lipid bilayer structure in nerve signals. The lung surface structure and respiration. Epilogue. Appendices.Versandfertig in über 4 Wochen, Hardcover.
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9780080528076 - K. Larsson, M. Jacob, M. Larsson, S. Andersson: Biomathematics
K. Larsson, M. Jacob, M. Larsson, S. Andersson

Biomathematics (1999)

Lieferung erfolgt aus/von: Deutschland EN NW EB DL

ISBN: 9780080528076 bzw. 0080528074, in Englisch, Elsevier Science, Elsevier Science, Elsevier Science, neu, E-Book, elektronischer Download.

Lieferung aus: Deutschland, in-stock.
This book presents new mathematics for the description of structure and dynamics in molecular and cellular biology. On an exponential scale it is possible to combine functions describing inner organisation, including finite periodicity, with functions for outside morphology into a complete definition of structure. This mathematics is particularly fruitful to apply at molecular and atomic distances. The structure descriptions can then be related to atomic and molecular forces and provide information on structural mechanisms. The calculations have been focussed on lipid membranes forming the surface layers of cell organelles. Calculated surfaces represent the mid-surface of the lipid bilayer. Membrane dynamics such as vesicle transport are described in this new language. Periodic membrane assemblies exhibit conformations based on the standing wave oscillations of the bilayer, considered to reflect the true dynamic nature of periodic membrane structures. As an illustration the structure of an endoplasmatic reticulum has been calculated. The transformation of such cell membrane assemblies into cubosomes seems to reflect a transition into vegetative states. The organisation of the lipid bilayer of nerve cells is analyzed, taking into account an earlier observed lipid bilayer phase transition associated with the depolarisation of the membrane. Evidence is given for a new structure of the alveolar surface, relating the mathematical surface defining the bilayer organisation to new experimental data. The surface layer is proposed to consist of a coherent phase, consisting of a lipid-protein bilayer curved according to a classical surface - the CLP surface. Without employing this new mathematics it would not be possible to give an analytical description of this structure and its deformation during the respiration cycle. In more general terms this mathematics is applied to the description of the structure and dynamic properties of motor proteins, cytoskeleton proteins, and RNA.
3
9780080528076 - Biomathematics

Biomathematics

Lieferung erfolgt aus/von: Deutschland EN NW

ISBN: 9780080528076 bzw. 0080528074, in Englisch, Elsevier Science, neu.

330,22 + Versand: 43,99 = 374,21
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Lieferung aus: Deutschland, sofort lieferbar.
This book presents new mathematics for the description of structure and dynamics in molecular and cellular biology. On an exponential scale it is possible to combine functions describing inner organisation, including finite periodicity, with functions for outside morphology into a complete definition of structure. This mathematics is particularly fruitful to apply at molecular and atomic distances. The structure descriptions can then be related to atomic and molecular forces and provide information on structural mechanisms. The calculations have been focussed on lipid membranes forming the surface layers of cell organelles. Calculated surfaces represent the mid-surface of the lipid bilayer. Membrane dynamics such as vesicle transport are described in this new language. Periodic membrane assemblies exhibit conformations based on the standing wave oscillations of the bilayer, considered to reflect the true dynamic nature of periodic membrane structures. As an illustration the structure of an endoplasmatic reti.
4
9780080528076 - Ray Morton, Kare Larsson: Biomathematics, Mathematics of Biostructures and Biodynamics
Ray Morton, Kare Larsson

Biomathematics, Mathematics of Biostructures and Biodynamics (1999)

Lieferung erfolgt aus/von: Niederlande EN NW EB

ISBN: 9780080528076 bzw. 0080528074, in Englisch, Elsevier Science, neu, E-Book.

303,46
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Lieferung aus: Niederlande, Direct beschikbaar.
bol.com.
This book presents new mathematics for the description of structure and dynamics in molecular and cellular biology. On an exponential scale it is possible to combine functions describing inner organisation, including finite periodicity, with functions for outside morphology into a complete definition of structure. This mathematics is particularly fruitful to apply at molecular and atomic distances. The structure descriptions can then be related to atomic and molecular forces and provide informat... This book presents new mathematics for the description of structure and dynamics in molecular and cellular biology. On an exponential scale it is possible to combine functions describing inner organisation, including finite periodicity, with functions for outside morphology into a complete definition of structure. This mathematics is particularly fruitful to apply at molecular and atomic distances. The structure descriptions can then be related to atomic and molecular forces and provide information on structural mechanisms. The calculations have been focussed on lipid membranes forming the surface layers of cell organelles. Calculated surfaces represent the mid-surface of the lipid bilayer. Membrane dynamics such as vesicle transport are described in this new language. Periodic membrane assemblies exhibit conformations based on the standing wave oscillations of the bilayer, considered to reflect the true dynamic nature of periodic membrane structures. As an illustration the structure of an endoplasmatic reticulum has been calculated. The transformation of such cell membrane assemblies into cubosomes seems to reflect a transition into vegetative states. The organisation of the lipid bilayer of nerve cells is analyzed, taking into account an earlier observed lipid bilayer phase transition associated with the depolarisation of the membrane. Evidence is given for a new structure of the alveolar surface, relating the mathematical surface defining the bilayer organisation to new experimental data. The surface layer is proposed to consist of a coherent phase, consisting of a lipid-protein bilayer curved according to a classical surface - the CLP surface. Without employing this new mathematics it would not be possible to give an analytical description of this structure and its deformation during the respiration cycle. In more general terms this mathematics is applied to the description of the structure and dynamic properties of motor proteins, cytoskeleton proteins, and RNA/DNA. On a macroscopic scale the motions of cilia, sperm and flagella are modelled. This mathematical description of biological structure and dynamics, biomathematics, also provides significant new information in order to understand the mechanisms governing shape of living organisms. Productinformatie:Taal: Engels;Formaat: ePub met kopieerbeveiliging (DRM) van Adobe;Bestandsgrootte: 44.80 MB;Kopieerrechten: Het kopiëren van (delen van) de pagina's is niet toegestaan ;Printrechten: Het printen van de pagina's is niet toegestaan;Voorleesfunctie: De voorleesfunctie is uitgeschakeld;Geschikt voor: Alle e-readers te koop bij bol.com (of compatible met Adobe DRM). Telefoons/tablets met Google Android (1.6 of hoger) voorzien van bol.com boekenbol app. PC en Mac met Adobe reader software;ISBN10: 0080528074;ISBN13: 9780080528076; Engels | Ebook | 1999.
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9780080528076 - S. Andersson: Biomathematics - Mathematics of Biostructures and Biodynamics
S. Andersson

Biomathematics - Mathematics of Biostructures and Biodynamics

Lieferung erfolgt aus/von: Deutschland EN NW EB DL

ISBN: 9780080528076 bzw. 0080528074, in Englisch, Elsevier Science, neu, E-Book, elektronischer Download.

Lieferung aus: Deutschland, E-Book zum Download.
This book presents new mathematics for the description of structure and dynamics in molecular and cellular biology. On an exponential scale it is possible to combine functions describing inner organisation, including finite periodicity, with functions for outside morphology into a complete definition of structure. This mathematics is particularly fruitful to apply at molecular and atomic distances. The structure descriptions can then be related to atomic and molecular forces and provide information on structural mechanisms. The calculations have been focussed on lipid membranes forming the surface layers of cell organelles. Calculated surfaces represent the mid-surface of the lipid bilayer. Membrane dynamics such as vesicle transport are described in this new language. Periodic membrane assemblies exhibit conformations based on the standing wave oscillations of the bilayer, considered to reflect the true dynamic nature of periodic membrane structures. As an illustration the structure of an endoplasmatic reticulum has been calculated. The transformation of such cell membrane assemblies into cubosomes seems to reflect a transition into vegetative states. The organisation of the lipid bilayer of nerve cells is analyzed, taking into account an earlier observed lipid bilayer phase transition associated with the depolarisation of the membrane. Evidence is given for a new structure of the alveolar surface, relating the mathematical surface defining the bilayer organisation to new experimental data. The surface layer is proposed to consist of a coherent phase, consisting of a lipid-protein bilayer curved according to a classical surface - the CLP surface. Without employing this new mathematics it would not be possible to give an analytical description of this structure and its deformation during the respiration cycle. In more general terms this mathematics is applied to the description of the structure and dynamic properties of motor proteins, cytoskeleton proteins, and RNA/DNA. On a macroscopic scale the motions of cilia, sperm and flagella are modelled.This mathematical description of biological structure and dynamics, biomathematics, also provides significant new information in order to understand the mechanisms governing shape of living organisms.
6
9780444502735 - Jacob, M.; Andersson, S.; Larsson, K.; Larsson, M.: Biomathematics
Jacob, M.; Andersson, S.; Larsson, K.; Larsson, M.

Biomathematics

Lieferung erfolgt aus/von: Vereinigte Staaten von Amerika EN NW EB

ISBN: 9780444502735 bzw. 0444502734, in Englisch, Elsevier Science, neu, E-Book.

346,89 ($ 385,00)¹
versandkostenfrei, unverbindlich
Lieferung aus: Vereinigte Staaten von Amerika, E-Book zum download.
Technology, This book presents new mathematics for the description of structure and dynamics in molecular and cellular biology. On an exponential scale it is possible to combine functions describing inner organisation, including finite periodicity, with functions for outside morphology into a complete definition of structure. This mathematics is particularly fruitful to apply at molecular and atomic distances. The structure descriptions can then be related to atomic and molecular forces and provide information on structural mechanisms. The calculations have been focussed on lipid membranes forming the surface layers of cell organelles. Calculated surfaces represent the mid-surface of the lipid bilayer. Membrane dynamics such as vesicle transport are described in this new language. Periodic membrane assemblies exhibit conformations based on the standing wave oscillations of the bilayer, considered to reflect the true dynamic nature of periodic membrane structures. As an illustration the structure of an endoplasmatic reticulum has been calculated. The transformation of such cell membrane assemblies into cubosomes seems to reflect a transition into vegetative states. The organisation of the lipid bilayer of nerve cells is analyzed, taking into account an earlier observed lipid bilayer phase transition associated with the depolarisation of the membrane. Evidence is given for a new structure of the alveolar surface, relating the mathematical surface defining the bilayer organisation to new experimental data. The surface layer is proposed to consist of a coherent phase, consisting of a lipid-protein bilayer curved according to a classical surface - the CLP surface. Without employing this new mathematics it would not be possible to give an analytical description of this structure and its deformation during the respiration cycle. In more general terms this mathematics is applied to the description of the structure and dynamic properties of motor proteins, cytoskeleton proteins, and RNA/DNA. On a macroscopic scale the motions of cilia, sperm and flagella are modelled. This mathematical description of biological structure and dynamics, biomathematics, also provides significant new information in order to understand the mechanisms governing shape of living organisms.
7
9780444502735 - Biomathematics
Symbolbild

Biomathematics

Lieferung erfolgt aus/von: Niederlande EN NW

ISBN: 9780444502735 bzw. 0444502734, in Englisch, North-Holland, neu.

379,49 ($ 405,00)¹
versandkostenfrei, unverbindlich
Lieferung aus: Niederlande, In Stock.
Biomathematics & Biochemistry, Genetics and Molecular Biology (General) & Structural Biology & Modelling and Simulation & Applied Mathematics & ENGENHARIA - TEMAS ATUAIS & Biomathematics & Chemistry, This book presents new mathematics for the description of structure and dynamics in molecular and cellular biology. On an exponential scale it is possible to combine functions describing inner organisation, including finite periodicity, with functions for outside morphology into a complete definition of structure. This mathematics is particularly fruitful to apply at molecular and atomic distances. The structure descriptions can then be related to atomic and molecular forces and provide information on structural mechanisms. The calculations have been focussed on lipid membranes forming the surface layers of cell organelles. Calculated surfaces represent the mid-surface of the lipid bilayer. Membrane dynamics such as vesicle transport are described in this new language. Periodic membrane assemblies exhibit conformations based on the standing wave oscillations of the bilayer, considered to reflect the true dynamic nature of periodic membrane structures. As an illustration the structure of an endoplasmatic reticulum has been calculated. The transformation of such cell membrane assemblies into cubosomes seems to reflect a transition into vegetative states. The organisation of the lipid bilayer of nerve cells is analyzed, taking into account an earlier observed lipid bilayer phase transition associated with the depolarisation of the membrane. Evidence is given for a new structure of the alveolar surface, relating the mathematical surface defining the bilayer organisation to new experimental data. The surface layer is proposed to consist of a coherent phase, consisting of a lipid-protein bilayer curved according to a classical surface - the CLP surface. Without employing this new mathematics it would not be possible to give an analytical description of this structure and its deformation during the respiration cycle. In more general terms this mathematics is applied to the description of the structure and dynamic properties of motor proteins, cytoskeleton pr.
8
9780444502735 - Andersson, Sten (Editor)/ Larsson, Kare (Editor)/ Larsson, Marcus (Editor)/ Jacob, Michael (Editor): Biomathematics: Mathematics of Biostructures and Biodynamics
Symbolbild
Andersson, Sten (Editor)/ Larsson, Kare (Editor)/ Larsson, Marcus (Editor)/ Jacob, Michael (Editor)

Biomathematics: Mathematics of Biostructures and Biodynamics (1999)

Lieferung erfolgt aus/von: Deutschland EN HC NW FE

ISBN: 9780444502735 bzw. 0444502734, in Englisch, Elsevier Science Ltd, gebundenes Buch, neu, Erstausgabe.

392,54 + Versand: 7,54 = 400,08
unverbindlich
Von Händler/Antiquariat, Revaluation Books [2134736], Exeter, DEV, United Kingdom.
1st edition. 534 pages. 9.25x6.75x1.00 inches. In Stock.
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9780444502735 - Editor-S. Andersson; Editor-K. Larsson; Editor-M. Larsson; Editor-M. Jacob: Biomathematics: Mathematics of Biostructures and Biodynamics
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Editor-S. Andersson; Editor-K. Larsson; Editor-M. Larsson; Editor-M. Jacob

Biomathematics: Mathematics of Biostructures and Biodynamics

Lieferung erfolgt aus/von: Vereinigte Staaten von Amerika EN HC NW

ISBN: 9780444502735 bzw. 0444502734, in Englisch, Elsevier Science, gebundenes Buch, neu.

614,29 + Versand: 3,02 = 617,31
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Von Händler/Antiquariat, ExtremelyReliable [8304062], Richmond, TX, U.S.A.
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9780080528076 - Biomathematics

Biomathematics

Lieferung erfolgt aus/von: Deutschland EN NW EB DL

ISBN: 9780080528076 bzw. 0080528074, in Englisch, Pergamon; Pergamon Press, Vereinigte Staaten von Amerika, neu, E-Book, elektronischer Download.

288,99
unverbindlich
Lieferung aus: Deutschland, zzgl. Versandkosten, Sofort lieferbar (Download).
Mathematics of Biostructures and Biodynamics, Mathematics of Biostructures and Biodynamics.
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