Physiological Models in Microbiology

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A01=M. Bazin
Antonio Casolari
Arrhenius Activation Energy
Author_M. Bazin
bacterial
Bacterial Chemotaxis
bacterial population dynamics
Bacterial Spore
biofilm
Biofilm Accumulation
Biofilm Formation
biofilm formation mechanisms
Biofilm Mass
Biofilm Removal
Biofilm Thickness
Brian Vincent
Category=PSD
Chemotactic Cells
Decimal Reduction Dose
Endogenous Decay
environmental stress response
EP Production
eq_bestseller
eq_isMigrated=1
eq_isMigrated=2
eq_nobargain
eq_non-fiction
eq_science
formation
Gerald M. Lefebvre
Gerald Rosen
Germination Curve
Heat Inactivation
Heat Inactivation Kinetics
Inactivation Kinetics
Inactivation Rate
Individual Spore
James D. Bryers
mathematical modeling of microbial processes
microbial chemotaxis modeling
Microbial Inactivation
Microbial Particles
Mixed Culture Biofilm
Paul R. Rutter
quantitative microbiology
Raymond Leblanc
spore
spore germination kinetics
Substrate Removal Rate
Survivor Curves
Transition State Model
Wall Shear Stress

Product details

  • ISBN 9781315896540
  • Weight: 460g
  • Dimensions: 178 x 254mm
  • Publication Date: 08 Dec 2017
  • Publisher: Taylor & Francis Ltd
  • Publication City/Country: GB
  • Product Form: Hardback
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Physiological Models in Microbiology consists of two volumes. Volume I considers models of basic growth processes and the effects of environmental factors on microbial growth. Volume II describes models of secondary processes, in particular, microbial death, spore germination, chemotaxis, and surface growth.

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