Back to Results
First PageMeta Content
Science / Enzyme kinetics / Steady state / Rate equation / Law of mass action / Chemical reaction / Mathematical and theoretical biology / Differential equation / Physical chemistry / Chemistry / Chemical kinetics


Simplifying biochemical models with intermediate species Elisenda Feliu and Carsten Wiuf rsif.royalsocietypublishing.org
Add to Reading List

Document Date: 2013-07-25 01:43:49


Open Document

File Size: 522,33 KB

Share Result on Facebook

City

Portland / Copenhagen / London / /

Company

Thomson / Gunawardena J. 2009 Unlimited / Knudsen / /

Country

United States / United Kingdom / /

/

Facility

Imperial College / University of Copenhagen / /

IndustryTerm

positive solutions / posttranslational modification reaction networks / steady-state solutions / reaction systems / biochemical systems / transient products / chemical reaction network theory / enzyme-driven reaction networks / synthetic systems / multisite phosphorylation systems / positive solution / reaction network / Online version / transient product / chemical reaction networks / twocomponent systems / phosphorylation systems / reaction networks / Conservation law curves / conservation law curve / conservation law / multisite posttranslational modification systems / biochemical reaction networks / enzymatic and post-translational modification systems / chemical networks / biochemical networks / /

Organization

Lundbeck Foundation / Danish Research Council / Imperial College London / Leverhulme Foundation / Department of Mathematical Sciences / University of Copenhagen / Royal Society / /

Person

Neil Bristow / Carsten Wiuf / Elisenda Feliu / /

Position

Author / King / algebraic methods Author / representative / core model at steady state / /

ProgrammingLanguage

EC / /

ProvinceOrState

Saskatchewan / /

PublishedMedium

PLoS ONE / /

URL

http /

SocialTag