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Multistationarity and Bistability for Fewnomial Chemical Reaction Networks
Elisenda Feliu
, Martin Helmer
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Corresponding author af dette arbejde
Institut for Matematiske Fag
2
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Keyphrases
Bistability
100%
Chemical Reaction Networks
100%
Multistationarity
100%
Reaction Network
66%
Steady State
66%
Gale Duality
66%
Polynomial Systems
66%
Cell Memory
33%
Cell-to-cell
33%
Chemical Complexity
33%
Mass-action Kinetics
33%
Success Strategies
33%
Mathematical Problems
33%
Reaction Rate Constant
33%
Real Algebraic Geometry
33%
Switch-like
33%
Nonflow
33%
Small Networks
33%
Cell Fate Decision
33%
Monomial
33%
Mathematics
Bistability
100%
Chemical Reaction Networks
100%
Polynomial
66%
Mass Action
33%
Reaction Rate Constant
33%
Action Kinetics
33%
Real Algebraic Geometry
33%
Monomials
33%
Biochemistry, Genetics and Molecular Biology
Steady State
100%
Decision Making
50%
Memory B Cell
50%
Mass Action
50%