Chemical reaction networks and systems are fundamentally governed by stoichiometric constraints and algebraic laws concerning conserved quantities. Multiple studies confirm that these conservation laws dictate the dynamics, states, and thermodynamics of chemical reactions.
The claim asserts that chemical reactions obey specific algebraic laws for conserved quantities. All relevant papers in the provided set emphasize the presence and utilization of conservation laws, moiety conservation, stoichiometric constraints, and algebraic structures within chemical reaction networks (CRNs). There are no papers contradicting this foundational principle of chemical reaction network theory.