The balanced redox reaction in acid solution is: 6 FeSO4 + Cr2O7^2- + 14 H+ -> 3 Fe2(SO4)3 + 2 Cr^3+ + 7 H2O
To determine the mole ratios in a balanced chemical equation, look at the coefficients in front of each compound. These coefficients represent the moles of each substance involved in the reaction. The ratio of the coefficients gives the mole ratio between the reactants and products.
False. Coefficients can be added before any chemical species in a chemical equation to balance the number of atoms on each side. The coefficients indicate the relative amounts of each substance involved in the reaction.
You think probable to the number of molecules or atoms.
In a chemical reaction, a conjugate redox pair consists of two species that are related by the transfer of electrons. One species loses electrons (oxidized) while the other gains electrons (reduced). They are connected in a balanced way, ensuring that the overall charge remains the same.
HCl + NaOH = NaCl + H2O Acid + Base = Salt + Water
To determine the mole ratios in a balanced chemical equation, look at the coefficients in front of each compound. These coefficients represent the moles of each substance involved in the reaction. The ratio of the coefficients gives the mole ratio between the reactants and products.
The equilibrium constant (K) for the reaction aA + bB ⇌ cC + dD is expressed as K = [C]^c [D]^d / [A]^a [B]^b, where [X] represents the molar concentration of species X at equilibrium. The coefficients a, b, c, and d are the stoichiometric coefficients from the balanced chemical equation. The value of K indicates the ratio of the concentrations of products to reactants at equilibrium, providing insight into the favorability of the reaction.
Competition coefficients measure the effect of one species on another competing species.
The equilibrium constant (K) for the reaction aA + bB ⇌ cC + dD is expressed as K = [C]^c [D]^d / [A]^a [B]^b, where square brackets denote the concentrations of the respective species at equilibrium. The coefficients a, b, c, and d correspond to the stoichiometric coefficients of the reactants and products in the balanced chemical equation. The equilibrium constant provides insight into the extent of the reaction and the relative concentrations of reactants and products at equilibrium.
There is no reaction between these, because all species are soluble.
2AgNO3 + K2CO3 >> Ag2CO3 + 2KNO3 ( much more could be done with those numbers, but you did not ask for that ) ( Plus, I am not sure if Silver carbonate percipitates out of solution, so all those species could be dissasociated )
False. Coefficients can be added before any chemical species in a chemical equation to balance the number of atoms on each side. The coefficients indicate the relative amounts of each substance involved in the reaction.
It shows the preservation of mass and of matter.
You think probable to the number of molecules or atoms.
No, this is not a redox reaction (or a chemical reaction at all) because no species gain/lose electrons in this process.
In a chemical reaction, a conjugate redox pair consists of two species that are related by the transfer of electrons. One species loses electrons (oxidized) while the other gains electrons (reduced). They are connected in a balanced way, ensuring that the overall charge remains the same.
Law of Mass Action states that rate of a reaction is directly proportional to the product of concentration of reactant with each concentration raised to the power equal to its respective stoichiometric coefficient as represented by the balanced chemical equation. It is also called the law of chemical equilibrium.