the reaction increased in order (APEX)
The symbol o written above a reaction arrow indicates that the reaction is carried out under an oxygen atmosphere.
If the reactants have one sulfur (S) and four oxygen (O) atoms, the product will also have the same number of atoms. In a balanced chemical reaction, the total number of each type of atom remains constant, so the product would also have one S and four O atoms.
The products will also have one atom of S (silicon) and four of O (oxygen) because the number of atoms is not changed, only their chemical combinations.
The reaction represented is the combustion of phosphorus (P) in the presence of oxygen (O₂) to form diphosphorus pentoxide (P₂O₅). This is a synthesis reaction where two or more reactants combine to form a single product.
The balanced equation for the reaction between Ag₂S and O₂ to produce Ag and S₈ is: 2Ag₂S + 11O₂ → 2Ag + 4SO₂
The symbol o written above a reaction arrow indicates that the reaction is carried out under an oxygen atmosphere.
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The mole ratio between iodate (IO₃^-) and thiosulfate (S₂O₃²-) ions is 1:3 in the reaction between the two ions, as seen in the balanced chemical equation of the reaction. 2S₂O₃²- + IO₃^- → S₄O₆²- + I⁻
If the reactants have one sulfur (S) and four oxygen (O) atoms, the product will also have the same number of atoms. In a balanced chemical reaction, the total number of each type of atom remains constant, so the product would also have one S and four O atoms.
The reaction increased in order
To determine the mole ratio of Fe₂S₃ to O₂ in a balanced chemical reaction, you need to look at the coefficients in the balanced equation. For example, if the balanced equation is 4 Fe₂S₃ + 12 O₂ → 8 Fe₂O₃ + 6 SO₂, the mole ratio of Fe₂S₃ to O₂ would be 4:12, which simplifies to 1:3. Therefore, the mole ratio of Fe₂S₃ to O₂ is 1:3.
The products will also have one atom of S (silicon) and four of O (oxygen) because the number of atoms is not changed, only their chemical combinations.
If you mean a reaction of AgNO3 + Na(s) ==> NaNO3 + Ag(s), there would be ONE electron transferred.Ag^+ + 1e- ==> Ag(s) Reduction reaction Na(s) ==> Na^+ + 1e- Oxidation reaction
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The rate law for the reaction between hydrochloric acid (HCl) and sodium thiosulfate (Na₂S₂O₃) can be expressed as rate = k[HCl]^m[Na₂S₂O₃]^n, where k is the rate constant, and m and n are the orders of the reaction with respect to HCl and Na₂S₂O₃, respectively. Typically, the reaction is found to be first order with respect to both reactants, which means m = 1 and n = 1, leading to a rate law of rate = k[HCl][Na₂S₂O₃]. The exact values of the orders can vary based on experimental conditions.
The decomposition reaction for silver oxide (Ag₂O) involves the breakdown of silver oxide into silver and oxygen gas when heated. The balanced chemical equation for this reaction is: [ 2 , \text{Ag}_2\text{O} (s) \rightarrow 4 , \text{Ag} (s) + \text{O}_2 (g) ] This reaction illustrates the release of oxygen and the formation of elemental silver as a result of the thermal decomposition of silver oxide.
The products will also have one atom of S (silicon) and four of O (oxygen) because the number of atoms is not changed, only their chemical combinations.