hydrogen + oxygen forms water
iron + sulfur forms iron sulfide
calcium oxide + water forms calcium hydroxide
nitrogen + iodine forms nitrogen triiodide
Phosphorus increases its oxidation number in this reaction. In H3PO4, phosphorus has an oxidation number of +5, and in K3PO4, it has an oxidation number of +5 as well. This means that phosphorus's oxidation state remains the same throughout the reaction.
The balanced equation for the reaction of tetracarbon decahydride (C4H10) and oxygen (O2) is: C4H10 + 6.5 O2 → 4 CO2 + 5 H2O.
The key factors that influence the rate of a chemical reaction are concentration of reactants, temperature, presence of a catalyst, surface area of reactants, and the nature of the reactants and products.
The concentration of reactants is the factor that most significantly affects the rate of reaction. Increasing the concentration of reactants typically leads to more frequent and successful collisions between particles, resulting in a higher reaction rate.
In the reaction where NO₃^- is reduced to NO, nitrogen changes from a higher oxidation state (+5 in NO₃^-) to a lower oxidation state (+2 in NO). This reduction process involves gaining electrons and therefore is considered a reduction reaction.
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Certainly! Some examples of conjunctions are: "and," "but," "or," "so," and "nor."
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