Thread Content
##The reaction is a reversible exothermic reaction, and the equilibrium conversion rate decreases as the temperature rises. Since the reaction is an equimolar reaction, the effect of reaction pressure on equilibrium is minimal. The reaction caused by ## is a reversible and exothermic reaction; the selectivity tends to decrease as the temperature rises. Pressure has little effect on the equilibrium of this reaction, since the number of moles of reactants and products in the chemical equation is equal. Question: 1. Can selectivity be used to represent the conversion rate? 2. Is it correct to say that pressure has little effect on the equilibrium of the reaction? 3. Is there a better term for an equimolar reaction? The reactants and products in a chemical equation have equal molar amounts. Last edited by niulijun117 on 2009-3-19 17:36.]
1. The selection rate can be referred to as Selectivity, while the conversion rate can be called Conversion ratio. 2. Reaction equilibrium can be expressed as Reaction Equilibrium. 3. I don’t understand; I’ll keep asking for help
1. In the field of chemistry, the balanced conversion rate is referred to as “equilibrium conversion”; this equilibrium conversion always decreases as the temperature increases. 2. Pressure has little effect on the equilibrium of the reaction. You can use \"has\" as well, but \"does\" seems more active, implying some action. 3. I personally translate it as \"the number of molecules remains the same before and after the reaction\", because the number of moles is the same before and after the reaction
XX decreases as the temperature increases. XX will decline when the temperature rises. Also, should the word “reaction” be added before temperature? – XX decreases as the (reaction) temperature increases
1. Could not find this word; I don’t know: loveliness: ; 2. Personal opinions are fine ; 3. Equimolecular reaction: a reaction in which equal amounts of reactants are involved; it’s not clear whether this is the same as a reaction with equal numbers of reactants. Answer completed~~
A reaction with equal mole numbers is an equimolar reaction, also known as an equimolar or equimolecular reaction
Firstly, it is recommended to check out books in English; there are quite a few of them, and those written by foreigners are definitely professional. Furthermore, the equilibrium conversion rate refers to the conversion rate of a certain reactant when the reaction reaches equilibrium; it is related to the equilibrium constant. At higher temperatures, the equilibrium constant is larger, and thus the conversion rate is higher as well. I think it sounds better to change ‘while’ to ‘as’.
Also, in reactions with equal mole numbers, it’s important to note that both the reactants and products must be specified as gaseous. Those who have studied reaction equilibrium certainly know this, so I won’t go into further detail
##The reaction is a reversible exothermic reaction, and the equilibrium conversion rate decreases as the temperature rises. Since the reaction is an equimolar reaction, the effect of reaction pressure on equilibrium is minimal. ## The reaction is a reversible exothermic reaction. The equilibrium conversion ratio decreases as the temperature rises due to the reaction. And because the reaction occurs on a molar basis, pressure has very little effect on the equilibrium of the reaction. This translation conveys the idea that the equilibrium conversion rate decreases as temperature increases (as a result of the reaction being exothermic); this is assuming that this is indeed the original meaning in Chinese.