• In the biochemical reactions that are taking place in your body, there is equilibrium between a whole myriad of reactants and products, and thank heavens that gets maintained.

    在我们身体内进行的,生物化学反应中,大量的反应物和产物,也是处于平衡状态,谢天谢地实际情况就是这样。

    麻省理工公开课 - 热力学与动力学课程节选

  • So, in other words, this c l minus is actually lower in energy than the reactants were.

    也就是说,负一价氯离子,比原来的反应物的能量更低。

    麻省理工公开课 - 化学原理课程节选

  • How many moles of gas are there in each case, in reactants and products? If that changes, of course you know that the pressure in there is going to change at constant volume if the amount of gas in there is changing.

    在反应物和生成物中,各有多少摩尔的气体?,如果它发生了变化,当然在等体条件下,如果气体的总量,发生了变化,压强也会发生变化。

    麻省理工公开课 - 热力学与动力学课程节选

  • In other words, I've got reactants, and I've got products. What's delta H of reaction?

    换句话说,我有了反应物,我有了生成物?

    麻省理工公开课 - 热力学与动力学课程节选

  • Right? In other words I've got the stoichiometric coefficients in there and the values, and I'm subtracting the reactants from products -1652kJ/mol wind up with minus 1652 kilojoules per mole.

    对吧?换句话说这里我用了化学,计量系数和生成热的值,从生成物中减去反应物,最后得到。

    麻省理工公开课 - 热力学与动力学课程节选

  • Of course, the cyclic steps that we've taken to do this apply not just for breaking down reactants and product into the elements in their standards states, but of course we could also look at whole sets of reactions and write cycles as well, right.

    当然,我们这里用的循环的,步骤不仅仅在把生成物,和反应物拆成其标准状态下,的元素时有效,我们也可以研究整个一系列,反应并写出相应循环。

    麻省理工公开课 - 热力学与动力学课程节选

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