Worked example: Using the first-order integrated rate law and half-life equations | Khan Academy

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  • Опубликовано: 18 окт 2014
  • In this video, we'll use the first-order integrated rate law to calculate the concentration of a reactant after a given amount of time. We'll also calculate the amount of time it takes for the concentration to decrease to a certain value. Finally, we'll use the first-order half-life equation to calculate the half-life of the reaction. View more lessons or practice this subject at www.khanacademy.org/science/a...
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Комментарии • 6

  • @Reilly83274
    @Reilly83274 2 года назад

    lol thank you so much. I cant tell you how long i was stuck on how to do this type of problem. You walked me through that so well.

  • @muzwamasimusifali
    @muzwamasimusifali 2 месяца назад

    Thank you very much🙏

  • @hielenaug
    @hielenaug 7 лет назад

    would you help me with this? .... The isomerization of cyclopropane to form propene is a first-order reaction. At 760 K, 85% of a sample of cyclopropane changes to propene in 79.0 min. Determine the rate constant for this reaction at 760 K.
    I am very confused with this.

  • @user-lw3uz1cg5f
    @user-lw3uz1cg5f 4 года назад

    Thank you

  • @arcalejohnderaco4143
    @arcalejohnderaco4143 7 лет назад +1

    Best.

  • @JoblessNunnu
    @JoblessNunnu 8 лет назад

    awe§ømě