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  2. List of unsolved problems in chemistry - Wikipedia

    en.wikipedia.org/wiki/List_of_unsolved_problems...

    Protein folding problem: Is it possible to predict the secondary, tertiary and quaternary structure of a polypeptide sequence based solely on the sequence and environmental information? Inverse protein-folding problem: Is it possible to design a polypeptide sequence which will adopt a given structure under certain environmental conditions?

  3. Half-life - Wikipedia

    en.wikipedia.org/wiki/Half-life

    In this situation it is generally uncommon to talk about half-life in the first place, but sometimes people will describe the decay in terms of its "first half-life", "second half-life", etc., where the first half-life is defined as the time required for decay from the initial value to 50%, the second half-life is from 50% to 25%, and so on.

  4. Transuranium element - Wikipedia

    en.wikipedia.org/wiki/Transuranium_element

    Slightly radioactive elements: the most stable isotope is very long-lived, with a half-life of over two million years. Radioactive elements: the most stable isotope has half-life between 800 and 34,000 years.

  5. Exponential decay - Wikipedia

    en.wikipedia.org/wiki/Exponential_decay

    A more intuitive characteristic of exponential decay for many people is the time required for the decaying quantity to fall to one half of its initial value. (If N(t) is discrete, then this is the median life-time rather than the mean life-time.) This time is called the half-life, and often denoted by the symbol t 1/2. The half-life can be ...

  6. PMSF - Wikipedia

    en.wikipedia.org/wiki/PMSF

    The half-life is short in aqueous solutions (110 min at pH 7, 55 min at pH 7.5, and 35 min at pH 8, all at 25 °C). [2] At 4˚C, pH 8, PMSF is almost completely degraded after 1 day. [ 2 ] Stock solutions are usually made up in anhydrous ethanol , isopropanol , or corn oil and diluted immediately before use.

  7. Talk:Half-life - Wikipedia

    en.wikipedia.org/wiki/Talk:Half-life

    So going back to the half-life article there is a very low probability (IMHO) that the entire "many identical atoms undergoing radioactive decay" could decay ALLTOGETHER just after a microsecond instead of the probabilistic given half-life of "many identical atoms undergoing radioactive decay"' (for instance "zillions of years" like 1.6416 ...

  8. Branching fraction - Wikipedia

    en.wikipedia.org/wiki/Branching_fraction

    Here the problem with the term partial half-life is evident: after (341+6.60) days almost all the nuclei will have decayed, not only half as one may initially think. Isotopes with significant branching of decay modes include copper-64 , arsenic-74 , rhodium-102 , indium-112 , iodine-126 and holmium-164 .

  9. Aluminium-26 - Wikipedia

    en.wikipedia.org/wiki/Aluminium-26

    The first half-life was determined to be in the range of 10 6 years. The Fermi beta decay half-life of the aluminium-26 metastable state is of interest in the experimental testing of two components of the Standard Model, namely, the conserved-vector-current hypothesis and the required unitarity of the Cabibbo–Kobayashi–Maskawa matrix. [27]

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