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  2. Instrumental variables estimation - Wikipedia

    en.wikipedia.org/wiki/Instrumental_variables...

    One computational method which can be used to calculate IV estimates is two-stage least squares (2SLS or TSLS). In the first stage, each explanatory variable that is an endogenous covariate in the equation of interest is regressed on all of the exogenous variables in the model, including both exogenous covariates in the equation of interest and ...

  3. Parkland formula - Wikipedia

    en.wikipedia.org/wiki/Parkland_formula

    The Parkland formula, also known as Baxter formula, is a burn formula developed by Charles R. Baxter, used to estimate the amount of replacement fluid required for the first 24 hours in a burn patient so as to ensure the patient is hemodynamically stable.

  4. Implied volatility - Wikipedia

    en.wikipedia.org/wiki/Implied_volatility

    In financial mathematics, the implied volatility (IV) of an option contract is that value of the volatility of the underlying instrument which, when input in an option pricing model (usually Black–Scholes), will return a theoretical value equal to the price of the option.

  5. SuperCalc - Wikipedia

    en.wikipedia.org/wiki/SuperCalc

    Since the precision of the two math packages was different, some IF statements resolved differently, and iterative calculations helped solve this problem. [ 1 ] Versions of SuperCalc were later released for the Apple II , IBM PC compatibles running MS-DOS , and, after Sorcim was bought by CA Technologies in 1985, for Microsoft Windows (under ...

  6. Area under the curve (pharmacokinetics) - Wikipedia

    en.wikipedia.org/wiki/Area_under_the_curve...

    Absolute bioavailability refers to the bioavailability of a drug when administered via an extravascular dosage form (i.e. oral tablet, suppository, subcutaneous, etc.) compared with the bioavailability of the same drug administered intravenously (IV). This is done by comparing the AUC of the non-intravenous dosage form with the AUC for the drug ...

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  8. Elimination rate constant - Wikipedia

    en.wikipedia.org/wiki/Elimination_rate_constant

    The solution of this differential equation is useful in calculating the concentration after the administration of a single dose of drug via IV bolus injection: = C t is concentration after time t; C 0 is the initial concentration (t=0) K is the elimination rate constant

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