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  2. Holliday-Segar formula - Wikipedia

    en.wikipedia.org/wiki/Holliday-Segar_formula

    The Holliday-Segar formula is a formula to help approximate water and caloric loss (and therefore the water requirements) using a patient's body weight. [1] Primarily aimed at pediatric patients, the Holliday-Segar formula is the most commonly used estimate of daily caloric requirements. [2]

  3. Parkland formula - Wikipedia

    en.wikipedia.org/wiki/Parkland_formula

    [1] [2] [3] The milliliter amount of fluid required for the first 24 hours – usually Lactated Ringer's – is four times the product of the body weight and the burn percentage (i.e. body surface area affected by burns). [4] The first half of the fluid is given within eight hours from the burn incident, and the remaining over the next 16 hours.

  4. Management of dehydration - Wikipedia

    en.wikipedia.org/wiki/Management_of_dehydration

    This occurs when these over-concentrated solutions sit in the gut and draw water from the rest of the body, and the reduced fluids in the body's tissues then have a higher proportion of salt to fluid. Children with serum sodium greater 150 mmol/liter have thirst out of proportion to other signs of dehydration.

  5. Mud weight - Wikipedia

    en.wikipedia.org/wiki/Mud_weight

    In the oil industry, mud weight is the density of the drilling fluid and is normally measured in pounds per gallon (lb/gal) (ppg) or pound cubic feet (pcf) . [1] In the field it is measured using a mud scale or mud balance. Mud can weigh up to 22 or 23 ppg. A gallon of water typically weighs 8.33 pounds (or 7.48 ppg).

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  8. Viscosity index - Wikipedia

    en.wikipedia.org/wiki/Viscosity_index

    The viscosity index (VI) is an arbitrary, unit-less measure of a fluid's change in viscosity relative to temperature change. It is mostly used to characterize the viscosity-temperature behavior of lubricating oils. The lower the VI, the more the viscosity is affected by changes in temperature.

  9. Well kill - Wikipedia

    en.wikipedia.org/wiki/Well_kill

    The principle of a well kill revolves around the influence of the weight of a fluid column and hence the pressure exerted at the wellbore's bottom. P = h g ρ {\displaystyle P=hg\rho } Where P is the pressure at a specific depth, h, within the column, g is the acceleration of gravity and ρ is the density of the fluid.