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  2. Laminar flow - Wikipedia

    en.wikipedia.org/wiki/Laminar_flow

    A laminar flow reactor (LFR) is a reactor that uses laminar flow to study chemical reactions and process mechanisms. A laminar flow design for animal husbandry of rats for disease management was developed by Beall et al. 1971 and became a standard around the world [9] including in the then-Eastern Bloc. [10]

  3. SGLT2 inhibitor - Wikipedia

    en.wikipedia.org/wiki/SGLT2_inhibitor

    [2] [3] As of 2014, several medications of this class had been approved or were under development. [4] In studies on canagliflozin, a member of this class, the medication was found to enhance blood sugar control as well as reduce body weight and systolic and diastolic blood pressure. [5]

  4. Diabetes management - Wikipedia

    en.wikipedia.org/wiki/Diabetes_management

    Additionally, some medications that reduce blood sugars such as insulin may initially cause weight gain due to the increased conversion of blood sugar to stored forms such as fat. [29] Therefore, in patients with diabetes, providers may try other medications that lower blood sugar but not cause as much weight gain. [29]

  5. Laminar flow reactor - Wikipedia

    en.wikipedia.org/wiki/Laminar_flow_reactor

    A laminar flow reactor (LFR) is a type of chemical reactor that uses laminar flow to control reaction rate, and/or reaction distribution. LFR is generally a long tube with constant diameter that is kept at constant temperature. Reactants are injected at one end and products are collected and monitored at the other. [1]

  6. Hagen–Poiseuille equation - Wikipedia

    en.wikipedia.org/wiki/Hagen–Poiseuille_equation

    In the case of laminar flow, for a circular cross section: =, =, where Re is the Reynolds number, ρ is the fluid density, and v is the mean flow velocity, which is half the maximal flow velocity in the case of laminar flow. It proves more useful to define the Reynolds number in terms of the mean flow velocity because this quantity remains well ...

  7. Murray's law - Wikipedia

    en.wikipedia.org/wiki/Murray's_law

    Poiseuille flow in a cylinder of diameter h; the velocity field at height y is u(y).. Murray's original derivation uses the first set of assumptions described above. She begins with the Hagen–Poiseuille equation, which states that for fluid of dynamic viscosity μ, flowing laminarly through a cylindrical pipe of radius r and length l, the volumetric flow rate Q associated with a pressure ...

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