PPT-Rate of Flow of Intravenous Fluids

Author : phoebe-click | Published Date : 2016-11-08

Yewande Dayo Student Pharmacist Objectives Upon completion of this lecture students should be able to Perform calculations for adult and pediatric intravenous infusions

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Rate of Flow of Intravenous Fluids: Transcript


Yewande Dayo Student Pharmacist Objectives Upon completion of this lecture students should be able to Perform calculations for adult and pediatric intravenous infusions Perform rateofflow calculations for intravenous fluids. Classification of Non-Newtonian Fluids. Laminar Flow of a Non-Newtonian fluid in Circular Pipes. Recommended text-book: W.F. Hughes, J.A. Brighton, . Schaum's. outline of theory and problems of fluid dynamics, New York: McGraw Hill, 1999. Parenteral. Admixtures, and Rate-of-Flow Calculations. Danielle DelVillano, Pharm.D.. Objectives. Perform calculations for the adult and pediatric intravenous infusions. Perform calculations for intravenous additives. . Fluids at rest .  Fluid Statics. Why things float .  . Archimedes’ Principle. . Fluids in Motion .  . Fluid Dynamics. Hydrodynamics. Aerodynamics. 1. Review: Archimedes principle. . Fluids. A fluid is anything that flows: liquids and gases. One . common characteristic is that fluids have no fixed shape and are easily . deformed: . t. ake the shape of their containers.. Density. The density of a substance is the quantity of matter contained in a unit volume of the substance. . Quiz 7 – 2014.01.10 . Question (15 . mins. ). A small capillary with an inside diameter of 2.22 .  10. -3. m and a length 0.317 m is being used to continuously measure the flow rate of a liquid having a density of 875 kg/m. Dr . Pankaj. Sharma . MD(Pediatrics). HOW . TO GIVE ?. HOW MUCH TO . GIVE ?. WHAT TO GIVE?. HOW TO GIVE. Electronic Devises.. . Infusion Sets. Pediatric drip set. Ms. Deanne Science 8. Solubility Lab. What did we learn from our lab?. What are some things we observed?. FACTORS AFFECTING SOLUBILITY. TYPE . OF SOLVENT. - Sugar will dissolve in . water. but not . . Fluids at rest .  Fluid Statics. Why things float .  . Archimedes’ Principle. . Fluids in Motion .  . Fluid Dynamics. Hydrodynamics. Aerodynamics. 1. Review: Archimedes . principle. . MAT 119 Chapter 15. Part 1. IV Components. Abbreviation. Solution Component. D. Dextrose. W. Water. S. Saline. NS. Normal Saline . (0.9% sodium chloride). NaCl. Sodium Chloride. RL. Ringer’s Lactate.  Fluid Statics. Why things float .  . Archimedes’ Principle. . Fluids in Motion .  . Fluid Dynamics. Hydrodynamics. Aerodynamics. 1. Example. : What does 1 liter (about a quart) of water weigh?. L-14 Fluids - 3 Fluids at rest  Fluid Statics Why things float  Archimedes’ Principle Fluids in Motion  Fluid Dynamics Hydrodynamics Aerodynamics 1 Review: Archimedes principle  Admixtures, and Rate-of-Flow. Calculations. By . Ali . Khidher. . Alobaidy. Injections are sterile pharmaceutical solutions or suspensions of a drug substance in an . aqueous or . nonaqueous. vehicle. . Michael L. Moritz, MD, FAAP. Matthew D. Garber, MD, FHM, FAAP. On behalf of the Subcommittee on Fluid and Electrolyte Therapy. Sahar N. Rooholamini, MD, MPH, FAAP. On behalf of VIP SOFI Project. Clinical Practice Guideline: . Highway and Transportation Engineering. Mustansiriyah. University. Second Year. 2021-2022. Asst. Prof. . Nidaa. A. . Jasim. Dr. . Rana. Amir . Yousif. S. yllabus. :. Introduction: . Properties of fluids.

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