patient with a fluid or electrolyte imbalance for falls‚ especially older adults. 2 Use safety precautions to prevent injury or death when administering parenteral potassium-containing solutions. 3 Supervise the oral fluid therapy and intake and output measurement aspects of care delegated to unlicensed assistive personnel. Health Promotion and Maintenance 4 Teach healthy adults and patients how to prevent dehydration. 5 Assess patients for factors that increase the risk for fluid and electrolyte
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interstitial fluid‚ and intracellular fluid are identical‚ but the quantity of each substance varies among the compartments. The most striking differences are the low protein content in interstitial fluid compared with intracellular fluid and plasma and the fact that sodium and chloride ions are largely extracellular‚ whereas most of the potassium ions (approximately 90%) are intracellular. This unequal distribution of ions results in a voltage difference across cell membranes. Extracellular fluid can be
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2013/2014 Assignment 1 (10 marks) Answer ALL the questions. 1. Discuss briefly fluid mosaic model for membrane structure. (6 marks) Answer: The lipids and most of the protein in the plasma membrane are free to bob about‚ sliding from one location in the membrane to another. Because lipids and proteins move about laterally within the membrane‚ the membrane is a fluid mosaic of lipids and proteins. The membrane fluid is since the composition of any location on the membrane can change. In the same
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Fluid Catalytic Cracking Fluid catalytic cracking* (FCC) is the most important conversion process used in petroleum refineries. It is widely used to convert the high-boiling hydrocarbonfractions of petroleum crude oils into more valuable [1][2][3] gasoline‚ olefinic gases and other products. . Cracking of petroleum hydrocarbons for conversion of heavy fractions into lighter fractions was originally done by thermal cracking which has been almost completely replaced by catalytic cracking because
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P4 – Explain the role of the kidney in the homeostatic control of fluid balance Homeostasis is how our body works to keep the internal environment constant. The kidneys play a role in the control of fluid balance. For this assignment I will be discussing the gross anatomy of the renal system and the kidney. Renal System The renal system is a group of organs that work together to produce‚ store‚ and release urine. It consists of 2 kidneys‚ ureters‚ the urinary bladder‚ urethra and renal vessels which
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Basics of Fluid Mechanics Genick Bar–Meir‚ Ph. D. 2729 West Jarvis Ave Chicago‚ IL 60645-1335 email:barmeir at gmail.com Copyright © 2010‚ 2009‚ 2008‚ 2007‚ and 2006 by Genick Bar-Meir See the file copying.fdl or copyright.tex for copying conditions. Version (0.2.4 March 2‚ 2010) ‘We are like dwarfs sitting on the shoulders of giants” from The Metalogicon by John in 1159 CONTENTS Nomenclature GNU Free Documentation License . . . . . . . . . . . . . . . . 1. APPLICABILITY AND DEFINITIONS
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9 Effect of partial slip boundary condition on the flow and heat transfer of nano-fluids past stretching sheet prescribed constant wall temperature international Journal of Thermal Sciences Nanofluid; Partial slip; Similarity solution; Stretching sheet; Constant wall temperature : The objective of the present study is to analyze the development of the slip effects on the boundary layer flow and heat transfer over a stretching surface in the presence of nanoparticle fractions. In the modeling
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Proceedings of the 29th Annual International Conference of the IEEE EMBS Cité Internationale‚ Lyon‚ France August 23-26‚ 2007. ThP2D2.8 A Numerical Simulation of Peristaltic motion in the Ureter Using Fluid Structure Interactions Bahman Vahidi and Nasser Fatouraee of the muscle depends on the load against which it is contracting as well as on its current geometry and its state of activation‚ and that load consists largely of the hydrodynamic (viscous) forces required to move the urine. A
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2203ENG ENGINEERING FLUID MECHANICS Performed on April 12‚ 2013 Due date April 19‚ 2013 Laminar and Turbulent Flow Experiment #6 joe blog Table of Contents Introduction pg3 Summary pg3 Objectives pg3 Method pg4 Results pg5 Discussion. .pg6-7 References pg8 Appendix pg 9-11 Introduction In this experiment we used water in a Venturi as this was interpretive of the characteristics of all flowing fluids. The water was conveyed through a conduit in
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first is a colloid of silicon dioxide particles suspended in polyethylene oxide. this liquid is a Shear thickening fluid which hardens on impact. the second liquid used is a magnetorheological (MR) fluid. MR fluids are oils that are filled with iron particles and can change its viscosity to a solid state when a magnetic field is applied to it. The third section of the poster
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