Tube Radius on Fluid Flow. 1. At which radius was the fluid flow rate the highest? 6.0 mm 2. What was the flow rate at this radius? 1017.4 mmHg 3. Describe the relationship between flow rate and radius size. It was direct 4. What happens to blood vessels in the body if increased blood flow is needed? They dilate to increase flow The following questions refer to Activity 2: Studying the Effect of Viscosity on Fluid Flow. 5. At what viscosity level was the fluid flow rate the highest
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determination of force which are exerted by liquid which are at rest on surface immersed in liquids. From the study by hydrostatic‚ the following principles have been established : a) There are no shear stress present when the fluid is not in motion. b) The pressure exerted by a fluid under hydrostatic conditions. This pressure acts perpendicular to an immersed surface. c) Hydrostatic pressure various linearly‚ increasing with an increase in depth. OBJECTIVES 1. To determine the hydrostatic
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4.4 MarkingScheme For 1mark multiple-choice questions‚ 1/3 mark will be deducted for a wrong answer. Likewise‚for 2 marks multiple-choice questions‚ 2/3 mark will be deducted for a wrong answer. However‚for the linked answer question pair‚ where each question carries 2 marks‚ 2/3 mark will bededucted for a wrong answer to the first question only. There is no negative marking for wronganswer to the second question of the linked answer question pair. If the first question in thelinked pair is wrongly
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increases with increased vessel length. 09/25/14 page 1 Experiment Results Predict Question: Predict Question: What effect do you think increasing the flow tube length will have on the fluid flow rate? Your answer : c. The fluid flow rate will decrease. Stop & Think Questions: What is the relationship between fluid flow and flow tube length? You correctly answered: b. They are inversely proportional to each other. Which is more likely to occur on a daily basis? You correctly answered: b. changes in
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| | | | | | | | |SUBJECTIVE: |Fluid volume deficit related to |SHORT TERM GOAL: |>Establish rapport. |>To gain the pt’s trust |SHORT TERM GOAL: | |“Sumusuka siya ng 3 beses at |excessive vomiting and loose |After the shift‚ the
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is also known as fluid statics (fluid at rest) within the fluid mechanics field of study. This condition explains that in a stable condition‚ the fluid is at rest. The use of fluid in doing work is known as hydraulics‚ and the science of fluid in motion is known as fluid dynamics. INTRODUCTION The natural nature of fluids are they cannot remain stationary under the application of shear stress. However‚ fluid can apply force normal to any surface contacting it. If the fluid is considered as
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was compared with the predicted one. From this experiment it was obtained thatthe pressure drop increase as increasing the fluid (water or air) rates until it reach constant value. In addition‚ the bed height is constant as flow rate increased in fixed bed and it is increased as the flow rate increased when fluidization occurred. Furthermore‚ it was found that the air fluid requires higher flow rate than water in order to fluidize the bed. 1 Nomenclature Symbols Dp ε ρa μ ρs ρw A Φs L D V
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is that part of the general science of hydrodynamics that deals with the application of forces to fluids at rest. Among the chief principles of hydrostatics may be mentioned the following:(1) The intensity of pressure at any point of a fluid is the same in all directions; it is the same whether the surface that receives the pressure faces upwards‚ downwards‚ horizontally or obliquely.(2) When a fluid is confined‚ if the intensity of pressure in one part is increased‚ as by forcing in a piston or by
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than in static conditions due to friction. ECD at any point within the wellbore is calculated as follows [2]; ECD = EMD + ΔP/(TVDx0.052) Eq.5 Where; EMW = Equivalent Mud Weight of a static column of fluid open to the atmosphere ΔP = Frictional Pressure Loss TVD = True Vertical Depth During static conditions ΔP = 0 and thus; ECDstatic = EMW Eq.6 To remain within the drilling window‚ surface
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First‚ fluids are absorbed through the gut and into the bloodstream faster when their permeability closely matches that of body fluids such as blood. Sports drinks contain dissolved minerals (sodium‚ etc.) and carbohydrates‚ whereas water doesn’t‚ so water doesn’t reach the bloodstream as quickly. Sodium and other nutrients also play important roles in regulating fluid balance in the body. In other words‚ they help determine how much
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