of air and other gaseous fluids and with the forces acting on bodies in motion relative to such fluids http://www.merriam-webster.com/dictionary/aerodynamics Other: aerios‚ concerning the air‚ and dynamis‚ which means force. http://www.grc.nasa.gov/WWW/K-12/airplane/bga.html Bernoulli’s Principle: • The relationship between the velocity and pressure exerted by a moving liquid • States that for an inviscid flow‚ an increase in the speed of the fluid occurs simultaneously with
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Objective of the Report: The Primary Objective of this report is to analysis of cross cultural communication in IBM. The report has accumulated information to know about company’s cross cultural communication‚ to find out its positive and productive communication in their organization and does the work effectively. Methodology: Sources of data: • Secondary Data: All the data and information are collected from secondary sources. Cross-Cultural Communication:
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Joe Bacchi Week 3a A. Create a Process Flow Map for an organization (or part of an organization) of your choice. Producing a Quiznos Sub Order raw materials (bread‚ meat‚ cheese‚ dressings‚ vegetables‚ etc.) Unpack ordered materials Store raw materials in refrigerator Install toaster Make sandwich Toast sandwich Package sandwich OPTIMIZING PROCESS FLOWS Read case Body Scans and Bottlenecks: Optimizing Hospital CT Process Flows. Drawing from this case‚ please address the
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The Effects of varying p-Nitrophenyl Phosphate concentrations on Alkaline Phosphatase Activity Nathan Overholt Louis Settembrino March 5‚ 2002 Abstract: The enzyme Alkaline Phosphatase was set up in solutions of varying p-nitrophenyl phosphate concentrations. A fixed time assay was used to find the Michaelis constant and Vmax. All solutions were incubated at 30 C° for 30 mins. Absorbances were measured at 405 nm‚ and the Km was found to be 0.002 M (pNPP) and the Vmax to be 0.433 A/min. Introduction:
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Convection Flow of Fluids of Different Prandtl Numbers in the Stokes Problem for a Vertical Porous Plate Basant K. JHA and Clement A. APERE J. Phys. Soc. Jpn. 81 (2012) 064401 # 2012 The Physical Society of Japan Person-to-person distribution by the author only. Not permitted for publication for institutional repositories or on personal Web sites. FULL P APERS Journal of the Physical Society of Japan 81 (2012) 064401 DOI: 10.1143/JPSJ.81.064401 MHD Natural Convection Flow of Fluids of
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FM 2 FLOW ALONG A VENTURI TUBE Summary The objectives of the experiment is to study the validity of the Bernoulli equation and to determine the coefficient of discharge‚ Cd‚ by calibrating the venturi tube as a flow meter. To investigate the validity of the Bernoulli equation‚ the static pressure is taken at each tapping and the total head is determined for the maximum difference setting. The velocity head is calculated using the Bernoulli equation. To calculate Cd‚ the volumetric flow rate
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Hydraulic Systems Examples of hydraulic systems Basic hydraulic system Basic fluid power symbols Basic fluid power ANSI/ISO symbols Basic fluid power symbols Hydraulic Pumps Pump characteristic Operating pressure Speeds Displacement volume (V) – volume of liquid per revolution Volumetric flow rate: Q = n × V where n : number of rotation (rpm) V : displacement volume (per rev) Pump Efficiency (Volumetric) To determine performance of pump Divided into two: Volumetric efficiency
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Difference Between Cash Flow and Funds Flow Statement Many people think that both cash and fund are same‚ however they both are different and so is the case with cash flow statement and funds flow statement. Let’s look at some of the differences between cash flow and funds flow statement – 1. While funds flow statement reveals the change in the working capital of a company between two balance sheet dates while cash flow statement reveals the change in the cash position of the company between two
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Basic equations of fluid statics | | | | | | | | | | | | | | | | An equation representing pressure field P = P (x‚ y‚ z) within fluid at rest is derived in this section. Since the fluid is at rest‚ we can define the pressure field in terms of space dimensions (x‚ y and z) only. Consider a fluid element of rectangular parellopiped shape( Fig : L - 7.1) within a large fluid region which is at rest. The forces acting on the element are body and surface forces. | | Body force
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Id Question The fluid property‚ due to which‚ mercury does not wet the glass is A surface tension B viscosity C cohesion D adhesion Answer A Marks 1 Unit A1 Id Question The dimension of dynamic viscosity is A ML-1T-1 B L2T-1 C LT-2 D ML-1T-2 Answer A Marks 2 Unit A1 Id Question The fluid‚ in which the shearing stress within it is proportional to the velocity gradient across the sheared section‚ is called a __________ fluid. A Bingham B Newtonian
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