[Type the document title] [Type the document title] [Year] sai teja [Type the company name] [Pick the date] [Year] sai teja [Type the company name] [Pick the date] measurement wild drilling MWD stands for Measurement While Drilling in the oil & gas industry. The simplest way to describe MWD is to relate it to the measurements a pilot takes. A pilot needs to know the direction they are flying (North‚ South‚ East‚ or West)‚ the angle they are flying at (up‚ down‚ or horizontal)‚ and what type
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Lab 1 “Laboratory Techniques and Measurements” A. Water boils at 100C at sea level. If the water in this experiment did not boil at 100 C‚ what could be the reason? * We’re not at sea level; the pressure could be lower or higher. B. While heating two different samples of water at sea level‚ one boils at 102C and one boils at 99.2C. Calculate the percent error for each sample from the theoretical 100C. (show your work) * 1st Sample: 1.96% error * 2nd Sample: 0.81% error
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03/04/1985 CU2698 Undertake Physiological Measurements 1. 1.1 2. Physiological state in defined as “the condition or state of the body or bodily functions”. This can be measured when we perform our observations. By measuring a patient’s respiratory rate‚ oxygen saturations‚ peak flow (in asthma patients)‚ pulse rate‚ systolic and diastolic blood pressure‚ core temperature‚ blood sugar‚ pupil reaction and Glasgow coma scale. All these combined measurement can give us an insight into the patient’s
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Instruments and to Estimate their Response times. (a) Mercury – in glass thermometer (b) Thermocouple (c) Electrical resistance thermometer (d) Bio-metallic strip 2. To study the working of Bourdon Pressure Gauge and to check the calibration of the gauge in a deadweight pressure gauge calibration set up. 3. To study a Linear Variable Differential Transformer (LVDT) and use it in a simple experimental set up to measure a small displacement. 4. To study the characteristics of a pneumatic displacement
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Communication to any system Comprehensive inventory information Characteristics Measuring range 0 - 27‚000 mm (0 - 88 ft) 0 - 37‚000 mm (0 - 121 ft) Accuracy Level ± 1 mm (± 0.04”) * Housing material Stainless Steel AISI 316 Cast aluminum Operating pressure up to 6 bar / 0.6 MPa (90 psi) up to 40 bar / 4 MPa (600 psi) Mounting 2” flange on tank roof 2“ flange on stilling well *) under reference conditions Enraf tank farm management systems offer total inventory control. With these systems and the modular
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available energy per unit volume in terms of "osmotic pressure". It is customary to express this tendency toward solvent transport in pressure units relative to the pure solvent. If pure water were on both sides of the membrane‚ the osmotic pressure difference would be zero. But if normal human blood were on the right side of the membrane‚ the osmotic pressure would be about seven atmospheres! This illustrates how potent the influence of osmotic pressure is for membrane transport in living organisms.
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A pressure gauge is an instrument that measures the pressure in a vessel‚ a line‚ or whatever the pressure gauge is connected to. A Bourdon gauge consists of a C-shaped pipe with one end closed and the other end attached to a chamber whose pressure is being measured. When there is a pressure difference between the inside of the pipe and the outside‚ there will be a net force acting on the C-shaped pipe which will either try to curl the pipe into a tighter C shape (if the pressure in the pipe is
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| Assignment 2 | Guide wavelength measurements | | | Abstract The purpose of this experiment is to demonstrate: a) The techniques for measuring guide wavelength. b) The relationship between the wavelength in free space and the guide wavelength. Furthermore‚ this experiment will be a way in which to gain experience in using different types of laboratory communications equipment. Introduction What is wavelength? Wavelength of a sinusoidal wave is the distance between identical
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A. Water boils at 100°C at sea level. If the water in this experiment did not boil at 100°C‚ what could be the reason? The reason why water did not boil at 100°C could be because we are not at sea level; the pressure could be lower. B. While heating two different samples of water at sea level‚ one boils at 102°C and one boils at 99.2°C. Calculate the percent error for each sample from the theoretical 100.0°C. 1st sample 1.96% error 2nd sample 0.81% error C. An unknown
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Flow and Density Measurement Best-in-class technology for outstanding results Emerson Flow and Density Measurement Technology Committed to Your Success Emerson’s best-in-class Micro Motion® and Rosemount® flow and density measurement technologies‚ wide breadth of products‚ and unmatched value ensure you will realize outstanding results in your process and operation. Technology Leadership Decades of application experience ensure Emerson truly understands customer measurement challenges and is
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