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Cylinder scale

Material 8 small beakers, plastic pipettes, measuring cylinders, scales, photometer 0.1 -M solutions of copper sulfate and ammonia, ammonium nitrate. [Pg.255]

In addition to a geological evaluation on a macroscopio and microscopic scale, plugs (small cylinders 2 cm diameter and 5 cm long) are cut from the slabbed core, usually at about 30 cm intervals. Core analysis is carried out on these samples. [Pg.129]

Fig. 3. Circular C-scan image of A/Si-alloy cylinder showing six discontinuity types. Grey scale in [dB] of echo from discontinuity (gate 2). Fig. 3. Circular C-scan image of A/Si-alloy cylinder showing six discontinuity types. Grey scale in [dB] of echo from discontinuity (gate 2).
The surface forces apparatus of crossed mica cylinders (Section VI-4D) has provided a unique measurement of friction on molecular scales. The apparatus is depicted in Fig. VI-3, and the first experiments involved imposing a variation or pulsing in the sepa-... [Pg.450]

Sodium Hypochi ite. zM- This may be prepared with sufficient accuracy by dissolving 100 g. of NaOH in 200 ml. of water in a large beaker, cooling the solution, and then adding about 500 g. of crushed ice. Now counterpoise the beaker on a rough set of scales, and pass in chlorine from a cylinder until an increase in weight of 72 g. is obtained. Make up the solution to i litre and stir well. The solution must be kept in a cool dark place, but even then slowly decomposes. [Pg.525]

Purification of specialty gases can be divided into two areas purification done by the gas suppHer on a bulk scale prior to filling the cylinder or other dehvery container, and purification carried out by the consumer on a point-of-use scale generally just prior to use. [Pg.89]

Silane. Silane is a colorless gas that is spontaneously flammable in air and slowly decomposed by water in the presence of aqueous alkah it is completely hydrolyzed to form hydrogen and siUcates. It is manufactured on a commercial scale and sold as a compressed gas in cylinders. It is prepared by the reaction... [Pg.299]

Production, Shipment, and Specifications. Carbonyl sulfide is available ia 97% min purity ia cylinders up to 31.8 kg contained weight. It is shipped as a flammable gas. There appears to be no full-scale commercial production of carbonyl sulfide ia the United States. [Pg.130]

The largest use for calcium carbide is in the production of acetylene for oxyacetylene welding and cutting. Companies producing compressed acetylene gas are located neat user plants to minimize freight costs on the gas cylinders. Some acetylene from carbide continues to compete with acetylene from petrochemical sources on a small scale. In Canada and other countries the production of calcium cyanamide from calcium carbide continues. More recentiy calcium carbide has found increased use as a desulfurizing reagent of blast-furnace metal for the production of steel and low sulfur nodular cast iron. [Pg.462]

Tank Cells. A direct extension of laboratory beaker cells is represented in the use of plate electrodes immersed into a lined, rectangular tank, which may be fitted with a cover for gas collection or vapor control. The tank cell, which is usually undivided, is used in batch or semibatch operations. The tank cell has the attraction of being both simple to design and usually inexpensive. However, it is not the most suitable for large-scale operation or where forced convection is needed. Rotating cylinders or rotating disks have been used to overcome mass-transfer problems in tank cells. An example for electroorganic synthesis is available (46). [Pg.90]

It is essential to use a slow-speed (approximately 0.1 r/min) picket rake in all cylinder tests to prevent particle bridging and allow the sample to attain the underflow density which is obtainable in a full-scale thickener. [Pg.1680]

To determine the compression-zone requirement in a thickener, a test should be run in a deep cylinder in which the average settling pulp depth approximates the depth anticipated in the full-scale basin. The average density of the pulp in compression is calculated and used in Eq. (18-47) to determine the required compression-zone volume ... [Pg.1681]

Analysis of neutron data in terms of models that include lipid center-of-mass diffusion in a cylinder has led to estimates of the amplitudes of the lateral and out-of-plane motion and their corresponding diffusion constants. It is important to keep in mind that these diffusion constants are not derived from a Brownian dynamics model and are therefore not comparable to diffusion constants computed from simulations via the Einstein relation. Our comparison in the previous section of the Lorentzian line widths from simulation and neutron data has provided a direct, model-independent assessment of the integrity of the time scales of the dynamic processes predicted by the simulation. We estimate the amplimdes within the cylindrical diffusion model, i.e., the length (twice the out-of-plane amplitude) L and the radius (in-plane amplitude) R of the cylinder, respectively, as follows ... [Pg.488]

It would appear obvious for startup, and in some cases full-time operation. that a suction strainer or filter is mandatory. The reason for ilic strainer is to keep Junk and pipe scale out of the compressor. Fines from pipe scale and rust will make short work of the internal bore of a cylinder and are not all that good for the balance of the components. In some severe ca.ses, cylinders have been badly damaged in a matter of a few weeks. The strainer should be removable in service for cleaning, particularly when it is intended for permanent installation. Under all circumstances, provision must be made to monitor the condition of the strainer. Much frustration has been expended because a compressor overheated or lost capacity and no one knew if the strainer had fouled or blinded. [Pg.66]

Carburetors, pistons, piston rings, and valves Fluid power cylinders and actuators Fluid power pumps and motors Scales and balances, except laboratory Industrial and commercial machinery and equipment, n.e.c ... [Pg.57]


See other pages where Cylinder scale is mentioned: [Pg.508]    [Pg.8]    [Pg.51]    [Pg.106]    [Pg.508]    [Pg.8]    [Pg.51]    [Pg.106]    [Pg.133]    [Pg.158]    [Pg.897]    [Pg.101]    [Pg.36]    [Pg.476]    [Pg.428]    [Pg.211]    [Pg.233]    [Pg.1]    [Pg.241]    [Pg.160]    [Pg.557]    [Pg.671]    [Pg.1200]    [Pg.1680]    [Pg.1681]    [Pg.1722]    [Pg.1768]    [Pg.1940]    [Pg.1942]    [Pg.21]    [Pg.485]    [Pg.494]    [Pg.86]    [Pg.294]    [Pg.183]    [Pg.98]    [Pg.431]    [Pg.65]    [Pg.144]   
See also in sourсe #XX -- [ Pg.508 ]




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Scaling of Cylinder Spacings in Thin Films

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