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Dumps

The 3D inspection system has a number of measuring and report utilities that enables the user to easily find, analyse and report possible indications in the test object. As an example, a moveable 2D projection view plane can be moved along e.g, the welding geometry dynamically updating the content of the 2D projection view window. Indications can be measured using any referenee co-ordinate system and the results and screen dumps can automatically be dumped in report files suited for later import into a word processing application. [Pg.872]

Figure Al.6.30. (a) Two pulse sequence used in the Tannor-Rice pump-dump scheme, (b) The Husuni time-frequency distribution corresponding to the two pump sequence in (a), constmcted by taking the overlap of the pulse sequence with a two-parameter family of Gaussians, characterized by different centres in time and carrier frequency, and plotting the overlap as a fiinction of these two parameters. Note that the Husimi distribution allows one to visualize both the time delay and the frequency offset of pump and dump simultaneously (after [52a]). Figure Al.6.30. (a) Two pulse sequence used in the Tannor-Rice pump-dump scheme, (b) The Husuni time-frequency distribution corresponding to the two pump sequence in (a), constmcted by taking the overlap of the pulse sequence with a two-parameter family of Gaussians, characterized by different centres in time and carrier frequency, and plotting the overlap as a fiinction of these two parameters. Note that the Husimi distribution allows one to visualize both the time delay and the frequency offset of pump and dump simultaneously (after [52a]).
Figure Al.6.31. Multiple pathway interference interpretation of pump-dump control. Since each of the pair of pulses contains many frequency components, there are an infinite number of combination frequencies which lead to the same fmal energy state, which generally interfere. The time delay between the pump and... Figure Al.6.31. Multiple pathway interference interpretation of pump-dump control. Since each of the pair of pulses contains many frequency components, there are an infinite number of combination frequencies which lead to the same fmal energy state, which generally interfere. The time delay between the pump and...
Pshenichnikov M S, de Boeij W P and Wiersma D A 1994 Generation of 13 fs, 5 MW pulses from a cavity-dumped Ti sapphire laser Opt. Lett. 19 572-4... [Pg.1992]

Anglo-Saxon, Seolfor siolfur L. argentum) Silver has been known since ancient times. It is mentioned in Genesis. Slag dumps in Asia Minor and on islands in the Aegean Sea indicate that man learned to separate silver from lead as earl as 3000 B.C. [Pg.64]

So now that we have all the reagents out of the way let s see how the reaction proceeds. There s the clear- yellow "safrole" sitting in the bottom if the flask and the clear saturated KOH solution is dumped in. The solution is heated to reflux etc. and yes, some brown byproducts and destruction artifacts will appear. Especially if the safrole is not pure. These byproducts should be expected to some extent because concentrated basic (OH) solutions can be as nasty as concentrated acidic solutions. One is mindful that KOH is less intrusive towards the delicate methylenedioxy ring structure of the safrole/isosafrole molecule. [Pg.40]

The chemist now gives her knuckles a crack and begins. An appropriate sized flask or PP container is placed in a tray of water on the stirplate. Into the flask is dumped 800mL acetone, 25mL... [Pg.88]

When completed, the solution is merely dumped into 1L of dH20 and extracted 3 x lOOmL Et20 or DCM or benzene. BUT when that solution hits the solvent, the biggest, ugliest emulsion Strike has ever hypothesized occurs. It is wicked The chemists can try all the usual tricks to get rid of that bitch, but when it comes down to it, there is only one way that works. The chemist is going to have to extract with hundreds upon hundreds of mLs of solvent. The idea here is to saturate both the aqueous and emulsion layer with so much solvent that a separate solvent layer can form. Once saturated, the entire mix can then be properly extracted. [Pg.89]

The cooled reaction mixture can be induced to crystallize its p-nitropropene payload by simply dumping the whole thing in a large volume of ice water [40],... [Pg.130]

METHOD 2 [89]--1M MDA or benzedrine and 1M benzaldehyde is dissolved in 95% ethanol (Everclear), stirred, the solvent removed by distillation then the oil vacuum distilled to give 95% yellow oil which is a Schiff base intermediate. 1M of this intermediate, plus 1M iodomethane, is sealed in a pipe bomb that s dumped in boiling water for 5 hours giving an orangy-red heavy oil. The oil is taken up in methanol, 1/8 its volume of dH20 is added and the solution refluxed for 30 minutes. Next, an equal volume of water is added and the whole solution boiled openly until no more odor of benzaldehyde is detected (smells like almond extract). The solution is acidified with acetic acid, washed with ether (discard ether), the MDMA or meth freebase liberated with NaOH and extracted with ether to afford a yield of 90% for meth and 65% for MDMA. That s not a bad conversion but what s with having to use benzaldehyde (a List chemical) Strike wonders if another aldehyde can substitute. [Pg.159]

METHOD 2 [128, 129]--To make dibromodioxane one stirs 500g dioxane in a flask which is in an ice bath, all of which is in the hood. 990g of liquid Bra is rapidly added, causing the solution to get hot (one can also bubble in an approximate amount of bromine from a gas canister). The solution is dumped into a bucket containing 2L of ice water, causing the immediate formation of a large mass of orange dibromodioxane crystals which are separated by vacuum filtration and dried. [Pg.224]

To clean the white residue off of your glassware, dump some muriatic acid straight from the jug onto them and swirl. [Pg.265]

Prepare a paste out of 65g Sodium Azide (lm NaN ) and 65mL of water in a beaker. Add 400mL of either Chloroform or Benzene to this paste (depending on what you have available, but be consistent later on) and stir well. Dump this mixture into a round bottom flask situated in an ice/salt bath, drop in a stirrer magnet, attach a Claisen adapter, addition funnel, and thermometer. Let this mixture cool to OC. [Pg.267]

Acetamide [60-35-5] C2H NO, mol wt 59.07, is a white, odorless, hygroscopic soHd derived from acetic acid and ammonia. The stable crystalline habit is trigonal the metastable is orthorhombic. The melt is a solvent for organic substances it is used ia electrochemistry and organic synthesis. Pure acetamide has a bitter taste. Unknown impurities, possibly derived from acetonitrile, cause its mousy odor (1). It is found ia coal mine waste dumps (2). [Pg.73]

Batch Extractors. Coarse soHds are leached by percolation in fixed or moving-bed equipment. Both open and closed tanks (qv) having false bottoms are used, into which the soHds are dumped to a uniform depth and then treated with the solvent by percolation, immersion, or intermittent drainage methods. [Pg.90]

The other purpose for which physical evidence is used is to develop associative evidence in a case. Physical evidence may help to prove a victim or suspect was at a specific location, or that the two came in contact with one another. In one case, building material debris (wooden splinters, tar paper, insulation material) was found on a blanket used to wrapped a body that was found dumped at the side of a road. The evidence suggested an attic and eventually led detectives to the location where the murder occurred. [Pg.485]

Municipal Solid Waste. In the eady 1990s, the need to dispose of municipal soHd waste (MSW) ia U.S. cities has created a biofuels industry because there is Htde or no other recourse (107). Landfills and garbage dumps are being phased out ia many communities. Combustion of MSW, ie, mass-bum systems, and RDF, ie, refuse-derived fuel, has become an estabhshed waste disposal—energy recovery industry. [Pg.40]

GaUium prices, stable up to 1991, fluctuated in 1992 because of gallium from China and Eastern European Bloc countries. The market destablized owing to spot offers and dumping. The reHabUity of these products was a real problem, however, and the consequence of market variations was dramatic for small manufacturers. [Pg.165]


See other pages where Dumps is mentioned: [Pg.714]    [Pg.269]    [Pg.270]    [Pg.273]    [Pg.274]    [Pg.1473]    [Pg.1970]    [Pg.1971]    [Pg.2447]    [Pg.2697]    [Pg.3028]    [Pg.28]    [Pg.98]    [Pg.101]    [Pg.102]    [Pg.198]    [Pg.278]    [Pg.198]    [Pg.24]    [Pg.229]    [Pg.392]    [Pg.18]    [Pg.39]    [Pg.39]    [Pg.274]    [Pg.433]    [Pg.90]    [Pg.99]    [Pg.99]    [Pg.379]    [Pg.104]    [Pg.105]    [Pg.105]   
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See also in sourсe #XX -- [ Pg.498 ]

See also in sourсe #XX -- [ Pg.124 , Pg.125 ]

See also in sourсe #XX -- [ Pg.1160 , Pg.1161 , Pg.1225 ]




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Apple dumping

Bag dump stations

Bottom relief (dumping)

Cavity dumping

Chemical weapons dumped at sea

Clean Up Tire Dumps

Complete pump-dump control

Condensate dumping

Copper ores, dump leaching

Copper sulfide waste dumps, leaching

DUMP (2*-deoxyuridine

DUMP EXTRUSION

DUMP suppression test

Decay heat dump tanks

Deoxyuridine monophosphate (dUMP

Dose-dumping

Dump combustor

Dump configuration

Dump copper

Dump criteria

Dump extruders

Dump fees

Dump leaching

Dump leaching Bingham Mine

Dump leaching acid consuming reactions

Dump leaching dissolution reactions

Dump leaching major unknowns

Dump leaching processes, sequence

Dump leaching solution application

Dump line

Dump loads

Dump point

Dump power

Dump resistors

Dump systems

Dump tank heating and cooling

Dump tanks

Dump trucks

Dump valve

Dumped model

Dumped packed towers

Dumped packings, random

Dumped-type packings

Dumping

Dumping

Dumping Explosive and Chemical Ordnance Underwater

Dumping devices

Dumping garbage from ships

Dumping phosgene

Dumping site

Dumping syndrome

Dumping trays

Dumping, defined

Dumping, illegal

Dumping, social

Dumping/weeping

Dumping/weeping (distillation

Electrical load dump

Environmental Degradation by Clays from Waste Dumps

F-dUMP

Fractionators random dumped packings

Heat dump

Heated dump bodied trucks

How Trays Work Dumping

Industrial dumps

Instability dumping

Laser cavity-dumped

Leaching dump method

Liquid dump valves

Load-haul-dumps

London Dumping Convention

Love Canal dump

Mixing dump temperature

Moderator dump

Ocean Dumping Act

Ocean dumping

Open dump

Open dumping

Packed column random dumped packings

Packed columns dumped packings

Packed tower design random-dumped packing

Packing dumped

Packing installation dumped

Pump dump control

Pump-Dump Control Few-Level Excitation

Pump-Dump Excitation with Many Levels Tannor-Rice Scheme

Pump-dump control chirality

Pump-dump control experiments

Pump-dump control partially coherent lasers

Pump-dump excitation

Pump-dump mechanism

Pump-dump probe

Pump-dump pulse separation

Pump-dump scheme

Radioactive wastes, ocean dumping

Rubbish dump

Sea dumping

Sizing methods for bottom relief (dumping) of gassy reactions

Tailing dumps

The dUMP Suppression Test

Thymidylate Is Formed from dUMP

Toxic waste dumping

Tray deck dumping

Understanding with respect to the terms buried by a state party on its territory and dumped at sea

Vitamin dUMP suppression test

Waste, hazardous illegal dumping

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