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Shots sequence

Pelta, M.D., Morris, G.A., Stchedroff, M.J., and Hammond, SJ. 2002. A one-shot sequence for high-resolution diffusion-ordered spectroscopy. Magn. Reson. Chem. 40, S147-S152. [Pg.97]

In other words, the scene started with the excited shout, "Hurry up, the bus is here," and ended with "Look at the water " Like shots, sequences, and acts, scenes like this contain a beginning, middle, and end, and often, they culminate in a reversal, called a turning point, that motivates a shift in action of the overall story. Here, the reversal ties in with some of the film s themes. Boarding a bus in a congested, dirty city, the children arrive at the bright, open seaside. This reversal motivates the next scene—enjoying and photographing the beach. [Pg.53]

D two-dimensional FLASH fast low angle shot sequence... [Pg.419]

In some cases, for example fast shot sequence and a wide melting temperature range of the injection molding compound, no metallic thermal conduction is needed. If the cross- section of the insulation channel is big enough, 12 to 25 mm diameter, a fluid center allows passage over a certain time (Figure 1.44). The insulation channel solidifies in the case of interruption. An auxiliary parting surface is opened to demold the solidified insulation channel. [Pg.57]

It is possible to prepare very heavy elements in thermonuclear explosions, owing to the very intense, although brief (order of a microsecond), neutron flux furnished by the explosion (3,13). Einsteinium and fermium were first produced in this way they were discovered in the fallout materials from the first thermonuclear explosion (the "Mike" shot) staged in the Pacific in November 1952. It is possible that elements having atomic numbers greater than 100 would have been found had the debris been examined very soon after the explosion. The preparative process involved is multiple neutron capture in the uranium in the device, which is followed by a sequence of beta decays. Eor example, the synthesis of EM in the Mike explosion was via the production of from followed by a long chain of short-Hved beta decays,... [Pg.215]

In the most common production method, the semibatch process, about 10% of the preemulsified monomer is added to the deionised water in the reactor. A shot of initiator is added to the reactor to create the seed. Some manufacturers use master batches of seed to avoid variation in this step. Having set the number of particles in the pot, the remaining monomer and, in some cases, additional initiator are added over time. Typical feed times ate 1—4 h. Lengthening the feeds tempers heat generation and provides for uniform comonomer sequence distributions (67). Sometimes skewed monomer feeds are used to offset differences in monomer reactivity ratios. In some cases a second monomer charge is made to produce core—shell latices. At the end of the process pH adjustments are often made. The product is then pumped to a prefilter tank, filtered, and pumped to a post-filter tank where additional processing can occur. When the feed rate of monomer during semibatch production is very low, the reactor is said to be monomer starved. Under these... [Pg.26]

Frames are shot in sequence at up to three frames per second with a motor-driven 35mm camera. FIGURE 13.31 Plume photographic scaling technique and calculation procedure,... [Pg.1273]

Fig. 1.21 Echo Planar Imaging (EPI) pulse sequence. Gradient-echo based multiple echoes are used for fast single-shot 2D imaging. Slice selection along Gs and frequency encoding along C, are utilized. Phase encoding is realized using short blipped gradient pulses along Gp. Fig. 1.21 Echo Planar Imaging (EPI) pulse sequence. Gradient-echo based multiple echoes are used for fast single-shot 2D imaging. Slice selection along Gs and frequency encoding along C, are utilized. Phase encoding is realized using short blipped gradient pulses along Gp.
Three dimensional particle-in-cell simulation performed with the numerical code CALDER [77] reveals that the unprecedented efficiency of this accelerator was due to the achievement of a physical regime in which multiple electron bunches are accelerated in the gas-jet plasma during the action of each laser shot. This effect is shown in Fig. 8.7 by a snap-shot from the simulation sequence. [Pg.154]

Signal intensities in MALDI MS not only depend on the amount of the analyte but also on its chemical composition, for example, the sequence of amino acids in the case of peptides, and may underlie suppression by other components present in the sample [51,52]. Further, the hot-spot formation described above leads frequently to poor shot-to-shot and spot-to-shot reproducibilities. Both factors hamper the use of MALDI MS for quantitative... [Pg.390]

Figure 23. Variation of the intensities and time profiles of the emission from C02 produced in the sequence (15,16) passed through filters centered at 1873 cm-1 (a) and at 2066 cm" 1(b) as a function of oxygen-atom pressure marked on the diagrams in mTorr. [CF2HC1] = 10.4 mTorr, total pressure 4 Torr, 3 time resolution, (a) Data were taken over 200 laser shots at 68 Jem-2. (b) Data for 100 laser shots at 59 J cm"2. Note the different timescales for the two sets of traces. Reproduced with permission from Ref. 82. Figure 23. Variation of the intensities and time profiles of the emission from C02 produced in the sequence (15,16) passed through filters centered at 1873 cm-1 (a) and at 2066 cm" 1(b) as a function of oxygen-atom pressure marked on the diagrams in mTorr. [CF2HC1] = 10.4 mTorr, total pressure 4 Torr, 3 time resolution, (a) Data were taken over 200 laser shots at 68 Jem-2. (b) Data for 100 laser shots at 59 J cm"2. Note the different timescales for the two sets of traces. Reproduced with permission from Ref. 82.
Figure 5. Position of explosive charge in sequence of wellbore shots in five-spot pattern, Rock Springs site 5... Figure 5. Position of explosive charge in sequence of wellbore shots in five-spot pattern, Rock Springs site 5...

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