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Schematic diagram of experimental setup

Figure 8 Schematic diagram of experimental setup for photo-CVD polysilane synthesis. Figure 8 Schematic diagram of experimental setup for photo-CVD polysilane synthesis.
Figure 2. Schematic Diagram of Experimental Setup for FGD Process. Figure 2. Schematic Diagram of Experimental Setup for FGD Process.
Figure 8 Schematic diagram of experimental setup and image of microplasma reactor with VHF source developed for the synthesis of photoluminescent silicon nanocrystals at room temperature (Nozaki et al, 2007a reproduced with permission). M.B. is a matching electrical circuit. Figure 8 Schematic diagram of experimental setup and image of microplasma reactor with VHF source developed for the synthesis of photoluminescent silicon nanocrystals at room temperature (Nozaki et al, 2007a reproduced with permission). M.B. is a matching electrical circuit.
FIGURE 13.15 Schematic diagram of experimental setup with capillary membrane for simultaneous removal and enrichment of CO2. (From Teramoto, M., Kitada, S., Ohnishi, N., et al., J. Mem. Sci., 234, 83, 2004. With permission.)... [Pg.392]

Fig. 5. A schematic diagram of experimental setup for LIF detection of metal atoms from photo-CVD processing of metal organics. Fig. 5. A schematic diagram of experimental setup for LIF detection of metal atoms from photo-CVD processing of metal organics.
Fig. 30 Schematic diagram of experimental setup to study the magnetoelastic properties... Fig. 30 Schematic diagram of experimental setup to study the magnetoelastic properties...
Figure 3. Schematic diagram of experimental setup 1. medium reservoir, 2. peristaltic pump, 3. dual hollow-fiber bioreactor, 4. water bath, 5. air or pure oxygen bombe, 6. rotameter, 7. humidifier, 8. inoculum syringe, 9. sampling bottle, 10. effluent reservoir. Figure 3. Schematic diagram of experimental setup 1. medium reservoir, 2. peristaltic pump, 3. dual hollow-fiber bioreactor, 4. water bath, 5. air or pure oxygen bombe, 6. rotameter, 7. humidifier, 8. inoculum syringe, 9. sampling bottle, 10. effluent reservoir.
FIGURE 2.3.12 (a) Schematic diagram of experimental setup for scanning Kelvin probe microscopy (SKPM). (b) Profiles of an L = 5.5 J,m P3HT transistor with Cr electrodes taken at three different temperatures V = 0 V, = -8 V). The inset shows a profile obtained after switching the source and drain contacts on the same TFT with both Cr and Cr-Au contacts Vg = 0 V, = -8 V). (From Burgi, L. et ah, J. Appl. Phys., 94, 6129-6137, 2003. Reprinted with permission. Copyright 2003, American Institute of Physics.)... [Pg.126]

Temperature Effects on the Zeta Potential, Fig. 2 Schematic diagram of experimental setup. MicroChannel chip placed directly on a hot plate surface and platinum electrodes inserted vertically into reservoirs. Voltage drop measured across a resistor in series with the microchaimel was used to calculate current flow in the electric circuit... [Pg.3212]

Figure 11.12. Schematic diagram of experimental setup of Yoshikowa oscillator. A = 0.5 M NaCl B = 0.5KC1 C = millivoltmeter D = liquiid membrane (4.5 mm) E = cotton-soaked solution of olfactory agent in a tube. Figure 11.12. Schematic diagram of experimental setup of Yoshikowa oscillator. A = 0.5 M NaCl B = 0.5KC1 C = millivoltmeter D = liquiid membrane (4.5 mm) E = cotton-soaked solution of olfactory agent in a tube.
Fig. 2.28 Schematic diagram of experimental setup (WE = working electrode, CE = counter electrode, and RE = reference electrode). Reprinted from (Kim and Kim (2006)]. Fig. 2.28 Schematic diagram of experimental setup (WE = working electrode, CE = counter electrode, and RE = reference electrode). Reprinted from (Kim and Kim (2006)].
Fig. 2.10 (a) Schematic diagram of experimental setup for microspectroscopic detection of pho-toinduced phase transition, (b) Qualitative comptirison of optical responses before and after irradiation. The change of the response at each wavelength, peirticulaily at the wavelengths of 440 and 650 nm, in the irradiated area can be clearly observed, whereas the response remains unchanged in the unirradiated area... [Pg.75]

FIGURE 4-20. Schematic diagram of experimental setup for measuring total (contact and bulk) resistance of graphite and molded graphite composite samples, including electrode-backing layers [33, 37]. [Pg.105]

Fig. 1. Schematic diagrams of experimental setup for DC discharge plasmas, where the cathode is set in the glass cell, and is (a) the ionic liquid and (b) the SUS plate. The anode is located at the top of the gas plasma region. These configurations are defined as A-mode. Fig. 1. Schematic diagrams of experimental setup for DC discharge plasmas, where the cathode is set in the glass cell, and is (a) the ionic liquid and (b) the SUS plate. The anode is located at the top of the gas plasma region. These configurations are defined as A-mode.

See other pages where Schematic diagram of experimental setup is mentioned: [Pg.511]    [Pg.392]    [Pg.795]    [Pg.198]    [Pg.534]    [Pg.1746]   
See also in sourсe #XX -- [ Pg.111 , Pg.117 ]




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Experimental schematic

Experimental setups

Schematic Diagram of the Experimental Setup

Schematic diagram of experimental

Schematic of experimental setup

Setup

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