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1 een the Riboflavin (vitamin B2) and the SERS active electrode.
2 trode or via a bipolar mode that employs two active electrodes.
3 ) that causes the fluid to rotate around the active electrodes.
4 and the standard electrode potentials of the active electrodes.
5 ioned over both the embedded tubing and SERS active electrode (aligned approximately 200 mum from eac
6 ively, via a monopolar mode that utilizes an active electrode and a grounded electrode or via a bipol
7                                          The active electrode and its cord emit radiofrequency energy
8 few nanoseconds for devices consisting of Cu active electrodes and amorphous silica dielectrics and w
9 electrode-array balloon catheter that has 64 active electrodes and ring electrodes for emitting a loc
10 e transformed in a ring maintaining the same active electrode area than the summation of the closest
11  was fabricated with a lithographic process; active electrode area was defined by a photosensitive po
12 nt on a nanoelectrode by the increase in the active electrode area.
13 e same session in 12 normal subjects with an active electrode at Oz referenced to the inion (Oz-In) o
14 cholecystectomy were randomized to separated active electrode/camera cords or parallel oriented activ
15          We hypothesized that separating the active electrode/camera cords would reduce thermal injur
16  incision in comparison to parallel oriented active electrode/camera cords.
17  electrode/camera cords or parallel oriented active electrode/camera cords.
18 ion of the laparoscopic camera cord from the active electrode cord decreases thermal injury from ante
19        This phenomenon is increased when the active electrode cord is oriented parallel to another wi
20 ter angle and with greater separation to the active electrode cord, or lowering the generator power s
21 issue temperature when lying parallel to the active electrode cord: EKG pad 2.4 degrees C +/- 1.2 deg
22        The 64-channel EEG was recorded using active electrodes during a constant stimulation procedur
23     Antenna coupling occurs when the "bovie" active electrode (electrically active transmitting anten
24  that the basal plane of HOPG is a much more active electrode for many classes of electrode reactions
25  electrocatalytically and photocatalytically active electrodes for water oxidation is described.
26 tchability as both the current collector and active electrode, high-performance transparent and stret
27 y-stacked layers was grown and applied as an active electrode in rechargeable batteries.
28  far prevented the use of these materials as active electrodes in EDLCs.
29 Ultrathin manganite films are widely used as active electrodes in organic spintronic devices.
30              Individual VTA models of the 42 active electrodes included in the study demonstrated a m
31 rvice life have predominantly focused on the active electrode materials and electrolytes.
32 of a new generation of supercapacitors whose active electrode materials can be tuned rationally, at t
33 ons of nanostructured conductive polymers as active electrode materials for electrochemical capacitor
34  holey graphenes are used exclusively as the active electrode materials in EDLCs.
35 ns of different structures with vacancies as active electrode materials of lithium or sodium ion batt
36                 In 1 M KOH and with the most active electrode, overpotentials as low as 240 and 270 m
37 tributed to (i) substantial increases in the active electrode surface area, and (ii) improved electro
38                                Instead, the "active" electrode that forms upon cycling is a nanocompo
39 ique transports charged biomolecules between active electrodes upon application of a small potential
40 colloidal nanoparticles are used as the SERS-active electrode, which exhibit long-term stability once

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