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journal article
Influence of preparation process on morphology and conductivity of carbon black-based electrospun nanofibers
Tarasova, Elvira
;
Byzova, Arina
;
Savest, Natalja
;
Viirsalu, Mihkel
;
Gudkova, Viktoria
;
Märtson, Triin
;
Krumme, Andres
Fullerenes, nanotubes and carbon nanostructures
2015
/
p. 695-700 : ill
http://dx.doi.org/10.1080/1536383X.2014.974090
journal article
Number of records 1, displaying
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keyword
101
1.
effect of preparation procedure
2.
civil procedure
3.
cleaning procedure
4.
collective complaint procedure
5.
European Small Claims Procedure
6.
experimental procedure
7.
high pressure liquid chromatography procedure
8.
international civil procedure
9.
legislative procedure
10.
Liu procedure
11.
numerical procedure
12.
one-step procedure sintering
13.
feedstock preparation
14.
plan preparation
15.
preparation technique
16.
Sample preparation
17.
surface preparation
18.
Ageing effect
19.
amplification effect
20.
ampli-fication effect
21.
anticompetitive object/effect
22.
attenuation effect
23.
axial end effect
24.
Buffer effect
25.
bullwhip effect
26.
butterfly effect
27.
cascading effect
28.
combinatorial effect (CE)
29.
company size effect
30.
Computational effect
31.
dead-time effect
32.
disposition effect
33.
Doppler effect
34.
Dunning-Kruger effect
35.
dysynergistic effect
36.
economic effect
37.
edge effect
38.
effect
39.
effect concentrations bioaccumulation
40.
effect measurement
41.
effect of high bide
42.
effect of surfactant
43.
effect of Ti and Nb
44.
effect on competition
45.
EMF effect
46.
exchange rate effect
47.
Failure mode and effect analysis (FMEA)
48.
failure modes and effect analysis
49.
family background effect
50.
field effect transistor
51.
fixed country-effect model
52.
Hall–Petch effect
53.
hexokinase Warburg effect
54.
horizontal effect doctrine
55.
housemoney effect prospect theory
56.
incentive effect
57.
indirect effect
58.
junction field-effect transistor (JFET)
59.
leverage effect
60.
longitudinal end effect
61.
magneto-elastic effect
62.
mass loading effect
63.
matrix effect
64.
mediation effect
65.
memory effect
66.
metal-oxide-semiconductor field-effect transistors (MOSFETs)
67.
microwave effect
68.
mineral matter effect
69.
mitigation strategies of UHI effect
70.
moderating effect
71.
multiple stressor effect sizes
72.
multiple stressor effect types
73.
multiplier effect
74.
peer effect
75.
placebo effect
76.
plasmonic effect
77.
pseudo-Jahn-Teller effect
78.
real estate wealth effect
79.
reflection effect
80.
reservoir effect
81.
Sandelin effect
82.
school effect
83.
size effect
84.
skin effect
85.
skin-effect
86.
snappy effect
87.
solvent effect
88.
stack effect
89.
Streisand effect
90.
substituent effect
91.
surface plasmon resonance effect
92.
synergetic effect
93.
synergistic effect
94.
Talbot effect
95.
temperature effect
96.
temperature effect component
97.
the Diderot effect
98.
thickness effect
99.
transverse edge effect
100.
Warburg effect
101.
wind effect
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