Engineering & Materials Science
Ohmic contacts
100%
Structural properties
71%
Electric properties
70%
Annealing
65%
X ray spectroscopy
56%
Photoelectron spectroscopy
56%
Core levels
26%
Rhenium
25%
Auger electron spectroscopy
25%
Contact resistance
19%
Gold
17%
Diffraction
17%
Titanium
15%
Pyrolysis
15%
Nitrogen
15%
X rays
14%
Temperature
13%
Aluminum
12%
Electric potential
8%
Physics & Astronomy
low resistance
75%
electric contacts
58%
electrical properties
48%
annealing
39%
photoelectric emission
28%
thermal degradation
21%
rhenium
21%
contact resistance
17%
spectroscopy
17%
Auger spectroscopy
16%
electron spectroscopy
16%
x rays
14%
x ray diffraction
14%
titanium
13%
gold
12%
nitrogen
12%
aluminum
11%
shift
9%
temperature
9%
electric potential
8%
Chemical Compounds
X-Ray Photoemission
57%
Electrical Property
55%
Annealing
52%
Photoelectron Spectroscopy
43%
Contact Resistance
27%
Core Level
26%
Auger Electron Spectroscopy
25%
Pyrolysis
15%
Nitrogen
13%