Engineering & Materials Science
Phenols
98%
Formaldehyde
97%
Urea
96%
Curing
73%
Binders
72%
Aging of materials
62%
Degradation
54%
Mineral wool
49%
Coupling agents
30%
Electrospray ionization
30%
Hydrolysis
28%
Wool fibers
23%
X ray photoelectron spectroscopy
19%
Fibers
16%
Insulation
13%
Urea formaldehyde resins
12%
Organic coatings
11%
Chemical analysis
10%
Thermogravimetric analysis
8%
Minerals
7%
Industrial applications
7%
Adhesives
7%
Atmospheric humidity
6%
Powders
6%
Polymers
5%
Decomposition
5%
Water
4%
Temperature
3%
Physics & Astronomy
phenols
100%
formaldehyde
96%
ureas
96%
curing
82%
degradation
58%
wool
36%
minerals
35%
hydrolysis
24%
fibers
19%
insulation
13%
photoelectron spectroscopy
11%
ionization
9%
products
9%
climate
8%
methylene
8%
integrity
7%
resins
7%
humidity
7%
adhesives
6%
aqueous solutions
6%
x rays
6%
chambers
5%
decomposition
5%
coatings
4%
polymers
4%
water
4%
temperature
2%
Chemical Compounds
Curing
71%
Binding Agent
69%
Mineral
63%
Fiber
50%
Hydrolysis
36%
Electrospray Ionization
36%
Mineral Fiber
33%
Time
28%
X-Ray Photoelectron Spectroscopy
27%
Humidity
17%
Urea
15%
Thermogravimetric Analysis
14%
Shape
12%
Decomposition
12%
Coating Agent
11%
Aqueous Solution
10%
Surface
6%
Application
6%