INIS
thermodynamics
100%
modeling
100%
sustainability
100%
hydration
100%
seawater
100%
portland cement
100%
cements
37%
solids
25%
liquids
25%
volume
25%
sulfates
25%
afm
25%
resources
12%
mechanical properties
12%
x-ray diffraction
12%
applications
12%
investigations
12%
shortages
12%
conversion
12%
ions
12%
concentration
12%
salts
12%
economics
12%
kinetics
12%
coastal regions
12%
islands
12%
chlorine ions
12%
dissolution
12%
humidity
12%
fresh water
12%
thermogravimetric analysis
12%
Engineering
Thermodynamics
100%
Sustainable Development
100%
Portland Cement
100%
Liquid Phase
25%
Economic Benefit
25%
Quantification
25%
Thermodynamic Calculation
25%
X-Ray Diffraction Analysis
25%
Kinetic Model
25%
Late Stage
25%
Assemblage
25%
Environmental Benefit
25%
Experimental Determination
25%
Concrete Mix
25%
Coupled Model
25%
Hydrated Cement
25%
Liquid Volume
25%
Ettringite
25%
Mechanical Properties
25%
Characteristics
25%
Applications
25%
Models
25%
Combines
25%
Temperature
25%
Earth and Planetary Sciences
Thermodynamics
100%
Hydration
100%
Sea Water
100%
Cement
100%
Model
37%
Calculation
37%
Investigation
25%
Volume
25%
Ion
12%
Liquid Phase
12%
Political Economy
12%
Coastal Region
12%
Dissolution
12%
Ettringite
12%
Freshwater Resource
12%
Utilization
12%
Solid
12%
Cause
12%
Exhibit
12%
Rate
12%
Liquid
12%
Temperature
12%
Island
12%
Humidity
12%
X-Ray Diffraction
12%
Paste
12%
Chemistry
Thermodynamics
100%
Seawater
100%
Cement
100%
Liquid
25%
Volume
25%
Solid
25%
X-Ray Diffraction
12%
Concentration
12%
Procedure
12%
Phase Composition
12%
Application
12%
Rate
12%
Mechanical Property
12%
Chemical Reaction
12%
Chemical Kinetics Characteristics
12%
Reaction Temperature
12%
Salt
12%
Chloride Ion
12%
Humidity
12%
Biochemistry, Genetics and Molecular Biology
Thermodynamics
100%
Hydration
100%
Evolution
100%
Solid
33%
Liquid
33%
Volume
33%
X Ray Diffraction
16%
Chloride
16%
Kinetics
16%
Dissolution
16%
Thermogravimetric Analysis
16%
Humidity
16%
Temperature
16%