Engineering
Pure Component
80%
Antiknock Rating
66%
Molecular Weight
66%
Carbon/Hydrogen Ratio
50%
Transfer Learning
50%
Learning Approach
50%
Calibration Curve
50%
Fourier Transform
50%
Mixture Component
50%
Machine Learning Method
50%
Sensing Application
50%
Heptane
50%
Demonstrates
50%
Real World Application
50%
Reference Fuel
50%
Isooctane
50%
Frequency Shift
50%
Functional Group
50%
Rate Data
50%
Arrhenius
50%
Reaction Rate Constant
50%
Artificial Neural Network
36%
Motor Octane Number
33%
Research Octane Number
33%
Molar Basis
26%
Hydrocarbon Mixture
26%
Alkene
26%
Feedforward
25%
Generation System
25%
Accurate Prediction
25%
Great Importance
25%
Prediction Error
20%
Naphthenes
16%
Aromatic Group
16%
Nonlinear Regression
16%
Experimental Uncertainty
16%
Mean Absolute Error
16%
Combustion Engine
16%
Aromatics
16%
Support Vector Machine
10%
Diesel Fuel
10%
Square Regression
10%
Least Square
10%
Naphthene Aromatics
10%
Chemical Structure
10%
Chemistry
Substance Spectroscopy
100%
Purity
60%
Octane
50%
Cetane Number
50%
Hydrogen
50%
Octane Number
50%
Phase Composition
50%
IR Spectroscopy
45%
Vibrational Spectroscopy
45%
Molecular Mass
35%
1-Hexene
25%
Isooctane
25%
Analytical Calibration
25%
Multicomponent Mixture
25%
Cyclopentane
25%
Cyclohexane
25%
Attenuated Total Reflection
25%
Fourier Transform Infrared Spectrum
25%
Alkene
20%
Diesel Fuel
10%
Combustion Engine
10%
Structure
10%
Wavenumber
10%
Keyphrases
Infrared Spectroscopic Data
100%
Species Determination
50%
Multispecies
50%
Corruption
50%
Excess Absorbance
25%
Mixture Spectra
25%
Augmentation Strategy
25%
Infrared Spectroscopy
25%
Unknown Interference
25%
Volatile Organic Compounds
25%
Interfering Species
25%
Realistic Scenario
25%
New Sensors
25%
Morgan Fingerprint
25%
High Sensitivity
25%
Sensor Design
25%
Spectroscopic Sensor
25%
Machine Learning Techniques
25%
Real-world Application
25%
Sensing Platform
25%
High Selectivity
25%
Gas Sensing Applications
25%
Fingerprint Representation
12%
Multi-target Model
12%
Regression Support Vector Machine
10%