Engineering
Nuclear Magnetic Resonance
100%
Surface State
42%
State Sequence
32%
Relaxation Time
20%
Relaxation Time
17%
Thermal Model
13%
Wireless Power Transfer
13%
Compact Surface
13%
Deep Learning
13%
Energy Management
13%
Dot Product
13%
Thermal Resistance
13%
Space Solution
13%
Feasibility Study
13%
Forward Model
12%
Single Pulse
10%
Pulse Train
10%
Signal-to-Noise Ratio
9%
Bloch Equation
8%
Field Data
7%
Thermal Energy
6%
Graphics Processing Unit
6%
Matrix Multiplication
6%
Transmissions
6%
Power Transmission
6%
Fuel Cell
6%
Battery (Electrochemical Energy Engineering)
6%
Common Practice
6%
Electrical Power
6%
Polynomial Order
6%
Input Sequence
6%
Heatsinks
6%
Reliable Operation
6%
Instantaneous Power
6%
Relative Error
6%
Energy Dissipation
6%
Duty Cycle
6%
Keyphrases
Surface nuclear Magnetic Resonance
13%
Ground Validation
13%
Multi-sequence
13%
Surface NMR
13%
Time Gating
13%
Receiver Coil
13%
Electromagnetic Imaging
13%
Sequence Acquisition
13%
Adiabatic Pulses
13%
Conductivity Variation
13%
Steady State Sequence
9%
Free Induction Decay
8%
Offset Geometry
6%
Ground-based Systems
6%
Multi-moment
6%
Ground-based Platform
6%
Multiple Orientations
6%
Receiver Localization
6%
Hydrogeological Investigation
6%
Electromagnetic Measurements
6%
Localization Scheme
6%
Scaling Bias
6%
Computational Challenges
6%
Spatial Aspect
6%
Multiple Sequences
6%
Multiple Transmitters
6%
Current Strength
6%
Relaxation Time
6%
Temporal Aspects
6%
Acquisition Rate
6%
Forward Model
6%