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Flexible High-Sensitivity Strain Sensor Fabricated with Pdms Micro-Channel Array Using Laser Transmission Pyrolysis Technology
Flexible High-Sensitivity Strain Sensor Fabricated with Pdms Micro-Channel Array Using Laser Transmission Pyrolysis Technology
Three-dimensional surface strain sensor based on PDMS/LIG composite film with adjustable electromechanical performance
Three-dimensional surface strain sensor based on PDMS/LIG composite film with adjustable electromechanical performance
Understanding the interaction of nucleotides with UVC light
Understanding the interaction of nucleotides with UVC light: an insight from quantum chemical calculation-based findings
Stretchable strain sensor based on HfSe<sub>2</sub>/LIG composite with high sensitivity and good linearity within a wide range
Stretchable strain sensor based on HfSe2/LIG composite with high sensitivity and good linearity within a wide range
Laser-Induced Graphene Formation on Chitosan Derivatives toward Ecofriendly Electronics
Laser-Induced Graphene Formation on Chitosan Derivatives toward Ecofriendly Electronics
Rapid Fabrication of High-Performance Flexible Pressure Sensors Using Laser Pyrolysis Direct Writing
Rapid Fabrication of High-Performance Flexible Pressure Sensors Using Laser Pyrolysis Direct Writing
A state-of-art review on development and progress of backfill grouting materials for shield tunneling
A state-of-art review on development and progress of backfill grouting materials for shield tunneling
High-Performance Flexible Strain Sensor Fabricated Using Laser Transmission Pyrolysis
High-Performance Flexible Strain Sensor Fabricated Using Laser Transmission Pyrolysis
Incorporating elastic and creep deformations in modelling the three-dimensional autogenous shrinkage of cement paste
Incorporating elastic and creep deformations in modelling the three-dimensional autogenous shrinkage of cement paste
Characterizing the Effects of Al(OH)3 and Mg(OH)2 on Reaction Products and Drying Shrinkage Characteristics of Alkali-activated Slag
Characterizing the Effects of Al(OH)3 and Mg(OH)2 on Reaction Products and Drying Shrinkage Characteristics of Alkali-activated Slag
Hydrogenated Boron Phosphide THz-Metamaterial-Based Biosensor for Diagnosing COVID-19: A DFT Coupled FEM Study
Hydrogenated Boron Phosphide THz-Metamaterial-Based Biosensor for Diagnosing COVID-19: A DFT Coupled FEM Study
Reactions of self-healing agents and the chemical binding of aggressive ions in sea water
Reactions of self-healing agents and the chemical binding of aggressive ions in sea water: Thermodynamics and kinetics
Evaluation of short-term streamflow prediction methods in Urban river basins
Evaluation of short-term streamflow prediction methods in Urban river basins
Geocon bridge geopolymer concrete mixture for structural applications
Geocon bridge geopolymer concrete mixture for structural applications
Examining the “time-zero” of autogenous shrinkage in high/ultra-high performance cement pastes
Examining the “time-zero” of autogenous shrinkage in high/ultra-high performance cement pastes
New insights into autogenous self-healing in cement paste based on nuclear magnetic resonance (NMR) tests
New insights into autogenous self-healing in cement paste based on nuclear magnetic resonance (NMR) tests
Use of rice husk ash for mitigating the autogenous shrinkage of cement pastes at low water cement ratio
Use of rice husk ash for mitigating the autogenous shrinkage of cement pastes at low water cement ratio
Numerical Studies of the Effects of Water Capsules on Self-Healing Efficiency and Mechanical Properties in Cementitious Materials
Numerical Studies of the Effects of Water Capsules on Self-Healing Efficiency and Mechanical Properties in Cementitious Materials
A review on self-healing in reinforced concrete structures in view of serving conditions.
A review on self-healing in reinforced concrete structures in view of serving conditions.
A coupled transport-reaction model for simulating autogenous self-healing in cementitious materials. Part I: Theory
A coupled transport-reaction model for simulating autogenous self-healing in cementitious materials. Part I: Theory
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