Article
Publicly Available
Frontmatter
Published/Copyright:
April 4, 2020
Published Online: 2020-04-04
Published in Print: 2020-04-28
©2020 Walter de Gruyter GmbH, Berlin/Boston
Articles in the same Issue
- Frontmatter
- Atomic, Molecular & Chemical Physics
- The Reaction and Microscopic Electron Properties from Dynamic Evolutions of Condensed-Phase RDX Under Shock Loading
- Trace Hydrogen Sulphide Gas Sensor Based on Cu/rGO Membrane-Coated Photonic Crystal Fibre Michelson Interferometer
- Dynamical Systems & Nonlinear Phenomena
- A General Viscous Model for Some Aspects of Tropical Cyclonic Winds
- Nonlinear Pull-in Instability of Rectangular Nanoplates Based on the Positive and Negative Second-Order Strain Gradient Theories with Various Edge Supports
- Hydrodynamics
- On the Heat Flow Through a Porous Tube Filled with Incompressible Viscous Fluid
- Effect of Magnetic Field on the Unsteady Boundary Layer Flows Induced by an Impulsive Motion of a Plane Surface
- Solid State Physics & Materials Science
- Facile Combustion Synthesis of (Y,Pr)2O3 Red Phosphor: Study of Luminescence Dependence on Dopant Concentration and Enhancement by the Effect of Co-dopant
- Size-Dependent Ultrasonic and Thermophysical Properties of Indium Phosphide Nanowires
Articles in the same Issue
- Frontmatter
- Atomic, Molecular & Chemical Physics
- The Reaction and Microscopic Electron Properties from Dynamic Evolutions of Condensed-Phase RDX Under Shock Loading
- Trace Hydrogen Sulphide Gas Sensor Based on Cu/rGO Membrane-Coated Photonic Crystal Fibre Michelson Interferometer
- Dynamical Systems & Nonlinear Phenomena
- A General Viscous Model for Some Aspects of Tropical Cyclonic Winds
- Nonlinear Pull-in Instability of Rectangular Nanoplates Based on the Positive and Negative Second-Order Strain Gradient Theories with Various Edge Supports
- Hydrodynamics
- On the Heat Flow Through a Porous Tube Filled with Incompressible Viscous Fluid
- Effect of Magnetic Field on the Unsteady Boundary Layer Flows Induced by an Impulsive Motion of a Plane Surface
- Solid State Physics & Materials Science
- Facile Combustion Synthesis of (Y,Pr)2O3 Red Phosphor: Study of Luminescence Dependence on Dopant Concentration and Enhancement by the Effect of Co-dopant
- Size-Dependent Ultrasonic and Thermophysical Properties of Indium Phosphide Nanowires