Buch, Englisch, 212 Seiten, Format (B × H): 170 mm x 240 mm, Gewicht: 600 g
Special topic volume with invited peer reviewed papers only.
Buch, Englisch, 212 Seiten, Format (B × H): 170 mm x 240 mm, Gewicht: 600 g
ISBN: 978-3-03785-855-4
Verlag: Trans Tech Publications
Autoren/Hrsg.
Fachgebiete
Weitere Infos & Material
Introduction
Determination of Emissivity Characteristics for Controlled Cooling of Nickel-Alloy Forgings
Application of CFD in Hydraulic Directional Valve Modeling
Wave Packet as a Model of Localised Disturbances Propagating along the Cables
Dynamic Similarity of Wind Turbine's Tower-Nacelle System and its Scaled Model
Development of Laboratory Model of Wind Turbine's Tower-Nacelle System with Magnetorheological Tuned Vibration Absorber
Model Testing of the 2nd Phase of Die Casting Process
FEM Analysis of a Cantilever Sandwich Beam with MR Fluid Based on ANSYS
Diagnosis of Supporting Structures of HV Lines Using Magneto-Mechanical Effects
Experimental Tests of an Electromechanical Transducer of Reverse Linear Motion into Electrical Energy
A Project of a System for Measuring Child's Foot Pressure on a Shoe Sole
The Application of Visual Evoked Potentials in Brain-Computer Interface
Design and Modeling of FEM Seals with Controlled Clamp Spring Elements
Interval Type-2 Fuzzy Logic Control of DM Series Shape Memory Actuator
LQG Control of the Smart Truss with the Piezoelectric Active Members
Laboratory Research on Energy Harvesting of Ionic Polymer Metal Composite
Simulation of 2S1 Tracked Vehicle Model with Modernized Suspension System during Crossing a Single Obstacle
Shape Prediction of Non-Ferrous Pipe Elements Processed by Electro-Dynamic Forming
Effect of Interfaces on Mechanical Properties of Ceramic/Metal Multilayers
The Fractional Brownian Motion Approach to Analysis of Fractional Control System with Non-Stationary Plant
The Analysis of the Different Frequencies Sound Waves Effect on the EEG Signal
Development of Research Methods for the Assessment of the Technical Condition of Ropes
Analysis of Dependence between Stress Change and Resonance Frequency for Self-Excited Acoustical System