Conferences related to Material properties

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2021 IEEE Photovoltaic Specialists Conference (PVSC)

Photovoltaic materials, devices, systems and related science and technology


2020 42nd Annual International Conference of the IEEE Engineering in Medicine & Biology Society (EMBC)

The conference program will consist of plenary lectures, symposia, workshops and invitedsessions of the latest significant findings and developments in all the major fields of biomedical engineering.Submitted papers will be peer reviewed. Accepted high quality papers will be presented in oral and postersessions, will appear in the Conference Proceedings and will be indexed in PubMed/MEDLINE


2020 IEEE 70th Electronic Components and Technology Conference (ECTC)

ECTC is the premier international conference sponsored by the IEEE Components, Packaging and Manufacturing Society. ECTC paper comprise a wide spectrum of topics, including 3D packaging, electronic components, materials, assembly, interconnections, device and system packaging, optoelectronics, reliability, and simulation.


2020 IEEE International Conference on Industrial Technology (ICIT)

ICIT focuses on industrial and manufacturing applications of electronics, controls, communications, instrumentation, and computational intelligence.


2020 IEEE International Conference on Plasma Science (ICOPS)

IEEE International Conference on Plasma Science (ICOPS) is an annual conference coordinated by the Plasma Science and Application Committee (PSAC) of the IEEE Nuclear & Plasma Sciences Society.


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Periodicals related to Material properties

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Advanced Packaging, IEEE Transactions on

The IEEE Transactions on Advanced Packaging has its focus on the modeling, design, and analysis of advanced electronic, photonic, sensors, and MEMS packaging.


Antennas and Propagation, IEEE Transactions on

Experimental and theoretical advances in antennas including design and development, and in the propagation of electromagnetic waves including scattering, diffraction and interaction with continuous media; and applications pertinent to antennas and propagation, such as remote sensing, applied optics, and millimeter and submillimeter wave techniques.


Antennas and Wireless Propagation Letters, IEEE

IEEE Antennas and Wireless Propagation Letters (AWP Letters) will be devoted to the rapid electronic publication of short manuscripts in the technical areas of Antennas and Wireless Propagation.


Applied Superconductivity, IEEE Transactions on

Contains articles on the applications and other relevant technology. Electronic applications include analog and digital circuits employing thin films and active devices such as Josephson junctions. Power applications include magnet design as well asmotors, generators, and power transmission


Automatic Control, IEEE Transactions on

The theory, design and application of Control Systems. It shall encompass components, and the integration of these components, as are necessary for the construction of such systems. The word `systems' as used herein shall be interpreted to include physical, biological, organizational and other entities and combinations thereof, which can be represented through a mathematical symbolism. The Field of Interest: shall ...


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Most published Xplore authors for Material properties

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Xplore Articles related to Material properties

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Energetic coefficient of restitution for a planar two-body oblique collision with friction

Tsinghua Science and Technology, 2004

Although the coefficient of restitution was originally thought to be only a material property, the coefficient of restitution also depends upon initial conditions as well as on the frictional effect for oblique collisions. The objective of this paper is to demonstrate a method for obtaining the coefficient of restitution for oblique collisions and thereby to provide a theoretical guide for ...


Recent Progress In The Growth, Fabrication And Application Of Potassium Niobate Single Crystals

LEOS '92 Conference Proceedings, 1992

None


On integrodifferential calculus in fractal antenna design

The Fifth International Kharkov Symposium on Physics and Engineering of Microwaves, Millimeter, and Submillimeter Waves (IEEE Cat. No.04EX828), 2004

The introduced antenna simulation procedure and results received proved the appropriateness of integrodifferentials methods for adjustment of classic models with ideal material properties. The offered formulations of the equations of electrodynamics and antenna design theory in terms of /spl alpha/-characteristics allow obtaining theoretical models of fractal antennas, which are adequate to experimental models.


Material properties of sheep trabecular bone determined by nanomechanical testing

2003 IEEE 29th Annual Proceedings of Bioengineering Conference, 2003

How the material properties of trabecular bone relate to its bulk mechanical behavior is not well understood. Multiple trabeculae in four cubic samples harvested from the distal femora of sheep were evaluated using a nanoindentation testing device. The average modulus and hardness was 20.2/spl plusmn/4.0 GPa and 1.1/spl plusmn/0.4 GPa, respectively. These values were consistent across surface region, specimen, and ...


A new multi-functional tactile sensing technique for simultaneous discrimination of material properties

IMTC/98 Conference Proceedings. IEEE Instrumentation and Measurement Technology Conference. Where Instrumentation is Going (Cat. No.98CH36222), 1998

For simultaneous discrimination of material properties, a new multi-functional tactile sensing technique for one tactile sensor which can obtain three tactile information, that is, contact force, temperature change and contact number per one tactile sensor in spite of mono-sensing device is proposed here. To the confirm proposed sensing technique, a pressure-conductive rubber tactile sensor with temperature dependency which compared with ...


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Educational Resources on Material properties

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IEEE.tv Videos

IMS 2014: Out-of-Plane and Inline RF Switches based on Ge2Sb2Te5 Phase-Change Material
Unique Fixtures for Characterizing Electromagnetic Properties of Materials at THz Frequencies: MicroApps 2015 - Keysight Technologies
35 Years of Magnetic Heterostructures
Breaking Spectral and Performance Barriers for Diode Lasers - Plenary Speaker, Manijeh Razeghi - IPC 2018
Unconventional Superconductivity: From History to Mystery
Perpendicular magnetic anisotropy: From ultralow power spintronics to cancer therapy
Advances in MgB2 - ASC-2014 Plenary series - 7 of 13 - Wednesday 2014/8/13
Microstructure-Property Correlations in Superconducting Wires - Applied Superconductivity Conference 2018
Material-Handling- Paradigms for Humanoids and UAVs
Micro-Apps 2013: Determining Circuit Material Dielectric Constant from Phase Measurements
Computing Based on Material Training: Application to Binary Classification Problems - IEEE Rebooting Computing 2017
Requirements, Models, and Properties: Their Relationship and Validation
Satoshi Tadokoro: RAS Project - Creation of Educational Material in RA (CEMRA) - Studio Tech Talks: Sections Congress 2017
Consistent, Reliable and Peak-Performing PCB Assemblies: MicroApps 2015 - Zentech Manufacturing, Inc.
Nonlinear Material Responses and Their Characterization: An IPC Keynote with Eric Van Stryland
Kurt Petersen: 2019 IEEE Medal of Honor Recipient
Honors 2020: Paul Daniel Dapkus Wins the Jun-ichi Nishizawa Medal
HYUNSOO YANG - IEEE Magnetics Distinguished Lecture
IMS 2011-100 Years of Superconductivity (1911-2011) - Existing and Emerging RF Applications of Superconductivity
Tracked Vehicle with Circular Cross-Section to Realize Sideways Motion

IEEE-USA E-Books

  • Energetic coefficient of restitution for a planar two-body oblique collision with friction

    Although the coefficient of restitution was originally thought to be only a material property, the coefficient of restitution also depends upon initial conditions as well as on the frictional effect for oblique collisions. The objective of this paper is to demonstrate a method for obtaining the coefficient of restitution for oblique collisions and thereby to provide a theoretical guide for collision experiments. In this paper, we derive expressions for the energetic coefficient of restitution (e∗) based on general normal contact deformation law, by which the value of e∗can be obtained according to the initial conditions. An example shows that the results calculated by the derived expressions are reasonable.

  • Recent Progress In The Growth, Fabrication And Application Of Potassium Niobate Single Crystals

    None

  • On integrodifferential calculus in fractal antenna design

    The introduced antenna simulation procedure and results received proved the appropriateness of integrodifferentials methods for adjustment of classic models with ideal material properties. The offered formulations of the equations of electrodynamics and antenna design theory in terms of /spl alpha/-characteristics allow obtaining theoretical models of fractal antennas, which are adequate to experimental models.

  • Material properties of sheep trabecular bone determined by nanomechanical testing

    How the material properties of trabecular bone relate to its bulk mechanical behavior is not well understood. Multiple trabeculae in four cubic samples harvested from the distal femora of sheep were evaluated using a nanoindentation testing device. The average modulus and hardness was 20.2/spl plusmn/4.0 GPa and 1.1/spl plusmn/0.4 GPa, respectively. These values were consistent across surface region, specimen, and feature, thereby exhibiting a very homogenous quality at this level. The source of the highly anisotropic trabecular continuum, therefore, does not directly derive from its material properties.

  • A new multi-functional tactile sensing technique for simultaneous discrimination of material properties

    For simultaneous discrimination of material properties, a new multi-functional tactile sensing technique for one tactile sensor which can obtain three tactile information, that is, contact force, temperature change and contact number per one tactile sensor in spite of mono-sensing device is proposed here. To the confirm proposed sensing technique, a pressure-conductive rubber tactile sensor with temperature dependency which compared with one of the minute sense receptor of the human skin was experimentally made. The ability of the sensor was tested an various contact conditions. As experimental results, the usefulness of the proposed multi-functional tactile sensing technique was confirmed.

  • Applications And Technology For Laminate Multicihip Modules

    None

  • Electrical equivalent method for thermal stress analysis

    A method that can help to improve understanding of thermal-stress problems and is useful for the first-order analysis of thermal stresses in the layered structures of laminates is introduced. The technique models the thermal expansion and the elasticity of each layer as components in a three-terminal equivalent electrical circuit. A model of the laminate is developed by connecting the equivalent circuits of the layers in a network. Currents and voltages are obtained by network analysis. The thermal stresses in the laminate are derived from the branch currents; the local thermal expansion coefficients for the surfaces or for internal bonding interfaces are given by the node voltages.<<ETX>>

  • Artificial Islands For Arctic Offshore Exploratory Drilling &amp;amp;amp; Production Islands

    None

  • Basal plane dislocation reduction in nitrogen doped 8° 4H-SiC epilayers

    In summary, this work has shown that the mechanism by which BPDs are converted to TEDs is dependent on carrier concentration and type in 8° off-cut SiC epilayers. The conversion process takes place throughout the epilayer for UID-p films, even when an interrupt is employed, while low nitrogen doped films exhibit an abrupt increase in conversion at interrupts. High levels of nitrogen doping in the film prior to the interrupt drastically reduce the conversion efficiency. Therefore, it is imperative to better understand the role of nitrogen on the BPD conversion process to achieve full annihilation of BPDs in an n+ buffer layer for reliable bipolar devices.

  • Thermoelastic problems of multilayered cylinders

    Thermoelastic problems of long multilayered cylinders manufactured from isotropic materials are considered. The steady-state thermal field corresponding to a constant difference between temperature outside and inside the assembly is used in the analysis. Both the case of a hollow cylinder and that of a solid multilayered assembly are discussed. A closed-form exact solution is shown for an arbitrary number of layers if the properties of constituent materials remain unaffected by temperature. Various strategies leading to an analytical solution are proposed for the case where material properties depend on temperature. The stresses in a dual-coated optical fiber subject to a uniform temperature are determined as a particular case.<<ETX>>



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