Yttrium

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Yttrium is a chemical element with symbol Y and atomic number 39. (Wikipedia.org)






Conferences related to Yttrium

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2020 IEEE International Instrumentation and Measurement Technology Conference (I2MTC)

The Conference focuses on all aspects of instrumentation and measurement science andtechnology research development and applications. The list of program topics includes but isnot limited to: Measurement Science & Education, Measurement Systems, Measurement DataAcquisition, Measurements of Physical Quantities, and Measurement Applications.


2020 IEEE International Magnetic Conference (INTERMAG)

INTERMAG is the premier conference on all aspects of applied magnetism and provides a range of oral and poster presentations, invited talks and symposia, a tutorial session, and exhibits reviewing the latest developments in magnetism.


2019 IEEE International Conference on Industrial Technology (ICIT)

The scope of the conference will cover, but will not be limited to, the following topics: Robotics; Mechatronics; Industrial Automation; Autonomous Systems; Sensing and artificial perception, Actuators and Micro-nanotechnology; Signal/Image Processing and Computational Intelligence; Control Systems; Electronic System on Chip and Embedded Control; Electric Transportation; Power Electronics; Electric Machines and Drives; Renewable Energy and Smart Grid; Data and Software Engineering, Communication; Networking and Industrial Informatics.


2019 IEEE International Symposium on Information Theory (ISIT)

Information theory and coding theory and their applications in communications and storage, data compression, wireless communications and networks, cryptography and security, information theory and statistics, detection and estimation, signal processing, big data analytics, pattern recognition and learning, compressive sensing and sparsity, complexity and computation theory, Shannon theory, quantum information and coding theory, emerging applications of information theory, information theory in biology.


2019 IEEE Nuclear Science Symposium and Medical Imaging Conference (NSS/MIC)

This conference is the annual premier meeting on the use of instrumentation in the Nuclear and Medical fields. The meeting has a very long history of providing an exciting venue for scientists to present their latest advances, exchange ideas, renew existing collaboration and form new ones. The NSS portion of the conference is an ideal forum for scientists and engineers in the field of Nuclear Science, radiation instrumentation, software engineering and data acquisition. The MIC is one of the most informative venues on the state-of-the art use of physics, engineering, and mathematics in Nuclear Medicine and related imaging modalities, such as CT and increasingly so MRI, through the development of hybrid devices


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Periodicals related to Yttrium

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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 ...


Electron Device Letters, IEEE

Publishes original and significant contributions relating to the theory, design, performance and reliability of electron devices, including optoelectronic devices, nanoscale devices, solid-state devices, integrated electronic devices, energy sources, power devices, displays, sensors, electro-mechanical devices, quantum devices and electron tubes.


Electron Devices, IEEE Transactions on

Publishes original and significant contributions relating to the theory, design, performance and reliability of electron devices, including optoelectronics devices, nanoscale devices, solid-state devices, integrated electronic devices, energy sources, power devices, displays, sensors, electro-mechanical devices, quantum devices and electron tubes.


Image Processing, IEEE Transactions on

Signal-processing aspects of image processing, imaging systems, and image scanning, display, and printing. Includes theory, algorithms, and architectures for image coding, filtering, enhancement, restoration, segmentation, and motion estimation; image formation in tomography, radar, sonar, geophysics, astronomy, microscopy, and crystallography; image scanning, digital half-toning and display, andcolor reproduction.


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Most published Xplore authors for Yttrium

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Xplore Articles related to Yttrium

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Superconducting Antennas

Small Antenna Handbook, None

This chapter contains sections titled: * Introduction * Superconductivity Concepts for Antenna Engineers * Dipole, Loop, and Patch Antennas * Phasers and Delay Lines * Superconducting Antenna Summary * References


The pretuned module: An integrated millimeter wave oscillator

1977 IEEE International Solid-State Circuits Conference. Digest of Technical Papers, 1977

None


Varactor S-band direct phase modulator

1966 IEEE International Solid-State Circuits Conference. Digest of Technical Papers, 1966

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Low-level Garnet limiters

1961 IEEE International Solid-State Circuits Conference. Digest of Technical Papers, 1961

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Accurate Measurement for Surface Resistance of a Single Piece of HTS Thin Film

2009 IEEE Circuits and Systems International Conference on Testing and Diagnosis, 2009

An improved image type sapphire resonator was developed for accurate measurement of surface resistance of a single piece of high temperature superconductor thin film. The surface resistances of two DC spurting yttrium- barium-copper oxide (YBCO) thin films were measured by TE<sub>011</sub> mode of this resonator. TE<sub>012</sub> mode of this resonator was also used in the measurement for the determination of ...


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Educational Resources on Yttrium

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IEEE.tv Videos

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IEEE-USA E-Books

  • Superconducting Antennas

    This chapter contains sections titled: * Introduction * Superconductivity Concepts for Antenna Engineers * Dipole, Loop, and Patch Antennas * Phasers and Delay Lines * Superconducting Antenna Summary * References

  • The pretuned module: An integrated millimeter wave oscillator

    None

  • Varactor S-band direct phase modulator

    None

  • Low-level Garnet limiters

    None

  • Accurate Measurement for Surface Resistance of a Single Piece of HTS Thin Film

    An improved image type sapphire resonator was developed for accurate measurement of surface resistance of a single piece of high temperature superconductor thin film. The surface resistances of two DC spurting yttrium- barium-copper oxide (YBCO) thin films were measured by TE<sub>011</sub> mode of this resonator. TE<sub>012</sub> mode of this resonator was also used in the measurement for the determination of the frequency dependence of the surface resistance of the HTS thin film. The high accuracy in the R<sub>s</sub> measurement of this resonator is comparable to the one of conventional two-resonator method, while the process is much simpler. The ability for measuring surface resistance of a single HTS thin film and characterizing the frequency dependence of R<sub>s</sub> of this sapphire resonator is remarkable.

  • Post-deadline papers [abstracts only]

    Provides an abstract for each of the presentations and a brief professional biography of each presenter. The complete presentations were not made available for publication as part of the conference proceedings.

  • Magnetization and ac loss behavior in the bismuth and yttrium copper oxide high temperature superconducting systems

    None

  • Textured growth of multi-layered buffer layers on Ni tape by sol-gel process

    Textured Cerium Oxide (CeO/sub 2/)/Yttrium-Stabilized Zirconia (YSZ)/CeO/sub 2/ buffer layers structure were grown by sol-gel dip coating process on bi- axially textured Ni tapes for processing of YBCO coated conductors. CeO/sub 2//YSZ/CeO/sub 2/ buffer layer structure has been demonstrated by vacuum techniques, but first time textured CeO/sub 2//YSZ/CeO/sub 2/ structure were grown by sol-gel on biaxially textured Ni tape. The buffer layer structure promoted c-axis oriented sol-gel YBCO films and prevented oxidation of nickel during YBCO processing. After each layer was coated, the layer was annealed. CeO/sub 2/ layers were annealed at 950 /spl deg/C for 30 min. and YSZ layers were annealed at 1150 /spl deg/C for 10 min. under 4% H/sub 2/ - Ar gas flow. Texture analysis of Ni substrates and bottom CeO/sub 2/ were done by Philips diffractometer. Sol-gel YBCO layers were coated on CeO/sub 2//YSZ/CeO/sub 2/ structure and critical current density was about 0.5 /spl times/ 10/sup 5/ A/cm/sup 2/. Microstructure of the buffer layer was investigated by Environmental Scanning Electron Microscope (ESEM).

  • High temperature superconducting opening pulser switch with compact thermoelectric source

    A high temperature superconducting switch with external magnetic field switching was utilized to switch a thermoelectric source. The superconducting switch was constructed of filaments of yttrium-barium-copper oxide (YBCO) ceramic and switched with an externally applied magnetic field. The superconducting switch is being used as an opening switch for a thermoelectric current source. The thermoelectric source, based on Seebeck is capable of high current, low voltage generation. It consists of a series of hot and cold junctions, arranged in series to increase the voltage of the system. Source output is a function of temperature differential between cold and hot junctions. The superconducting switch operates at liquid nitrogen temperature. Therefore, liquid cryogen is available to the cold junctions of the current source, and, with sufficient heat applied to the hot junctions, a significant temperature differential, far greater than that obtained using conventional cooling, is available, thus increasing the overall efficiency of the system. The device sees application wherever a fast acting, lossless switch or current limiter is required, with a compact, simple power source, neither of which have any moving parts to fail or wear.

  • Critical Issues In The Synthesis And Processing Of High Temperature Superconductor Materials

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