1992, Multiphase science and technology series, ISBN 0849393019, xvi, 425
Book
Journal of Polymer Science Part A: Polymer Chemistry, ISSN 0887-624X, 06/2016, Volume 54, Issue 12, pp. 1706 - 1712
ABSTRACT This article deals with the Kumada Catalyst Transfer Polycondensation (KCTP) of 4,7‐dioctylbenzo[2,1‐b:3,4‐b']dithiophene (BDP‐Oct) using Ni(II)...
metal‐polymer complexes | conducting polymers | MALDI | KCTP | living polymerization | metal-polymer complexes | CHAIN-GROWTH POLYMERIZATION | DESIGN | POLYMER SCIENCE | MOLECULAR-WEIGHT | BLOCK-COPOLYMERS | MECHANISM | THIOPHENE | GRIM | POLY(P-PHENYLENE) | Polymerization | Nuclear magnetic resonance spectroscopy | Chemical properties | Polymers | Resveratrol | Catalysts | NMR spectroscopy | Monomers | Failure
metal‐polymer complexes | conducting polymers | MALDI | KCTP | living polymerization | metal-polymer complexes | CHAIN-GROWTH POLYMERIZATION | DESIGN | POLYMER SCIENCE | MOLECULAR-WEIGHT | BLOCK-COPOLYMERS | MECHANISM | THIOPHENE | GRIM | POLY(P-PHENYLENE) | Polymerization | Nuclear magnetic resonance spectroscopy | Chemical properties | Polymers | Resveratrol | Catalysts | NMR spectroscopy | Monomers | Failure
Journal Article
Magnetic Resonance in Medicine, ISSN 0740-3194, 10/2018, Volume 80, Issue 4, pp. 1568 - 1576
Purpose To develop a method that can separate and quantify the fast (>1 kHz) and slow exchange transfer and magnetization transfer components in Z‐spectra....
fast‐exchanging protons | magnetization transfer contrast (MTC) | variable delay multipulse (VDMP) | fast magnetization transfer | chemical exchange saturation transfer (CEST) | slow magnetization transfer | fast-exchanging protons | SATURATION-TRANSFER CEST | HUMAN BRAIN | ROTATING-FRAME | CHEMICAL-EXCHANGE | 7 T | FLEX TRANSFER | IN-VIVO | CONTRAST | AMIDE PROTON-TRANSFER | CEREBRAL-ISCHEMIA | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | Albumin | Magnetization | Metabolites | Glutamate | Protons | Exchanging | Brain | Bovine serum albumin | Serum albumin | Spectra | Substantia alba | Substantia grisea | Delay | Proteins | Time dependence | Magnetic resonance imaging | In vivo methods and tests | Semisolids | Slow Magnetization Transfer | Chemical Exchange Saturation Transfer (CEST) | Magnetization Transfer Contrast (MTC) | variable delay multi-pulse (VDMP) | Fast-exchanging Protons | Fast Magnetization Transfer
fast‐exchanging protons | magnetization transfer contrast (MTC) | variable delay multipulse (VDMP) | fast magnetization transfer | chemical exchange saturation transfer (CEST) | slow magnetization transfer | fast-exchanging protons | SATURATION-TRANSFER CEST | HUMAN BRAIN | ROTATING-FRAME | CHEMICAL-EXCHANGE | 7 T | FLEX TRANSFER | IN-VIVO | CONTRAST | AMIDE PROTON-TRANSFER | CEREBRAL-ISCHEMIA | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | Albumin | Magnetization | Metabolites | Glutamate | Protons | Exchanging | Brain | Bovine serum albumin | Serum albumin | Spectra | Substantia alba | Substantia grisea | Delay | Proteins | Time dependence | Magnetic resonance imaging | In vivo methods and tests | Semisolids | Slow Magnetization Transfer | Chemical Exchange Saturation Transfer (CEST) | Magnetization Transfer Contrast (MTC) | variable delay multi-pulse (VDMP) | Fast-exchanging Protons | Fast Magnetization Transfer
Journal Article
SAE technical paper series, Volume 929282.
The commercial Modular High Temperature Gas-Cooled Reactor (MHTGR) achieves improved reactor safety performance and reliability by utilizing a completely...
Nuclear energy
Nuclear energy
eJournal
2013, 2nd ed., ISBN 9781107041783, xxi, 771
This graduate textbook describes atomic-level kinetics (mechanisms and rates) of thermal energy storage, transport (conduction, convection, and radiation), and...
Nuclear reactor kinetics | Heat | Change of state (Physics) | Heat storage | Transmission
Nuclear reactor kinetics | Heat | Change of state (Physics) | Heat storage | Transmission
Book
08/2018, 1st ed. 2018, Springer Theses, ISBN 3319960164, 284
Combining incisive experiments with the latest theoretical advances, this book presents an extensive study of transfer-triggered breakup, the dominant process...
Nuclear Physics, Heavy Ions, Hadrons | Nuclear Fusion | Physics
Nuclear Physics, Heavy Ions, Hadrons | Nuclear Fusion | Physics
eBook
Magnetic Resonance in Medicine, ISSN 0740-3194, 01/2016, Volume 75, Issue 1, pp. 137 - 149
Purpose To quantify amide proton transfer (APT) and nuclear Overhauser enhancement (NOE) contributions to in vivo chemical exchange saturation transfer MRI...
brain tumor | CEST | APT | NOE | HUMAN BRAIN | PARACEST AGENTS | CHEMICAL-EXCHANGE | 7 T | EXCHANGE SATURATION-TRANSFER | TRANSFER CEST | ISCHEMIC PENUMBRA | WATER SATURATION | IN-VIVO | MRI CONTRAST AGENT | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | Protons | Magnetic Resonance Spectroscopy - methods | Glioma - diagnosis | Brain Neoplasms - diagnosis | Humans | Rats, Inbred F344 | Rats | Brain Neoplasms - metabolism | Glioma - metabolism | Algorithms | Animals | Sensitivity and Specificity | Biomarkers, Tumor - metabolism | Cell Line, Tumor | Amides - metabolism | Medical records | Diagnostic imaging | Magnetization | Gliomas | Electronic records | Neuroimaging | Brain | Animal models | Brain tumors | Saturation | Nuclear electric power generation | Data processing | Reference signals | Data transfer (computers) | Extrapolation | Free water | Magnetic resonance imaging | Glioma | In vivo methods and tests | Semisolids | Image enhancement | Tumors | Image contrast
brain tumor | CEST | APT | NOE | HUMAN BRAIN | PARACEST AGENTS | CHEMICAL-EXCHANGE | 7 T | EXCHANGE SATURATION-TRANSFER | TRANSFER CEST | ISCHEMIC PENUMBRA | WATER SATURATION | IN-VIVO | MRI CONTRAST AGENT | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | Protons | Magnetic Resonance Spectroscopy - methods | Glioma - diagnosis | Brain Neoplasms - diagnosis | Humans | Rats, Inbred F344 | Rats | Brain Neoplasms - metabolism | Glioma - metabolism | Algorithms | Animals | Sensitivity and Specificity | Biomarkers, Tumor - metabolism | Cell Line, Tumor | Amides - metabolism | Medical records | Diagnostic imaging | Magnetization | Gliomas | Electronic records | Neuroimaging | Brain | Animal models | Brain tumors | Saturation | Nuclear electric power generation | Data processing | Reference signals | Data transfer (computers) | Extrapolation | Free water | Magnetic resonance imaging | Glioma | In vivo methods and tests | Semisolids | Image enhancement | Tumors | Image contrast
Journal Article
Magnetic Resonance in Medicine, ISSN 0740-3194, 04/2012, Volume 67, Issue 4, pp. 906 - 911
Paramagnetic chemical exchange saturation transfer agents combine the benefits of a large chemical shift difference and a fast exchange rate for sensitive MRI...
magnetization transfer | exchange rate | paramagnetic contrast agent | chemical exchange saturation transfer | SATURATION-TRANSFER CEST | MOLECULAR IMAGING APPLICATIONS | PROTON CHEMICAL-EXCHANGE | SPECTRA | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | MRI CONTRAST AGENTS | WATER | Magnetic Resonance Imaging - methods | Contrast Media - chemistry | Gels | Solutions | Phantoms, Imaging | Coordination Complexes - chemistry
magnetization transfer | exchange rate | paramagnetic contrast agent | chemical exchange saturation transfer | SATURATION-TRANSFER CEST | MOLECULAR IMAGING APPLICATIONS | PROTON CHEMICAL-EXCHANGE | SPECTRA | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | MRI CONTRAST AGENTS | WATER | Magnetic Resonance Imaging - methods | Contrast Media - chemistry | Gels | Solutions | Phantoms, Imaging | Coordination Complexes - chemistry
Journal Article
Magnetic Resonance in Medicine, ISSN 0740-3194, 01/2016, Volume 75, Issue 1, pp. 88 - 96
Purpose To use the variable delay multipulse (VDMP) chemical exchange saturation transfer (CEST) approach to obtain clean amide proton transfer (APT) and...
magnetization transfer contrast (MTC) | amide proton transfer (APT) | chemical exchange saturation transfer (CEST) | variable delay multi‐pulse (VDMP) | relayed NOE (rNOE) | variable delay multi-pulse (VDMP) | QUANTITATIVE DESCRIPTION | Z-SPECTROSCOPY | MRI | variable delay multipulse (VDMP) | TRANSFER RATIO | TRANSFER CEST | TRANSFER ASYMMETRY | RESONANCE | IN-VIVO | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | PULSED CEST | Brain - metabolism | Protons | Reproducibility of Results | Algorithms | Magnetic Resonance Spectroscopy - methods | Proteins - metabolism | Humans | Sensitivity and Specificity | Magnetic Resonance Imaging - methods | Amides - metabolism | Magnetization | Brain | Neuroimaging | Exchanging | Subtraction | Saturation | Substantia alba | Substantia grisea | Image enhancement | Image acquisition | Image contrast
magnetization transfer contrast (MTC) | amide proton transfer (APT) | chemical exchange saturation transfer (CEST) | variable delay multi‐pulse (VDMP) | relayed NOE (rNOE) | variable delay multi-pulse (VDMP) | QUANTITATIVE DESCRIPTION | Z-SPECTROSCOPY | MRI | variable delay multipulse (VDMP) | TRANSFER RATIO | TRANSFER CEST | TRANSFER ASYMMETRY | RESONANCE | IN-VIVO | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | PULSED CEST | Brain - metabolism | Protons | Reproducibility of Results | Algorithms | Magnetic Resonance Spectroscopy - methods | Proteins - metabolism | Humans | Sensitivity and Specificity | Magnetic Resonance Imaging - methods | Amides - metabolism | Magnetization | Brain | Neuroimaging | Exchanging | Subtraction | Saturation | Substantia alba | Substantia grisea | Image enhancement | Image acquisition | Image contrast
Journal Article
Renewable and Sustainable Energy Reviews, ISSN 1364-0321, 08/2017, Volume 75, pp. 451 - 460
The heat transfer characteristics of current fluids are tremendously improved by suspending nano-sized solid particles with diameter below 100 nm and are...
Nanoparticles | Thermal conductivity | Nanofluid | Heat transfer | GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY | TRANSFER ENHANCEMENT | THERMOPHYSICAL PROPERTIES | ENERGY & FUELS | TRANSFER PERFORMANCE | TRANSFER COEFFICIENT | TURBULENT-FLOW | DISSIPATION PERFORMANCE | PRESSURE-DROP CHARACTERISTICS | FRICTION FACTOR | AL2O3/WATER NANOFLUID | WATER | Usage | Nuclear reactors | Mechanical engineering | Nuclear facilities
Nanoparticles | Thermal conductivity | Nanofluid | Heat transfer | GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY | TRANSFER ENHANCEMENT | THERMOPHYSICAL PROPERTIES | ENERGY & FUELS | TRANSFER PERFORMANCE | TRANSFER COEFFICIENT | TURBULENT-FLOW | DISSIPATION PERFORMANCE | PRESSURE-DROP CHARACTERISTICS | FRICTION FACTOR | AL2O3/WATER NANOFLUID | WATER | Usage | Nuclear reactors | Mechanical engineering | Nuclear facilities
Journal Article
2009, ISBN 9789004175273, xiv, 308
Based on the legal regime governing the transfer of nuclear technology, this book offers a comprehensive overview to both the theoretical and practical aspects...
Government Policy | Nuclear energy | Nuclear nonproliferation | Nuclear-weapon-free zones | International Law | Middle East | Iran | Israel | Iraq | Government policy | International law | Nuclear | Nuclear technology | Supplier groups | Middle east
Government Policy | Nuclear energy | Nuclear nonproliferation | Nuclear-weapon-free zones | International Law | Middle East | Iran | Israel | Iraq | Government policy | International law | Nuclear | Nuclear technology | Supplier groups | Middle east
Book
Magnetic Resonance in Medicine, ISSN 0740-3194, 12/2018, Volume 80, Issue 6, pp. 2771 - 2784
Purpose: We introduce the transfer matrix (TM) that makes MR-based wireless determination of transfer functions (TFs) possible. TFs are implant specific...
SAR | RF heating | Safety | EM simulations | Transfer function | Radiology Nuclear Medicine and imaging | Active implantable medical device (AIMD) | transfer function | active implantable medical device (AIMD) | safety | RF SAFETY | WIRES | FIELD | ELECTRICAL-CONDUCTIVITY | ABSORPTION RATE | TRANSMISSION | BIRDCAGE COIL | DEVICES | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | BRAIN | LEAD | Implants, Artificial | Prosthesis | Electric fields | Analysis | Correlation coefficient | Transplants & implants | Computer simulation | Correlation coefficients | Transfer functions | Parameterization | Matrix methods | Alterations | Wave propagation | Magnetic resonance imaging | Mathematical analysis | Implants | Current distribution | Hardware | Single wires | Full Paper | Full Paper—Hardware and Instrumentation
SAR | RF heating | Safety | EM simulations | Transfer function | Radiology Nuclear Medicine and imaging | Active implantable medical device (AIMD) | transfer function | active implantable medical device (AIMD) | safety | RF SAFETY | WIRES | FIELD | ELECTRICAL-CONDUCTIVITY | ABSORPTION RATE | TRANSMISSION | BIRDCAGE COIL | DEVICES | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | BRAIN | LEAD | Implants, Artificial | Prosthesis | Electric fields | Analysis | Correlation coefficient | Transplants & implants | Computer simulation | Correlation coefficients | Transfer functions | Parameterization | Matrix methods | Alterations | Wave propagation | Magnetic resonance imaging | Mathematical analysis | Implants | Current distribution | Hardware | Single wires | Full Paper | Full Paper—Hardware and Instrumentation
Journal Article
Inorganic Chemistry, ISSN 0020-1669, 11/2016, Volume 55, Issue 22, pp. 11993 - 12000
We present two routes to the oxo rhenium complex OReCl2(BDI) (1) (BDI = N,N′-bis(2,6-diisopropylphenyl)-β-diketiminate) and discuss the properties and...
NIOBIUM(III) IMIDO COMPLEX | BIS(IMIDO) COMPLEXES | ACTIVATION | NITRIDO COMPLEXES | DEOXYDEHYDRATION | REACTIVITY | O BOND FORMATION | LIGAND | METAL-OXO COMPLEXES | ELECTRONIC-STRUCTURE | CHEMISTRY, INORGANIC & NUCLEAR | Research | Rhenium | Chemical properties | Chemical synthesis | Structure | Crystals
NIOBIUM(III) IMIDO COMPLEX | BIS(IMIDO) COMPLEXES | ACTIVATION | NITRIDO COMPLEXES | DEOXYDEHYDRATION | REACTIVITY | O BOND FORMATION | LIGAND | METAL-OXO COMPLEXES | ELECTRONIC-STRUCTURE | CHEMISTRY, INORGANIC & NUCLEAR | Research | Rhenium | Chemical properties | Chemical synthesis | Structure | Crystals
Journal Article