Книги з теми "Investigation - Electronic Structure"

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1

Dyall, Kenneth G. Theoretical investigation of gas-surface interactions. Moffett Field, Calif: National Aeronautics and Space Administration, Ames Research Center, 1994.

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2

International Symposium on Nanometer Structure Electronics (1984 Toyonaka, Osaka University). Nanometer structure electronics: An investigation of the future of micro-electronics : proceedings of the International Symposium on Nanometer Structure Electronics, April 16-18, 1984 Osaka University, Toyonaka, Japan. Tokyo, Japan: Ohm, 1985.

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3

International Symposium on Nanometer Structure Electronics (1984 Osaka University). Nanometer structure electronics: An investigation of the future of microelectronics : proceedings of the International Symposium on Nanometer Structure Electronics, April 16-18, 1984, Osaka University, Toyonaka, Japan. Tokyo, Japan: Ohmsha, 1985.

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4

Lui, Chun Hung. Investigations of the electronic, vibrational and structural properties of single and few-layer graphene. [New York, N.Y.?]: [publisher not identified], 2011.

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5

IEEE Workshop on Micro Electro Mechanical Systems (11th 1998 Heidelberg, Germany). IEEE, the Eleventh Annual International Workshop on Micro Electro Mechanical Systems: Proceedings : an investigation of micro structures, sensors, actuators, machines and systems, January 25-29, 1998, Heidelberg, Germany. [New York, N.Y.]: Institute of Electrical and Electronics Engineers, 1998.

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6

Lin, Zhen Bin. The investigation of the structure of hypersonic turbulent boundary layers on a 5 degree sharp cone using the electron beam fluorescence technique. London: Imperial College of Science and Technology, 1986.

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7

Biologically-responsive hybrid biomaterials: A reference for material scientists and bioengineers. Singapore: World Scientific, 2010.

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8

Zhang, H. Mesoscopic Structures and Their Effects on High-Tc Superconductivity. Edited by A. V. Narlikar. Oxford University Press, 2017. http://dx.doi.org/10.1093/oxfordhb/9780198738169.013.12.

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Анотація:
This article presents the results of model calculations carried out to determine the mesoscopic structural features of high-temperature superconducting (HTS) crystal structures, and especially their characteristic high critical temperature (Tc) and anisotropy. The crystal structure of high-temperature superconductors (HTSc) is unique in having some mesoscopic features. For example, the structures of a majority of cuprite superconductors are comprised of two structural blocks, perovskite and rock salt, stacked along the c-direction. This article calculates the interaction between the perovskite and rock salt blocks in the form of combinative energy in order to elucidate the effects of mesoscopic structures on high-Tc superconductivity. Both X-ray diffraction and Raman spectroscopy show that a ‘fixed triangle’ exists in the samples under investigation. The article also examines the importance of electron–phonon coupling in high-Tc superconductors.
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9

Dennies, Daniel P. How to Organize and Run a Failure Investigation. A S M International, 2005.

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10

How to Organize And Run a Failure Investigation. ASM International, 2005.

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11

Reimold, Wolf Uwe, and Christian Koeberl, eds. Large Meteorite Impacts and Planetary Evolution VI. Geological Society of America, 2021. http://dx.doi.org/10.1130/spe550.

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This volume represents the proceedings of the homonymous international conference on all aspects of impact cratering and planetary science, which was held in October 2019 in Brasília, Brazil. This volume contains a sizable suite of contributions dealing with regional impact records (Australia, Sweden), impact craters and impactites, early Archean impacts and geophysical characteristics of impact structures, shock metamorphic investigations, post-impact hydrothermalism, and structural geology and morphometry of impact structures—on Earth and Mars. These contributions are authored by many of the foremost impact cratering researchers. Many contributions report results from state-of-the-art investigations, for example, several that are based on electron backscatter diffraction studies, and deal with new potential chronometers and shock barometers (e.g., apatite). Established impact cratering workers and newcomers to this field will both appreciate this multifaceted, multidisciplinary collection of impact cratering studies.
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12

The Eleventh Annual International Workshop on Micro Electro Mechanical Systems: An investigation of micro structures, sensors, actuators, machines and ... January 25-29, 1998, Heidelberg, Germany. Institute of Electrical and Electronics Engineers, 1998.

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13

The Eleventh Annual International Workshop on Micro Electro Mechanical Systems: An investigation of micro structures, sensors, actuators, machines and ... January 25-29, 1998, Heidelberg, Germany. Institute of Electrical and Electronics Engineers, 1998.

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14

Barkowski, Sarah Lee. Gaseous electron-diffraction investigations: Molecular structure, intramolecular hydrogen bonding, and anti-gauche composition of ethane-1,2-dithiol and 2-aminoethanethiol. 1987.

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15

Barkowski, Sarah Lee. Gaseous electron-diffraction investigations: Molecular structure, intramolecular hydrogen bonding, and anti-gauche composition of ethane-1,2-dithiol and 2-aminoethanethiol. 1987.

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16

(Editor), Y. Yamamura, S. Namba (Editor), and T. Fujisawa (Editor), eds. Nanometer Structure Electronics: An Investigation of the Future of Microelectronics - Proceedings of the International Symposium, April 16-18, 1984, O. Elsevier Science Publishing Company, 1985.

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17

Huang, Jinfan. Gaseous electron-diffraction investigations: I. Molecular structures of Os(CO),́ Ru(CO),́ and CrOF.́ II. Molecular structures and anti-gauche compositions of BrCH,́CH,́F, BrCHĆHĆ1, C1CHĆHF́,C1ĆHCHC1,́ and FCHĆHÓH. 1989.

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18

Andersson, Per. Theoretical Investigations of Selected Heavy Elements & Metal-Hydrogen Systems by Means of Electronic Structure Calculations (Comprehensive Summaries of ... the Faculty of Science & Technology, 653). Uppsala Universitet, 2001.

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19

Huang, Jinfan. Gaseous electron-diffraction investigations: I. Molecular structures of Os(CO)₅, Ru(CO)₅, and CrOF₄. II. Molecular structures and anti-gauche compositions of BrCH₂,CH₂,F, BrCH₂CH₂C1, C1CH₂CH₂F,C1₂CHCHC1₂, and FCH₂CH₂OH. 1989.

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20

Shaibani, Aziz. Pseudoneurologic Syndromes. Oxford University Press, 2018. http://dx.doi.org/10.1093/med/9780190661304.003.0022.

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The term functional has almost replaced psychogenic in the neuromuscular literature for two reasons. It implies a disturbance of function, not structural damage; therefore, it defies laboratory testing such as MRIS, electromyography (EMG), and nerve conduction study (NCS). It is convenient to draw a parallel to the patients between migraine and brain tumors, as both cause headache, but brain MRI is negative in the former without minimizing the suffering of the patient. It is a “software” and not a “hardware” problem. It avoids irritating the patient by misunderstanding the word psychogenic which to many means “madness.”The cause of this functional impairment may fall into one of the following categories:• Conversion reaction: conversion of psychological stress to physical symptoms. This may include paralysis, hemisensory or distal sensory loss, or conversion spasms. It affects younger age groups.• Somatization: chronic multiple physical and cognitive symptoms due to chronic stress. It affects older age groups.• Factions disorder: induced real physical symptoms due to the need to be cared for, such as injecting oneself with insulin to produce hypoglycemia.• Hypochondriasis: overconcern about body functions such as suspicion of ALS due to the presence of rare fasciclutations that are normal during stress and after ingestion of a large amount of coffee. Medical students in particular are targets for this disorder.The following points are to be made on this topic. FNMD should be diagnosed by neuromuscular specialists who are trained to recognize actual syndrome whether typical or atypical. Presentations that fall out of the recognition pattern of a neuromuscular specialist, after the investigations are negative, they should be considered as FNMDs. Sometimes serial examinations are useful to confirm this suspicion. Psychatrists or psychologists are to be consulted to formulate a plan to discover the underlying stress and to treat any associated psychiatric disorder or psychological aberration. Most patients think that they are stressed due to the illness and they fail to connect the neuromuscular manifestations and the underlying stress. They offer shop around due to lack of satisfaction, especially those with somatization disorders. Some patients learn how to imitate certain conditions well, and they can deceive health care professionals. EMG and NCS are invaluable in revealing FNMD. A normal needle EMG of a weak muscles mostly indicates a central etiology (organic or functional). Normal sensory responses of a severely numb limb mean that a lesion is preganglionic (like roots avulsion, CISP, etc.) or the cause is central (a doral column lesion or functional). Management of FNMD is difficult, and many patients end up being chronic cases that wander into clinics and hospitals seeking solutions and exhausting the health care system with unnecessary expenses.It is time for these disorders to be studied in detail and be classified and have criteria set for their diagnosis so that they will not remain diagnosed only by exclusion. This chapter will describe some examples of these disorders. A video clip can tell the story better than many pages of writing. Improvement of digital cameras and electronic media has improved the diagnosis of these conditions, and it is advisable that patients record some of their symptoms when they happen. It is not uncommon for some Neuromuscular disorders (NMDs), such as myasthenia gravis (MG), small fiber neuropathy, and CISP, to be diagnosed as functional due to the lack of solid physical findings during the time of the examination. Therefore, a neuromuscular evaluation is important before these disorders are labeled as such. Some patients have genuine NMDs, but the majority of their symptoms are related to what Joseph Marsden called “sickness behavior.” A patient with carpal tunnel syndrome (CTS) may unconsciously develop numbness of the entire side of the body because he thinks that he may have a stroke.
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