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检索条件"机构=Material Science and Engineering Ph.D. Program"
424 条 记 录,以下是371-380 订阅
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The figure source equation and its physical consideration
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SYSTEMS ANd COMPUTERS IN JAPAN 1996年 第9期27卷 83-93页
作者: Aoki, Y Iijima, T Member Japan Advanced Institute of Science and Technology Hokuriku Ishikawa Japan 923 Yasubim Aoki:graduated from the University of Kanazawa Faculty of Engineering Department of Electrical Engineering and Information Science in 1992 and received his Master's degree in 1994 from the Japan Advanced Institute of Science and Technology Hokuriku Department of Information Science where he is currently in the doctoral program engaged in research on pattern recognition. Honorary Member Taizo lijima:graduatedwith a B.E. degree from the Tokyo Institute of Technology in 1948 and received his Ph.D. degree later. He joined the Electro-Technical Laboratories in 1948 and since then has been involved in research on electromagnetic theory and pattern recognition theory image processing voice recognition and research and development of OCR. After serving as the head of Iijima Special Research Laboratories he became Professor at the Tokyo Institute of Technology in 1986. He because Professor Emeritus of that institute in 1986. He became Professor at Tokyo Engineering University and Professor Emeritus there in 1991. In 1991 he became Professor at the Japan Advanced Institute of Science and Technology and was appointed Vice President of the institute in 1992. He served successively as editor examiner secretary of general affairs inspector counsel committee-head of pattern recognition and specialized studies head of Tokyo chapter and vice president of this institute. In 1991 he became Honorary Member. He received the Paper Award from the Institute four times and the Literary Works Award once. He received the Achievement Award and the Distinguished Service Award in 1976 and 1989 respectively. He received the Purple Ribbon Medal from the Emperor in 1989.
Theoretical studies on Iijima's ''Theory of Pattern Recognition,'' which is known as a method of multiple similarity, have shown clearly that there are situations when it is difficult to determine ... 详细信息
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Affordability, logistics R&d and fleet systems
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NAVAL ENGINEERS JOURNAL 1996年 第3期108卷 199-213页
作者: Schulte, dP Skolnick, A He has supported the development and operation of several naval systems including advanced component selection for Trident II fire control and navigation systems. He served as branch manager of the Surface Ship ASW Combat System Branch which acted as the acquisition engineering agent for the AN/SQQ-89 Surface Ship Anti-Submarine Warfare Weapon System. He was then selected to manage the Module Engineering Department which provided engineering support to numerous naval systems including the AN/BSY-1 Submarine Combat System and the Trident II fire control and navigation system. He then served as the deputy program manager for NAVSEA Progressive Maintenance (2M/ATE). He holds a B.S. degree in Electrical Engineering from Purdue University and currently is pursuing a Maste's degree in Public Environmental Affairs at Indiana University—Purdue University Indianapolis. He served at Applied Physics Laboratory/The Johns Hopkins University in missile development then aboard USS Boston (CAG-1) and played leading roles in several weapon system developments (Regulus Terrier Tartar Talos) inertial navigation (Polaris) deep submergence (DSRV) and advanced ship designs (SES). He later was director Combat System Integration Naval Sea Systems Command and head Combat Projects Naval Ship Engineering Center. He led the Navy's High Energy Lasers and Directed Energy Weapons development efforts. He was vice president advanced technology at Operations Research Inc. and vice president maritime engineering at Defense Group Inc. before starting SSC in 1991. Dr. Skolnick holds a B.S. degree in Mathematics and Economics Queens College an M.A. degree in Mathematics and Philosophy Columbia University an M.S. degree in Electrical/Aeronautical Engineering U.S. Naval Postgraduate School and a Ph.D. in Electrical Engineering and Applied Mathematics from Polytechnic University in New York. He is the author of many published papers on engineering design issues source selection procedures and large-scale complex technology problems
The Fleet continues to require high performance systems that can operate with dependability in the seas' unforgiving environments and under hostile action. Those demands are not new. What has changed is the urgent... 详细信息
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UPPER VOLTAGE ANd TEMPERATURE LIMITATIONS OF STRESS CONdITIONS FOR RELEVANT dIELECTRIC-BREAKdOWN PROJECTIONS
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QUALITY ANd RELIABILITY engineering INTERNATIONAL 1995年 第4期11卷 233-238页
作者: VOLLERTSEN, RP ABAdEER, WW Siemens Components Inc. clo IBM MD N65/966-2 1000 River Street Essex Junction VT 05452 U.S.A. Rolf-Peter Vollertsen:received the Diploma (M.S. 1982) and Doctoral degree (Ph.D. 1987) from the Institut of Material Science Engineering University of Erlangen Germany. His research concerned solar cells. After he joined the microelectronics section of Siemens AG in Munich he investigated single and multilayer dielectric quality and reliability of MOS capacitors for DRAMs. Since 1992 he has worked within a joint venture between IBM and Siemens on dielectric reliability of 64M-DRAMs at the IBM site assurance Essex Junction. VT U.S.A. IBM Microelectronics Division 1000 River Street Essex Junction VT 05452 U.S.A. Dr. Wagdi W. Abadeer:received the B.S. (with Honors 1966) in electrical engineering from Assyut University Egypt the M.S. (1970) and Ph.D. (1976) in electrical engineering from the University of Vermont. During his study at the University of Vermont Dr. Abadeer held different teaching assistant scholarships and research grants from NASA NSF and industrial grants. He joined IBM Essex Junction VT in 1976. He is currently active in semiconductor reliability design and evaluations. Dr. Abadeer has published journal articles on device reliability and statistical evaluations.
Parameters and their dependence on stress conditions are discussed using a three-dimensional model, including all possible degrees of freedom. The results, applied to breakdown data for 10 nm oxide, reveal the upper l... 详细信息
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A RISK-BASEd APPROACH FOR MANAGING HAZARdOUS-WASTE
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GROUNd WATER MONITORING ANd REMEdIATION 1995年 第1期15卷 79-89页
作者: CHIANG, CY PETKOVSKY, Pd MCALLISTER, PM Chen Y. Chiang received his Ph.D. in environmental engineering from Rice University. He is a senior research engineer in Environmental RD&T at Shell Development Co.'s Westhollow Technology Center (3333 Hwy. 6 South Houston TX 77082 fax (713) 544–8727). He serves on the Hydrologic Science Panel of the National Science Foundation and on the Ground Water/Soil Technical Task Force of the American Petroleum Institute. He also serves on the Advisory Board of the Rutgers DARPA/ONR research program. His research interests include in situ bioremediation processes ground water/soil sampling and monitoring multiphase fluid flow phenomenon and risk/ exposure assessment. Paul Petkovsky is a senior research technician in the Groundwater Modeling Group of Environmental RD&T at Shell Development Co.'s Westhollow Technology Center. His responsibilities include site data analysis and the numerical modeling of the fate and transport of organics in ground water. He is currently pursuing a B.S. in chemical engineering with an environmental emphasis at the University of Houston. Paul McAllister received a B.S. in chemical engineering from the University of Kansas in 1987 and a Ph.D. in chemical engineering from the University of Notre Dame in 1991. He is currently an associate research engineer in Environmental RD&T at Shell Development Co.'s Westhollow Technology Center. Since joining Shell he has conducted research and provided technical support on ground water modeling and remediation issues. His research interests include in situ bioremediation of ground water and residual hydrocarbons natural attenuation of contaminants and subsurface fate and transport phenomena in the subsurface.
In 1992, the U.S. Environmental Protection Agency (EPA) proposed risk-based management of hazardous waste. A major component of the proposed rule is the determination of non-site-specific screening concentration level...
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PARALLEL ANd dISTRIBUTEd TLM COMPUTATION WITH SIGNAL-PROCESSING FOR ELECTROMAGNETIC-FIELd MOdELING
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INTERNATIONAL JOURNAL OF NUMERICAL MOdELLING-ELECTRONIC NETWORKS dEVICES ANd FIELdS 1995年 第3-4期8卷 169-185页
作者: SO, PPM ESWARAPPA, C HOEFER, WJR NSERC/MPR Teltech Research Chair in RF Engineering Department of Electrical and Computer Engineering University of Victoria Victoria British Columbia V8W 3P6 Canada Poman So received his B.Sc. degree in computer science and physics from the University of Toronto Toronto Onatario Canada in 1985. He obtained his B.A. Sc. and M.A.Sc. degrees in electrical engineering (summa cum laude) from the University of Ottawa Ottawa Ontario Canada in 1987 and 1989 respectively. Mr So was a research engineer in the University of Ottawa from January 1989 to October 1991 his research interests included CAD techniques of microwave circuits and numerical methods for electromagnetic wave modelling. He specialized in the development of electromagnetic engineering CAD software and successfully implemented a number of electromagnetic wave simulators based on the two-dimensional and three-dimensional transmission-line matrix methods. From August 1990 to February 1991 he accompanied Professor W. J. R. Hoefer to Rome Italy and Sophia Antiopolas France. During that time he implemented a parallel version of the 3D-TLM simulator for the CM-2 Connection Machine using C-Star and X Windows Library. He is a research engineer and a Ph.D. student at the University of Victoria Victoria British Columbia Canada. He ported the 2D- and 3D-TLM simulators to DECmpp 1200 massively parallel computer using MPL C and C++. He also combined OSA90/hope a commercially available microwave CAD program with a 2D-TLM simulation module for geometry optimization using the Datapipe technique of OSA90/hope. Recently he has developed a distributed client-server computing technique for the TLM method this technique could accelerate the TLM simulation by more than an order of magnitude. Channabasappa Eswarappa received the M.Tech. degree in electrical engineering from the Indian Institute of Technology Kanpur India in 1983 and Ph. D. degree from the University of Ottawa Canada in 1990. He worked as an Assistant Executive Engineer and later as
This paper describes the implementation of transmission-line matrix (TLM) method algorithms on a massively parallel computer (dECmpp 12000), the technique of distributed computing in the UNIX environment, and the comb... 详细信息
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A dISTRIBUTEd MEdIA ACCESS PROTOCOL FOR PACKET RAdIO NETWORKS ANd PERFORMANCE ANALYSIS .2. NETWORK SET-UP TIME ANd dATA RATE
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INTERNATIONAL JOURNAL OF COMMUNICATION SYSTEMS 1995年 第1期8卷 49-63页
作者: PONd, LC LI, VOK Communication Sciences Electrical Engineering Systems University of Southern California Los Angeles CA 90089-2565 U.S.A. Lawrence C. Pond received the M.Sc. and Ph.D. degrees in electrical engineering from the University of Southern California in 1983 and 1990 respectively. Dr. Pond is currently a scientist at Hughes Space and Communications Company having joined in 1980. He has worked in the fields of communication system design mobile communication network and spacecraft payload design. He is currently working on the development of satellite-based ATM transport and switching architectures for BISDN and Defense Information System Network amlications. Dr. Pond is a member of IEEE. Victor O. K. Li was born in Hong Kong in 1954. He received his SB SM and Sc.D. degrees in Electrical Engineering and Computer Science from the Massachusetts Institute of Technology Cambridge Massachusetts in 1977 1979 and 1981 respectively. Since February 1981 he has been with the University of Southern California (USC) LOS Angeles California where he is Professor of Electrical Engineering and Director of the USC Communication Sciences Institute. He has published 150 technical papers and has lectured and consulted extensively around the world. His research interests include high-speed communication networks personal communication networks intelligent networks distributed databases queueing theory graph theory and applied probability. Dr. Li is very active in the Institute of Electrical and Electronic Engineers (IEEE) having been a member of the Computer Communications Technical Committee since 1983 and having served as Chairman from 1987–1989. He served as Chairman of the Los Angeles Chapter of the IEEE Information Theory Group from 1983–1985. He is the Steering Committee Chair of the International Conference on Computer Communications and Networks (IC3 N) General Chair of the 1st Annual IC3N held in San Diego California in June 1992 General Chair and Technical Program Chair of the 4th IEEE Workshop on Comp
In this, the second part of a two-part paper, the required time for establishing a mobile packet radio network using the virtual circuit and time division multiple access protocol developed in Part 1 is analysed. Tool... 详细信息
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FIELd TRAPPING OF SUBSURFACE VAPOR-phASE PETROLEUM-HYdROCARBONS
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GROUNd WATER MONITORING ANd REMEdIATION 1994年 第1期14卷 110-119页
作者: MOYER, EE OSTENdORF, dW KAMPBELL, dH XIE, YF Ellen E. Moyer (ENSR Consulting and Engineering 35 Nagog Park Acton MA 01720) is a senior environmental engineer at ENSR Consulting and Engineering in Acton Massachusetts. Her research interests include bioremediation air sparging soil venting and analytical modeling of subsurface contamination. Moyer is a registered Professional Engineer with an M.S. in environmental engineering and a Ph.D. in civil engineering from the University of Massachusetts at Amherst and a member of the National Ground Water Association and the American Society of Civil Engineers. David W. Ostendorf (Civil Engineering Department University of Massachusetts Amherst MA 01003) is an associate professor in the environmental engineering program of the Civil Engineering Department of the University of Massachusetts at Amherst. His research interests include unconfined aquifer contamination hazardous waste site remediation and analytical modeling of problems in environmental fluid mechanics. Ostendorf is a registered Professional Engineer and a member of the American Geophysical Union American Society of Civil Engineers Soil Science Society of America Water Pollution Control Federation and Association of Environmental Engineering Professors as well as the National Ground Water Association. Don H. Kampbell (Robert S. Kerr Environmental Research Laboratory Ada OK 74820) is a research chemist at the U.S. EPA Robert S. Kerr Environmental Research Laboratory in Ada Oklahoma. His research interests include gas chromatog- raphy GC/mass spectrometry industrial waste processes soil bioreactor systems aquifer biorestoration and soil gas measurements. Kampbell is a certified Professional Soil Scientist and a registered Professional Engineer as well as a member of the Soil Science Society of America and the American Chemical Society. Yuefeng Xie (Civil Engineering Department University of Massachusetts Amherst MA 01003) is a postdoctoral research associate in the environmental engineering program of the Civil Engineering Depart
Soil gas samples from intact soil cores were collected on adsorbents at a field site, then thermally desorbed and analyzed by laboratory gas chromatography (GC). Vertical concentration profiles of predominant vapor ph...
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ENHANCEd dEGRAdATION OF dISSOLVEd BENZENE ANd TOLUENE USING A SOLId OXYGEN-RELEASING COMPOUNd
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GROUNd WATER MONITORING ANd REMEdIATION 1994年 第1期14卷 120-128页
作者: BIANCHIMOSQUERA, GC ALLENKING, RM MACKAY, dM Gino Bianchi-Mosquera is principal geochemist at Stollar Bianchi (140 Ravenna Dr. Long Beach CA 90803). He received a B.A. degree in geochemistry from Occidental College in Los Angeles California an M.S. degree in geochemistry from The Pennsylvania State University and a D. Env. degree from the University of California Los Angeles in 1982 1986 and 1993 respectively. His research interests include the transport and fate of organic compounds in the subsurface and the design and evaluation of new aquifer cleanup techniques. Douglas Mackay is adjunct professor in the Centre for Groundwater Research at the University of Waterloo (Waterloo Ontario N2L 3G1) Canada and a visiting scientist at the UCLA Department of Civil Engineering. From 1986 to mid- 1990 he was a faculty member in the environmental science and engineering program of the UCLA School of Public Health. His research focuses on field studies of transport and fate of organic chemicals in ground water and ground water decontamination technologies. Mackay received a B.S. in engineering and M.S. and Ph.D. degrees in civil engineering from Stanford University in 1970 1973 and 1981 respectively.
A field test to evaluate the applicability of an oxygen-releasing compound (ORC) to the remediation of ground water contaminated with benzene and toluene was conducted in the Borden Aquifer in Ontario, Canada. Benzene...
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NUMERICAL-METHOd FOR CALCULATING SURFACE CURRENT-dENSITY ON 3-dIMENSIONAL SMOOTH SCATTERERS
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ELECTRONICS ANd COMMUNICATIONS IN JAPAN PART II-ELECTRONICS 1994年 第2期77卷 1-11页
作者: IKUNO, H GONdO, M NISHIMOTO, M Faculty of Engineering Kumamoto University Kumamoto Japan 860 Himyoshi Ikmo received his B.E. M.E. and Ph.D. from Kyushu University in 1962 1964 and 1979 respectively. From 1967 to 1970 he was a Research Associate in Computer Science and Communication Engineering at Kyushu University. He joined the Department of Electrical Engineering and Computer Science of Kumamoto University in 1970 and is currently a Professor there. During 1983 to 1984 he was a Visiting Professor at the Polytechnic University Brooklyn NY. His research interests are in the areas of scattering diffraction and wave propagation in the theory of electromagnetics. Dr. Ikuno is a member of IEEE and IEE of Japan. Michim Gondo graduated from National Defense Academy Yokosuka in 1985 and received his M.E. from Kumamoto University in 1990. He is currently in the doctoral program at Kumamoto University. His research interest is in three-dimensional electromagnetic scattering. Masahiko Nkhimoto received his B.S. in Electronic Engineering from Kumamoto University in 1982 and an M.S. and Ph.D. from Kyushu University in 1984 and 1987 respectively. Since 1987 he has been a Research Associate in the Department of Electrical Engineering and Computer Science Kurnamoto University. His research interests are in the areas of scattering and diffraction of electromagnetic waves.
This paper shows that the surface current density can be calculated by using approximate total tangent magnetic vector fields which are expressed by finite number of linear combination of tangent vectors of spherical ... 详细信息
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ACQUISITION REFORM ANd BEST PROdUCT PROCUREMENT - AN engineering VIEW
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NAVAL ENGINEERS JOURNAL 1994年 第6期106卷 41-57页
作者: FISHER, dA SKOLNICK, A He has been involved with several weapon system developments. Among these were the Trident II fire control and navigation systems the BSY-I Anti-Submarine Warfare System and the Navy standard computers (UYK44 and EMSP). He served as manager of the Digital Circuits Engineering Branch and was then appointed as manager of the Automatic Test Equipment (ATE) Technology Division. As manager of the ATE Technology Division he was responsible for the SP-23 Fire Control System Support Project the SP-24 Navigation Project and the Fleet Progressive Maintenance Program (2M/ATE). This Division was responsible for selection and application of electronic product technology and for developing fleet test and repair techniques. He holds a B.S. in Electrical Engineering from the University of Evansville and is currently pursuing a Masters of Public Administration at Indiana University-Purdue University Indianapolis. Dr. Alfred Skolnick:retired from the Navy in 1983 with the rank of captain. He is president of System Science Consultants (SSC) specializing in strategic planning technical program definition technology assessment and engineering analyses on selected matters of national interest. Dr. Skolnick taught mathematics and management sciences at University of Virginia and Marymount University. He is adjunct faculty at Northern Virginia Community College. From 1985 to 1989 he was president of the American Society of Naval Engineers. In the Navy he served at Applied Physics Laboratory/The Johns Hopkins University then aboard USSBoston(CAG-1) and played leading roles in several weapon system developments inertial navigation (Polaris) deep submergence (DSRV) and advanced ship designs (SES). He later was director Combat System Integration Naval Sea Systems Command and head Combat Projects Naval Ship Engineering Center. In 1975 he became a major project manager and led the Navy's High Energy Lasers Program in 1981 he was assigned all Navy Directed Energy Weapons development efforts. He was vice president advanced tech
The military services are being moved in the direction of performance-based specifications and standards. They are being steered against dictating ''how to'' produce an item since such action foreclose...
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