Compendex Source List -- Monographs, Series, Proceedings -- 2011
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Tarjan Transcript Final with Timestamps
A.M. Turing Award Oral History Interview with Robert (Bob) Endre Tarjan by Roy Levin San Mateo, California July 12, 2017 Levin: My name is Roy Levin. Today is July 12th, 2017, and I’m in San Mateo, California at the home of Robert Tarjan, where I’ll be interviewing him for the ACM Turing Award Winners project. Good afternoon, Bob, and thanks for spending the time to talk to me today. Tarjan: You’re welcome. Levin: I’d like to start by talking about your early technical interests and where they came from. When do you first recall being interested in what we might call technical things? Tarjan: Well, the first thing I would say in that direction is my mom took me to the public library in Pomona, where I grew up, which opened up a huge world to me. I started reading science fiction books and stories. Originally, I wanted to be the first person on Mars, that was what I was thinking, and I got interested in astronomy, started reading a lot of science stuff. I got to junior high school and I had an amazing math teacher. His name was Mr. Wall. I had him two years, in the eighth and ninth grade. He was teaching the New Math to us before there was such a thing as “New Math.” He taught us Peano’s axioms and things like that. It was a wonderful thing for a kid like me who was really excited about science and mathematics and so on. The other thing that happened was I discovered Scientific American in the public library and started reading Martin Gardner’s columns on mathematical games and was completely fascinated. -
Qualitative and Quantitative Security Analyses for Zigbee Wireless Sensor Networks
Downloaded from orbit.dtu.dk on: Sep 27, 2018 Qualitative and Quantitative Security Analyses for ZigBee Wireless Sensor Networks Yuksel, Ender; Nielson, Hanne Riis; Nielson, Flemming Publication date: 2011 Document Version Publisher's PDF, also known as Version of record Link back to DTU Orbit Citation (APA): Yuksel, E., Nielson, H. R., & Nielson, F. (2011). Qualitative and Quantitative Security Analyses for ZigBee Wireless Sensor Networks. Kgs. Lyngby, Denmark: Technical University of Denmark (DTU). (IMM-PHD-2011; No. 247). General rights Copyright and moral rights for the publications made accessible in the public portal are retained by the authors and/or other copyright owners and it is a condition of accessing publications that users recognise and abide by the legal requirements associated with these rights. • Users may download and print one copy of any publication from the public portal for the purpose of private study or research. • You may not further distribute the material or use it for any profit-making activity or commercial gain • You may freely distribute the URL identifying the publication in the public portal If you believe that this document breaches copyright please contact us providing details, and we will remove access to the work immediately and investigate your claim. Qualitative and Quantitative Security Analyses for ZigBee Wireless Sensor Networks Ender Y¨uksel Kongens Lyngby 2011 IMM-PHD-2011-247 Technical University of Denmark Informatics and Mathematical Modelling Building 321, DK-2800 Kongens Lyngby, Denmark Phone +45 45253351, Fax +45 45882673 [email protected] www.imm.dtu.dk IMM-PHD: ISSN 0909-3192 Summary Wireless sensor networking is a challenging and emerging technology that will soon become an inevitable part of our modern society. -
Machine Learning for Condensed Matter Physics
Review Article Machine Learning for Condensed Matter Physics Edwin A. Bedolla-Montiel1, Luis Carlos Padierna1 and Ram´on Casta~neda-Priego1 1 Divisi´onde Ciencias e Ingenier´ıas,Universidad de Guanajuato, Loma del Bosque 103, 37150 Le´on,Mexico E-mail: [email protected] Abstract. Condensed Matter Physics (CMP) seeks to understand the microscopic interactions of matter at the quantum and atomistic levels, and describes how these interactions result in both mesoscopic and macroscopic properties. CMP overlaps with many other important branches of science, such as Chemistry, Materials Science, Statistical Physics, and High-Performance Computing. With the advancements in modern Machine Learning (ML) technology, a keen interest in applying these algorithms to further CMP research has created a compelling new area of research at the intersection of both fields. In this review, we aim to explore the main areas within CMP, which have successfully applied ML techniques to further research, such as the description and use of ML schemes for potential energy surfaces, the characterization of topological phases of matter in lattice systems, the prediction of phase transitions in off-lattice and atomistic simulations, the interpretation of ML theories with physics- inspired frameworks and the enhancement of simulation methods with ML algorithms. We also discuss in detial the main challenges and drawbacks of using ML methods on CMP problems, as well as some perspectives for future developments. Keywords: machine learning, condensed matter physics Submitted -
Researchers Publish Review Article on the Physics of Interacting Particles 29 December 2020
Researchers publish review article on the physics of interacting particles 29 December 2020 wide range of branches of physics—from biophysics to quantum mechanics. The article is a so-called review article and was written by physicists Michael te Vrugt and Prof. Raphael Wittkowski from the Institute of Theoretical Physics and the Center for Soft Nanoscience at the University of Münster, together with Prof. Hartmut Löwen from the Institute for Theoretical Physics II at the University of Düsseldorf. The aim of such review articles is to provide an introduction to a certain subject area and to summarize and evaluate the current state of research in this area for the benefit of other researchers. "In our case we deal with a theory used in very many areas—the so- called dynamical density functional theory (DDFT)," explains last author Raphael Wittkowski. "Since we deal with all aspects of the subject, the article turned out to be very long and wide-ranging." DDFT is a method for describing systems consisting of a large number of interacting particles such as are found in liquids, for example. Understanding these systems is important in numerous fields of research such as chemistry, solid state physics or biophysics. This in turn leads to a large variety of applications for DDFT, for example in materials science and biology. "DDFT and related methods have been developed and applied by a number of researchers in a variety of contexts," says lead author Michael te Vrugt. "We investigated which approaches there are and how Time axis showing the number of publications relating to they are connected—and for this purpose we dynamical density functional theory. -
SCIENCE CITATION INDEX EXPANDED - JOURNAL LIST Total Journals: 8631
SCIENCE CITATION INDEX EXPANDED - JOURNAL LIST Total journals: 8631 1. 4OR-A QUARTERLY JOURNAL OF OPERATIONS RESEARCH 2. AAPG BULLETIN 3. AAPS JOURNAL 4. AAPS PHARMSCITECH 5. AATCC REVIEW 6. ABDOMINAL IMAGING 7. ABHANDLUNGEN AUS DEM MATHEMATISCHEN SEMINAR DER UNIVERSITAT HAMBURG 8. ABSTRACT AND APPLIED ANALYSIS 9. ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY 10. ACADEMIC EMERGENCY MEDICINE 11. ACADEMIC MEDICINE 12. ACADEMIC PEDIATRICS 13. ACADEMIC RADIOLOGY 14. ACCOUNTABILITY IN RESEARCH-POLICIES AND QUALITY ASSURANCE 15. ACCOUNTS OF CHEMICAL RESEARCH 16. ACCREDITATION AND QUALITY ASSURANCE 17. ACI MATERIALS JOURNAL 18. ACI STRUCTURAL JOURNAL 19. ACM COMPUTING SURVEYS 20. ACM JOURNAL ON EMERGING TECHNOLOGIES IN COMPUTING SYSTEMS 21. ACM SIGCOMM COMPUTER COMMUNICATION REVIEW 22. ACM SIGPLAN NOTICES 23. ACM TRANSACTIONS ON ALGORITHMS 24. ACM TRANSACTIONS ON APPLIED PERCEPTION 25. ACM TRANSACTIONS ON ARCHITECTURE AND CODE OPTIMIZATION 26. ACM TRANSACTIONS ON AUTONOMOUS AND ADAPTIVE SYSTEMS 27. ACM TRANSACTIONS ON COMPUTATIONAL LOGIC 28. ACM TRANSACTIONS ON COMPUTER SYSTEMS 29. ACM TRANSACTIONS ON COMPUTER-HUMAN INTERACTION 30. ACM TRANSACTIONS ON DATABASE SYSTEMS 31. ACM TRANSACTIONS ON DESIGN AUTOMATION OF ELECTRONIC SYSTEMS 32. ACM TRANSACTIONS ON EMBEDDED COMPUTING SYSTEMS 33. ACM TRANSACTIONS ON GRAPHICS 34. ACM TRANSACTIONS ON INFORMATION AND SYSTEM SECURITY 35. ACM TRANSACTIONS ON INFORMATION SYSTEMS 36. ACM TRANSACTIONS ON INTELLIGENT SYSTEMS AND TECHNOLOGY 37. ACM TRANSACTIONS ON INTERNET TECHNOLOGY 38. ACM TRANSACTIONS ON KNOWLEDGE DISCOVERY FROM DATA 39. ACM TRANSACTIONS ON MATHEMATICAL SOFTWARE 40. ACM TRANSACTIONS ON MODELING AND COMPUTER SIMULATION 41. ACM TRANSACTIONS ON MULTIMEDIA COMPUTING COMMUNICATIONS AND APPLICATIONS 42. ACM TRANSACTIONS ON PROGRAMMING LANGUAGES AND SYSTEMS 43. ACM TRANSACTIONS ON RECONFIGURABLE TECHNOLOGY AND SYSTEMS 44. -
Impact Factor Journals in Physics
Impact Factor Journals in Physics Indexed in ISI Web of Science (JCR SCI, 2019) ______________________________________________________________________________________________________________________ Compiled By: Arslan Sheikh In Charge Reference & Research Section Junaid Zaidi Library COMSATS University Islamabad Park Road, Islamabad-Pakistan. Cell: 92+321-9423071 [email protected] 2019 Impact Rank Journal Title Factor 1 REVIEWS OF MODERN PHYSICS 45.037 2 NATURE MATERIALS 38.663 3 Living Reviews in Relativity 35.429 4 Nature Photonics 31.241 5 ADVANCED MATERIALS 27.398 6 MATERIALS SCIENCE & ENGINEERING R-REPORTS 26.625 7 PHYSICS REPORTS-REVIEW SECTION OF PHYSICS LETTERS 25.798 8 Advanced Energy Materials 25.245 9 Nature Physics 19.256 10 Applied Physics Reviews 17.054 11 REPORTS ON PROGRESS IN PHYSICS 17.032 12 ADVANCED FUNCTIONAL MATERIALS 16.836 13 Nano Energy 16.602 14 ADVANCES IN PHYSICS 16.375 15 Annual Review of Fluid Mechanics 16.306 16 Annual Review of Condensed Matter Physics 14.833 17 PROGRESS IN PARTICLE AND NUCLEAR PHYSICS 13.421 18 Physical Review X 12.577 19 Nano-Micro Letters 12.264 20 Small 11.459 21 NANO LETTERS 11.238 22 Laser & Photonics Reviews 10.655 23 Materials Today Physics 10.443 24 SURFACE SCIENCE REPORTS 9.688 25 CURRENT OPINION IN SOLID STATE & MATERIALS SCIENCE 9.571 26 npj 2D Materials and Applications 9.324 27 PROGRESS IN NUCLEAR MAGNETIC RESONANCE SPECTROSCOPY 8.892 28 Annual Review of Nuclear and Particle Science 8.778 29 PHYSICAL REVIEW LETTERS 8.385 1 | P a g e Junaid Zaidi Library, COMSATS -
Finding Rising Stars in Co-Author Networks Via Weighted Mutual Influence
Finding Rising Stars in Co-Author Networks via Weighted Mutual Influence Ali Daud a,b Naif Radi Aljohani a Rabeeh Ayaz Abbasi a,c a Faculty of Computing and a Faculty of Computing and c Department of Computer Science, Information Technology, King Information Technology, King Quaid-i-Azam University, Islamabad, Abdulaziz University, Jeddah, Saudi Abdulaziz University, Jeddah, Saudi Pakistan Arabia Arabia [email protected] [email protected] [email protected] b b d Zahid Rafique Tehmina Amjad Hussain Dawood b Department of Computer Science b Department of Computer Science d Faculty of Computing and and Software Engineering, and Software Engineering, Information Technology, University International Islamic University, International Islamic University, of Jeddah, Jeddah, Saudi Arabia Islamabad, Pakistan Islamabad, Pakistan [email protected] [email protected] [email protected] a Khaled H. Alyoubi a Faculty of Computing and Information Technology, King Abdulaziz University, Jeddah, Saudi Arabia [email protected] ABSTRACT KEYWORDS Finding rising stars is a challenging and interesting task which is Bibliographic databases; Citations; Author Order; Rising Stars; Mutual being investigated recently in co-author networks. Rising stars are Influence; Co-Author Networks authors who have a low research profile in the start of their career but may become experts in the future. This paper introduces a new method Weighted Mutual Influence Rank (WMIRank) for finding 1. INTRODUCTION rising stars. WMIRank exploits influence of co-authors’ citations, The rapid evolution of scientific research has created large order of appearance and publication venues. Comprehensive volumes of publications every year, and is expected to continue in experiments are performed to analyze the performance of near future [21]. -
Moshe Y. Vardi
MOSHE Y. VARDI Address Office Home Department of Computer Science 4515 Merrie Lane Rice University Bellaire, TX 77401 P.O.Box 1892 Houston, TX 77251-1892 Tel: (713) 348-5977 Tel: (713) 665-5900 Fax: (713) 348-5930 Fax: (713) 665-5900 E-mail: [email protected] URL: http://www.cs.rice.edu/∼vardi Research Interests Applications of logic to computer science: • database systems • complexity theory • multi-agent systems • specification and verification of hardware and software Education Sept. 1974 B.Sc. in Physics and Computer Science (Summa cum Laude), Bar-Ilan University, Ramat Gan, Israel May 1980 M.Sc. in Computer Science, The Feinberg Graduate School, The Weizmann Insti- tute of Science, Rehovoth, Israel Thesis: Axiomatization of Functional and Join Dependencies in the Relational Model. Advisors: Prof. C. Beeri (Hebrew University) Prof. P. Rabinowitz Sept 1981 Ph.D. in Computer Science, Hebrew University, Jerusalem, Israel Thesis: The Implication Problem for Data Dependencies in the Relational Model. Advisor: Prof. C. Beeri Professional Experience Nov. 1972 – June 1973 Teaching Assistant, Dept. of Mathematics, Bar-Ilan University. Course: Introduction to computing. 1 Nov. 1978 – June 1979 Programmer, The Weizmann Institute of Science. Assignments: implementing a discrete-event simulation package and writing input-output routines for a database management system. Feb. 1979 – Oct. 1980 Research Assistant, Inst. of Math. and Computer Science, The Hebrew University of Jerusalem. Research subject: Theory of data dependencies. Nov. 1980 – Aug. 1981 Instructor, Inst. of Math. and Computer Science, The Hebrew University of Jerusalem. Course: Advanced topics in database theory. Sep. 1981 – Aug. 1983 Postdoctoral Scholar, Dept. of Computer Science, Stanford Univer- sity. -
Michael Oser Rabin Automata, Logic and Randomness in Computation
Michael Oser Rabin Automata, Logic and Randomness in Computation Luca Aceto ICE-TCS, School of Computer Science, Reykjavik University Pearls of Computation, 6 November 2015 \One plus one equals zero. We have to get used to this fact of life." (Rabin in a course session dated 30/10/1997) Thanks to Pino Persiano for sharing some anecdotes with me. Luca Aceto The Work of Michael O. Rabin 1 / 16 Michael Rabin's accolades Selected awards and honours Turing Award (1976) Harvey Prize (1980) Israel Prize for Computer Science (1995) Paris Kanellakis Award (2003) Emet Prize for Computer Science (2004) Tel Aviv University Dan David Prize Michael O. Rabin (2010) Dijkstra Prize (2015) \1970 in computer science is not classical; it's sort of ancient. Classical is 1990." (Rabin in a course session dated 17/11/1998) Luca Aceto The Work of Michael O. Rabin 2 / 16 Michael Rabin's work: through the prize citations ACM Turing Award 1976 (joint with Dana Scott) For their joint paper \Finite Automata and Their Decision Problems," which introduced the idea of nondeterministic machines, which has proved to be an enormously valuable concept. ACM Paris Kanellakis Award 2003 (joint with Gary Miller, Robert Solovay, and Volker Strassen) For \their contributions to realizing the practical uses of cryptography and for demonstrating the power of algorithms that make random choices", through work which \led to two probabilistic primality tests, known as the Solovay-Strassen test and the Miller-Rabin test". ACM/EATCS Dijkstra Prize 2015 (joint with Michael Ben-Or) For papers that started the field of fault-tolerant randomized distributed algorithms. -
Style and Notation Guide
Physical Review Style and Notation Guide Instructions for correct notation and style in preparation of REVTEX compuscripts and conventional manuscripts Published by The American Physical Society First Edition July 1983 Revised February 1993 Compiled and edited by Minor Revision June 2005 Anne Waldron, Peggy Judd, and Valerie Miller Minor Revision June 2011 Copyright 1993, by The American Physical Society Permission is granted to quote from this journal with the customary acknowledgment of the source. To reprint a figure, table or other excerpt requires, in addition, the consent of one of the original authors and notification of APS. No copying fee is required when copies of articles are made for educational or research purposes by individuals or libraries (including those at government and industrial institutions). Republication or reproduction for sale of articles or abstracts in this journal is permitted only under license from APS; in addition, APS may require that permission also be obtained from one of the authors. Address inquiries to the APS Administrative Editor (Editorial Office, 1 Research Rd., Box 1000, Ridge, NY 11961). Physical Review Style and Notation Guide Anne Waldron, Peggy Judd, and Valerie Miller (Received: ) Contents I. INTRODUCTION 2 II. STYLE INSTRUCTIONS FOR PARTS OF A MANUSCRIPT 2 A. Title ..................................................... 2 B. Author(s) name(s) . 2 C. Author(s) affiliation(s) . 2 D. Receipt date . 2 E. Abstract . 2 F. Physics and Astronomy Classification Scheme (PACS) indexing codes . 2 G. Main body of the paper|sequential organization . 2 1. Types of headings and section-head numbers . 3 2. Reference, figure, and table numbering . 3 3. -
Top Peer Reviewed Journals – Physics
Top Peer Reviewed Journals – Physics Presented to Iowa State University Presented by Thomson Reuters Physics The subject discipline for Physics is made of 11 narrow subject categories from the Web of Science. The 11 categories that make up Physics are: 1. Acoustics 7. Physics, Fluids & Plasmas 2. Imaging Science & Photographic Technology 8. Physics, Mathematical 3. Optics 9. Physics, Multidisciplinary 4. Physics, Applied 10. Physics, Nuclear 5. Physics, Atomic, Molecular & Chemical 11. Physics, Particles & Fields 6. Physics, Condensed Matter The chart below provides an ordered view of the top peer reviewed journals within the 1st quartile for Physics based on Impact Factors (IF), three year averages and their quartile ranking. Journal 2009 IF 2010 IF 2011 IF Average IF REVIEWS OF MODERN PHYSICS 33.14 51.69 43.93 42.92 Nature Photonics 22.86 26.5 29.27 26.21 ADVANCES IN PHYSICS 19.63 21.21 37 25.95 PHYSICS REPORTS-REVIEW SECTION OF 17.75 19.43 20.39 19.19 PHYSICS LETTERS Nature Physics 15.49 18.43 18.96 17.63 Living Reviews in Relativity 10.6 12.62 17.46 13.56 REPORTS ON PROGRESS IN PHYSICS 11.44 13.85 14.72 13.34 Annual Review of Condensed Matter Physics 12.38 12.38 PROGRESS IN SURFACE SCIENCE 7.91 10.36 8.63 8.97 ANNUAL REVIEW OF NUCLEAR AND 11.96 7.88 6.45 8.76 PARTICLE SCIENCE Laser & Photonics Reviews 5.81 9.31 7.38 7.50 PHYSICAL REVIEW LETTERS 7.32 7.62 7.37 7.44 LASER PHYSICS LETTERS 5.5 6.01 9.97 7.16 CRITICAL REVIEWS IN SOLID STATE AND 5.16 6.14 9.46 6.92 MATERIALS SCIENCES JOURNAL OF HIGH ENERGY PHYSICS 6.01 6.04 5.83 5.96 PHYSICS -
Datalog Unchained
Datalog Unchained Victor Vianu UC San Diego & Inria [email protected] ABSTRACT robust class of fixpoint queries, previously defined by extensions of This is the companion paper of a talk in the Gems of PODS se- first-order logic with a fixpoint operator. ries, that reviews the development, starting at PODS 1988, of a The two PODS 1988 articles initiated a line of research [3, 6, 8, family of Datalog-like languages with procedural, forward chain- 14, 15, 104, 116] that extended the forward chaining approach to an ing semantics, providing an alternative to the classical declarative, entire family of Datalog-like languages, providing an alternative model-theoretic semantics. These languages also provide a unified paradigm for database queries, with natural counterparts to classical formalism that can express important classes of queries including query languages including the fixpoint and while queries, and all the fixpoint, while, and all computable queries. They can also incor- way to computable queries. The forward chaining approach turned porate in a natural fashion updates and nondeterminism. Datalog out to also be suitable for studying nondeterministic languages, variants with forward chaining semantics have been adopted in a yielding an appealing unifying formalism. The present paper tells variety of settings, including active databases, production systems, the story of this development. distributed data exchange, and data-driven reactive systems. After a brief review of classical query languages, we turn to Datalog and its extensions. We begin with an informal overview of ACM Reference Format: Datalog and Datalog: with stratified and well-founded semantics. Victor Vianu. 2021. Datalog Unchained.