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1.
The Franklin Institute, Philadelphia, Pennsylvania, awarded the 2005 Benjamin Franklin medal in physics to Yoichiro Nambu for his seminal contributions which introduced the modern concept of broken symmetry to elementary particle physics, for his invention of the particle property called color which is the key to quark confinement, and for his ground-breaking work on the theory of string-like elementary particles.  相似文献   

2.
The Franklin Institute, Philadelphia, Pennsylvania, awarded the 2005 Benjamin Franklin Medal in Computer and Cognitive Science to Aravind Joshi for his fundamental contributions to natural language processing technology and to cognitive science, including particularly the development of the Tree Adjoining Grammar (TAG) family of formalisms and tractable polynomial time algorithms that analyze the complex, varied surface word orders of human languages while simultaneously recovering local elementary syntactic domains corresponding to meaning. In addition, Joshi has been a major collaborator on a new theory of discourse coherence that has influenced all subsequent work on anaphora resolution, and is currently applying TAG to address modeling problems in the life sciences.  相似文献   

3.
The Franklin Institute, Philadelphia, Pennsylvania, awarded the 2001 Benjamin Franklin Medal in Earth Science to Rob Van der Voo for his outstanding contributions to the field of paleomagnetism and his reconstruction of ancient continental positions that have lead to a better understanding of plate tectonic processes for the past billion years of Earth history.  相似文献   

4.
The Franklin Institute, Philadelphia, PA, awarded the 2004 Benjamin Franklin Medal in Mechanical Engineering to Roger Bacon for his fundamental research on the production of graphite whiskers and the determination of their microstructure and properties, for his pioneering development efforts in the production of the world's first continuously processed carbon fibers and the world's first high modulus and high-strength carbon fibers, and for his contributions to the development of carbon fibers from alternative starting materials.  相似文献   

5.
The Franklin Institute of Philadelphia awarded the 2002 Benjamin Franklin Medal in Chemistry to Norman L. Allinger for his pioneering work in computational chemistry in the field of molecular mechanics with his development of the MM series of force fields, their widespread application to the fundamental understanding of molecular structure and energetics, and their implementation as a significant tool to practicing chemists.  相似文献   

6.
The Franklin Institute, Philadelphia, PA awarded the 2006 Benjamin Franklin Medal in civil engineering to Ray W. Clough for revolutionizing engineering and scientific computation, and engineering design methods through his formulation and development of the finite element method, and for his innovative leadership in applying the method to the field of earthquake engineering with special emphasis on the seismic performance of dams.  相似文献   

7.
The Franklin Institute, Philadelphia, Pennsylvania, awarded the Benjamin Franklin Medal in Engineering to Robert E. Newnham for his invention of multiphase piezoelectric transducers and their spatial architecture which revolutionized the field of acoustic imaging. The background and significance of his research is presented. Attention is focused on the impact his research prompted in the field of medical imaging, in particular non-invasive, real-time visualization of internal tissue and organs of human body using ultrasound energy. Societal impact of Dr. Newnham's work is also pointed out.  相似文献   

8.
The Franklin Institute, Philadelphia, Pennsylvania awarded the 2001 Benjamin Franklin Medal in Life Science to Judah Folkman for his founding of the field of angiogenesis research and demonstration that angiogenesis is a necessary factor in the conversion of abnormal cells to malignant tumors.  相似文献   

9.
The Franklin Institute, Philadelphia, PA awarded the 2001 Benjamin Franklin Medal in Chemistry to K. Barry Sharpless for his important innovative scientific contributions to the field of asymmetric catalytic oxidation, which resulted in highly enantioselective processes for the epoxidation, dihydroxylation and aminohydroxylation of olefins.  相似文献   

10.
The Franklin Institute, Philadelphia, Pennsylvania, awarded the 2001 Benjamin Franklin Medal in Physics to Alan H. Guth for his efforts to advance our knowledge of physical science and its application of the inflationary scenario, in which the universe undergoes a rapid expansion in the first stages of the Big Bang.  相似文献   

11.
Dean Kamen was chosen for a Benjamin Franklin Medal for his resourcefulness and imagination in creating inventions that are assisting disabled and handicapped people to improve their quality of life and health.  相似文献   

12.
The Franklin Institute, Philadelphia, Pennsylvania, awards the 2011 Benjamin Franklin Medal in Chemistry to Professor Kyriacos C. Nicolaou for his extraordinary contributions to chemistry, biology, and medicine through the advancement of the art of synthesis as exemplified by the elegant total syntheses of some of nature's most complex biologically active molecules. Nicolaou is recognized as a world leader in the field of total synthesis for his work in chemical synthesis and chemical biology. His total syntheses are legendary, distinguished for their elegance and practicality. Among his most celebrated achievements are the total syntheses of calicheamicin γ1I, Taxol®, brevetoxin B, vancomycin, and thiostrepton. The impact of his work transcends total synthesis, for it often leads to the discovery and invention of new synthetic strategies and technologies as well as biological tools and drug candidates, thereby facilitating discoveries in biology and medicine. Nicolaou's influence on science and society extends beyond his research discoveries. Through his didactic lectures and writings, he motivates and inspires students into the sciences and informs the public about the importance of science and education to society.  相似文献   

13.
The Franklin Institute, Philadelphia, Pennsylvania, awarded the 2002 Benjamin Franklin Medal in physics to Sumio Iijima for his discovery and elucidation of the atomic structure and helical character of multi- and single-wall carbon nanotubes. His pioneering work created a new, tremendously active and expanding area in the field of nanoscience and technology that involves condensed matter and material scientists, chemists and computer scientists. Iijima has also made key contributions to the mechanisms that are involved in the growth of carbon nanotubes, to the role of pentagonal and heptagonal carbon rings in the formation of caps that form at the ends of the nanotubes and to the encapsulation of molecules within the nanotubes.  相似文献   

14.
The Franklin Institute, Philadelphia, Pennsylvania, awarded the 2002 Bower Award for Achievement in Science to John Werner Cahn for his research in the field of materials science. Over the past four and a half decades, Cahn's ideas have vitally affected every area of the field and have strongly influenced statistical physics as well. In particular, Cahn's invention of the Cahn-Hilliard equation has been path breaking, as has his contribution to quasicrystallography.  相似文献   

15.
Benjamin Franklin was a man of remarkable versatility, especially well-known as a scientist, writer and politician. Less well-known are his activities as a musician. This article describes his invention of the glass Armonica, on which he played and for which he also composed music. In recent years there has been a revival of interest in instruments of this kind and an acoustical analysis has been made of the vibrating glasses in an attempt to explain their curiously haunting melody.  相似文献   

16.
The Benjamin Franklin Medal in Computer and Cognitive Science is awarded to Dr. Richard M. Karp for his contributions to the understanding of computational complexity. His work helps programmers find workable solution procedures avoiding approaches that would fail to find a solution in a reasonable amount of time. Scientific, commercial, or industrial situations where his work applies include establishing least-cost schedules for industrial production, transportation routing, circuit layout, communication network design, and predicting the spatial structure of a protein from its amino acid sequencing.  相似文献   

17.
The Franklin Institute, Philadelphia, Pennsylvania, awarded the 2004 Benjamin Franklin Medal in Chemistry to Harry B. Gray for his pioneering contributions in the field of electron transfer in metalloproteins. In a series of elegant and challenging experiments beginning in the late 70s, Gray and his coworkers have shown that the transfer of electrons in metalloproteins can proceed over long distances (~ 20 Å) and at fast rates. These experiments have involved the regiospecific functionalization of structurally characterized electron transfer proteins with ruthenium complexes, coupled with laser excitation and transient spectroscopy. Probing the effects of thermodynamic driving force, temperature, donor-acceptor distance and electronic coupling, Gray has shaped our detailed current understanding of the principles governing biological electron flow. The mechanism of electron transfer has been identified as electron tunneling mediated by the molecules separating donor and acceptor. Tunneling timetables have been established for various intervening media. Important biological processes like respiration and photosynthesis depend on facile electron transfer, and Gray's contribution serves as the fundamental basis for understanding these and many related reactions.  相似文献   

18.
The Franklin Institute, Philadelphia, Pennsylvania, awards the 2008 Benjamin Franklin Medal in Chemistry to Professor Albert Eschenmoser for his seminal efforts in the chemical etiology of nucleic acid structure, which through systematic exploration employing chemical synthesis of potentially natural structural alternatives to DNA, demonstrated that Watson-Crick base pairing is not unique to the ribofuranosyl system, and that DNA’s structure represents an optimization of several factors rather than a maximization of base-pairing strength.In his early scientific career, Professor Albert Eschenmoser established himself as one of the premier synthetic organic chemists in the world, with the monumental achievement of two total syntheses of Vitamin B12, the first in collaboration with Professor Robert B. Woodward of Harvard University.However, since the 1980s, Professor Eschenmoser has concentrated his research interest in establishing the area of chemical etiology of nucleic acid structures to understand better the structural and functional uniqueness of the molecular basis of nature’s genetic information carrier—DNA and RNA. This systematic investigation of potential natural nucleic acid alternatives has demonstrated experimentally that Watson-Crick base pairing is not a unique property of DNA and RNA. Moreover, his research on homo-DNA revealed that the helicality of the famous double-stranded DNA is a direct outcome of the 5-membered ring nature of the deoxyribofuranose structure unit, while the study on p-RNA demonstrated that nature did not choose her genetic system by the standard of maximal base pairing strength, but instead optimization. Of equal significance, his recent design and synthesis of TNA (α-threofuranosyl nucleic acid), found to possess extraordinary base-paring properties, led to the hypothesis suggesting TNA as a possible precursor to the “RNA World”. Finally, his research on the correlation between the differences in the pKa of nucleic bases and their base-pairing strength led to a novel principal for the selection of nucleic base alternatives with proper bonding strength.  相似文献   

19.
3D Studio MAX中共有6种粒子系统,基本粒子系统为Spray(喷射)和Snow(雪),高级粒子系统包括Vlizzard(摹风雪)、PArray(粒子列阵)、Pcloud(粒子云)和Super Spray(超级喷射).动力系统和粒子系统的结合可以将3D Studio MAX发挥到极至.  相似文献   

20.
The Franklin Institute, Philadelphia, Pennsylvania awarded the 2001 Bower Award and prize to Paul Baran for his efforts to advance our knowledge of physical science or its application for his seminal invention of packet switching—the foundation of modern communications networks and, in particular, the Internet.Simply stated the technology of packet-switching, allows pieces of information to be divided into small packets or “envelopes” of information that are addressed, sent using multiple available routes to a specific destination, then reassembled. This technology—a post office-like system—revolutionized the telecommunications industry. Originally devised during the cold war for a military communications system survivable in the event of nuclear attack, packet switching became the foundation of computer networks including the Internet and truly has altered the world in which we live.  相似文献   

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