「computational」の共起表現一覧(1語右で並び替え)
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The story can then continue with the | computational abilities of DNA coding, onward and upward |
rationality, emphasizing people's limited | computational abilities. |
Deciding is a | computational activity, something that can ultimately be |
llaborative filtering, sentiment analysis, | computational advertising (online ad placement). |
a small firm that provided statistical and | computational advice to the DC research community. |
al, economic, and biological systems using | computational agent based models and nonlinear dynamical |
gical structure through the interaction of | computational agents. |
system is produced and distributed by the | Computational Algebra Group within the School. |
Magma is produced and distributed by the | Computational Algebra Group within the School of Mathema |
Buchberger's algorithm, in | computational algebraic geometry and computational commu |
The CLEAN algorithm is a | computational algorithm to perform a deconvolution on im |
om fundamental theoretical methodology and | computational algorithm to numerical applications, such |
It is thus necessary to use a | computational algorithm (which depends on the precise co |
known for developing the most widely-used | computational algorithm for calculating macroeconomic eq |
The | computational algorithms have been completely redesigned |
nt field theory that is the basis for many | computational analyses of polymer adsorption. |
ological Aspects of the Dungan Dialects // | Computational Analyses of Asian and African Languages." |
He is a leading | computational analyst, well known for his contributions |
in mathematics and the social, biological, | computational, and physical sciences. |
He is a consulting assistant professor of | computational and mathematical engineering at Stanford U |
cal genius was predominantly algebraic and | computational and that it eschewed proofs and rationales |
His research comprises many themes in | computational and applied mathematics: ordinary and part |
Engquist currently holds the | Computational and Applied Mathematics Chair I at the Ins |
tor, and co-editor-in-chief of the journal | Computational and Mathematical Organization Theory. |
nd Research Professor in the Department of | Computational and Applied Mathematics at Rice University |
His research field is | computational and applied mathematics and numerical meth |
Computational and Systems Biology | |
Computational and Theoretical Neuroscience | |
tor, and co-editor-in-chief of the journal | Computational and Mathematical Organization Theory. |
ehavioral finance, free boundary problems, | computational and analytical phase field models, renorma |
ute addresses many of the most challenging | computational and communications problems facing Grid im |
The compound was characterized by | computational and spectroscopic techniques and found to |
Associate Editorship of the Journal of | Computational and Theoretical Nanoscience, numerous Gues |
This brings about | computational and storage problems during implementation |
CPN provides a forum for the discussion of | computational and experimental NMR techniques. |
Melnik is an expert in | computational and applied mathematics with a number of i |
EMSL's collection of | computational and experimental capabilities allows resea |
re is then the hierarchical composition of | computational and structural patterns, which is subseque |
d by the School are supported by extensive | computational and experimental facilities such as the la |
In 1991, he became Associate Director for | Computational and Information Sciences. |
are particularly amenable to complementary | computational and experimental study using phi value ana |
warhead materials, the cost of large-scale | computational and experimental resources, and its effect |
and supported by multiple divisions, with | computational and engineering integrated across the bios |
mospheric scientist interested in applying | computational and information systems to facilitate disc |
be said about arbitrary processes; and (2) | computational applications rarely exhaust the whole of a |
tation of cognitive software agents, their | computational applications, and their use in cognitive m |
He also established | computational approach to math, science, and technology |
Symbolic | computational approaches to creating intelligent machine |
structures, and those predicted by several | computational approaches. |
clude four computer suites, a gymnasium, a | computational arts lab, a library and free parking for s |
research and development in linguistic and | computational aspects of Urdu and other languages of [[P |
He is a | computational astrophysicist who studies the growth of s |
er and adaptive mesh refinement applied to | computational astrophysics over the last several decades |
ety (APS) in 2003 for his contributions to | computational astrophysics and named a Fellow. |
he author of over 260 research articles on | computational atomic theory, many of which became citati |
Although | computational barriers are vast, the potential benefits |
Although these | computational barriers are vast, the potential benefits |
Ideally, this would be done with the | computational basis state |
Richard Bonneau is an American | computational biologist who studies methods to analyze s |
SANBI was founded in 1996 by | computational biologist Winston Hide, the founding direc |
Chris P. Ponting is a British | computational biologist, specializing in the evolution a |
pmental psychologist and the father of the | computational biologist, Martin Frith, and the children' |
December 25, 1975) is an Iranian American | computational biologist, medical geneticist and evolutio |
Genomatix Software GmbH is a | computational biology company headquartered in Munich, G |
bility of scientists of the Structural and | Computational Biology Group at the Center for Neuroscien |
However, with the rise of | computational biology and genomics, proteins have become |
oratory robot created and developed by the | Computational Biology research group at Aberystwyth Univ |
computational biology | |
Computational biology | |
o the fields of synthetic biochemistry and | computational biology as pioneers in the de novo design |
International Society for | Computational Biology |
PLoS | Computational Biology 5 (4): e1000375. |
PLoS | Computational Biology 3 (6): e128. |
versity, California, since 1987 working in | computational biology and bioinformatics. |
niversity (1999, 2001), and his Postdoc in | Computational Biology from University of Southern Califo |
Gonville and Caius College, Cambridge (PhD | Computational Biology 1972). |
The Center for | Computational Biology (CCB) is an NIH-funded center part |
The Journal of | Computational Biology is a peer-reviewed scientific jour |
e awarded by the International Society for | Computational Biology for contributions to the field of |
g, Functional Programming, Formal Methods, | Computational Biology and Bioinformatics. |
f problems related to molecular, cell, and | computational biology including genomics, proteomics, bi |
Dendrograms are often used in | computational biology to illustrate the clustering of ge |
established to develop, implement and test | computational biology methods for modeling, representati |
irectors for the International Society for | Computational Biology since January 2005 (term ending De |
department at NSU to offer an emphasis in | computational biology or bioinformatics. |
EN Project by the UA.PT Bioinformatics and | Computational Biology group at the University of Aveiro. |
or 2009 from the International Society for | Computational Biology". |
fellow of ISCB (International Society for | Computational Biology). |
ganized by ISCB (International Society for | Computational Biology). |
and reagents, bioinformatics software and | computational biology, toxicology, and several organism |
In | computational biology, de novo protein structure predict |
ems Biology most often were PLoS ONE, PLoS | Computational Biology, Molecular Systems Biology, BMC Sy |
ugh many universities now have programs in | computational biology, there does not yet seem to be a s |
Ajay Royyuru, head of | computational biology, IBM |
e of topics covering Software Engineering, | Computational Biology, Security, and Formal Methods. |
rchers in the fields of bioinformatics and | computational biology, and has extensive research histor |
l journal of the International Society for | Computational Biology, together with PLoS Computational |
His research interests include | computational biology, geometric modeling, image process |
amacho and Chao Zhang at the Department of | Computational Biology, University of Pittsburgh, PA. |
ogy, parasitology, genomics, virology, and | computational biology. |
milton Memorial Prize for Contributions to | Computational Biology. |
His current research interests are in | computational biology. |
ting on the subjects of bioinformatics and | computational biology. |
matics is a subfield of bioinformatics and | computational biology. |
ded as one of the pioneers in the field of | computational biology. |
tems biology, and other research involving | computational biology. |
blishing original research and software in | computational biology. |
ds of systems biology, bio-informatics and | computational biology. |
r academic journals on analog electronics, | computational biophysics and planetary paleogeochemistry |
Dr. States also contributed to | computational biophysics as an author of the CHARMM mole |
The | Computational Brain Atlas is developed by the CCB as par |
Computational Brain Atlas | |
The | Computational Brain. |
Nayar developed the concept of | computational cameras and is a leading researcher in the |
of computer vision, computer graphics and | computational cameras. |
Its | computational capabilities allow for a complex chemical |
The | computational capabilities of CHEMKIN allow for a comple |
1st century technologies, state-of-the-art | computational capabilities, and expanded data |
called Laboratory Facilities, a Theory and | Computational Center, and a set of advanced endstations |
This raises the | computational challenge for the processing and integrati |
he goal is to understand the cognitive and | computational characteristics of dynamic interactive rep |
Computational chemical methods in solid state physics fo | |
ere, he began working with theoretical and | computational chemical physics, which is what he would d |
Norman "Lou" Allinger is an American | computational chemist and Distinguished Research Profess |
The Center for | Computational Chemistry (CCC) is a research center in th |
esearch articles and reports in chemistry, | computational chemistry and computer science. |
ublished in 1983, is widely implemented in | computational chemistry software packages and often used |
2011, TeraChem is the only GPU-accelerated | computational chemistry software that offers substantial |
kage, is a suite of programs for ab initio | computational chemistry calculations. |
TeraChem is the first | computational chemistry software program written complet |
Computational chemistry predicts that more oxygen chain | |
Journal of | Computational Chemistry 24 (12): 1432-1436. |
Research at the CCC employs | computational chemistry to elucidate and/or correlate ma |
was formerly the editor of the Journal of | Computational Chemistry and one of the editors of the En |
s has been followed by more recent work on | computational chemistry and symbolic calculation. |
Computer-assisted drug design uses | computational chemistry to discover, enhance, or study d |
The Centre for Theoretical and | Computational Chemistry (CTCC) was founded by the Norweg |
Weston T. Borden is professor of | Computational Chemistry and Welch Chair in Chemistry at |
ystem in the field of molecular modelling, | computational chemistry and computational biology. |
groundbreaking basic work in the field of | computational chemistry and structural biology already i |
imulations, 3D graphics, image processing, | computational chemistry etc. |
development of one of the most widely used | computational chemistry packages, the Gaussian(tm) suite |
ectronic Structure Theory) is an ab initio | computational chemistry package for performing high-leve |
He was a founder of the Q-Chem | computational chemistry program. |
raries while working at Sun, and worked on | computational chemistry software for Pfizer in 2001. |
The Journal of Theoretical and | Computational Chemistry' (JTCC) was founded in 2002 and |
Dr. Borden's research focuses on | Computational Chemistry, Organic Chemistry, and Organome |
Klein's research in | computational chemistry, particularly statistical mechan |
Much of this may be categorized as | computational chemistry, although computational chemistr |
He has published more than 25 works in | computational chemistry, computational geometry, compute |
l covering developments in theoretical and | computational chemistry, as well as their applications t |
He is known for his work in | computational chemistry, molecular modeling and bioinfor |
In | computational chemistry, orbital-free density functional |
n for his pioneering efforts in the use of | computational chemistry, especially molecular mechanics, |
is noted for developing new methodology in | computational chemistry, including the 6-31G* basis set |
He is considered a pioneer in the field of | computational chemistry. |
His main area of study centres on | computational chemistry. |
This article is about a method in | computational chemistry. |
research in the fields of theoretical and | computational chemistry. |
After retirement he keeps working in | computational chemistry. |
quantum chemistry methods in the field of | computational chemistry. |
ation of molecular electronic structure in | computational chemistry. |
ediation, inorganic chemical analysis, and | Computational chemistry. |
otein-ligand interactions also by means of | computational chemistry. |
The labs will include computer animation, | computational cinematography, autonomous interactive cha |
ul E. Newton Associate Professor and Head, | Computational Cognitive Science Group (Department of Bra |
Passau, researching in cryptography and in | computational commutative algebra. |
Computational Commutative Algebra II, by Martin Kreuzer | |
Computational Commutative Algebra I, by Martin Kreuzer a | |
DNA sequencing and | computational comparisons of sequences is now generally |
networks, these graphs are of interest in | computational complexity theory, because a number of sta |
tablished the foundations for the field of | computational complexity theory" (Hartmanis and Stearns, |
In the context of | computational complexity theory, multitrees have also be |
puter science at CMI has been primarily in | computational complexity theory, specification and verif |
type theory and constructive mathematics, | computational complexity theory, and algorithmics. |
cal and horizontal directions, due to high | computational complexity of the task. |
esign of algorithms, together with work on | computational complexity theory, cryptography, coding th |
o answer many of the important problems in | computational complexity theory. |
Goldwasser's research areas include | computational complexity theory, cryptography and comput |
iptive complexity theory relates logics to | computational complexity |
is is a conceptually simple operation, the | computational complexity of the step can be non-trivial: |
problems, which are of special interest in | computational complexity theory. |
re parsing algorithms of a higher order of | computational complexity than those used for basic CFGs. |
In | computational complexity theory, a sparse language is a |
irector strings is one method by which the | computational complexity of beta reduction can be optimi |
tribution sorting algorithm showing linear | computational complexity O(n) for uniformly distributed |
He has made several contributions to | computational complexity and his research work is an int |
athematics as pertains to computation, and | computational complexity theory. |
In | computational complexity theory, this is also the name o |
atching is a well-known NP-hard problem in | computational complexity theory. |
ics, function theory, continuum theory and | computational complexity theory. |
The attack shows a | computational complexity of 282 and with negligible memo |
analyze the complexity of algorithms (see | computational complexity theory). |
terests have been broad-ranging, including | computational complexity theory, database theory, VLSI d |
rossing sequences is carried out, e.g., in | computational complexity theory. |
being a simply defined graph invariant the | computational complexity of which is open, though it app |
In | computational complexity theory, #SAT, or Sharp-SAT, a f |
In | computational complexity theory, an alternating Turing m |
The | computational complexity of the Graph Sandwich Problem i |
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