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ALPS project

The loop, worm and directed loop algorithms can be used for the simulation of a wide class of quantum magnets. They are of interest not only to theoretical physicists, but also to experimentalists who want to fit experimental measurements to theoretical models. The wide applicability of these methods has led to the publication of open-source versions of these algorithms as part of the ALPS project (Algorithms and Libraries for Physics Simulations) [10] on the web page http //alps.comp-phys.org/. [Pg.623]

F. Alet, P. Dayal, A. Grzesik, A. Honecker, M. Korner, A. Lauchli, S. Man-mana, I. McCulloch, F. Michel, R. Noack, G. Schmid, U. Schollwock, F. Stockli, S. Todo, S. Trebst, M. Troyer, P. Werner, and S. Wessel (2005) The ALPS project open source software for strongly correlated systems. J. Phys. Soc. Jpn. Suppl. 74, p. 30... [Pg.636]

ALPS Project (Algorithms and Libraries for Physics Simulations). Available http //alps. [Pg.219]

Ongoing projects include the certification of enzyme CRMs for GGT, LD, ALAT, CK-MB, ASAT, ALP and a-amylase at 37°C, according to adapted IFCC methods. [Pg.201]

This work was supported supported by CNRS, INSERM, ATIP Plus to PB, Rdgion Rhone-Alpes and grants from the Ministere de la Recherche BCM0070 DRAB 04 2 136 ANR Project n° NT05-1 41978 and the ARCUS-INDIA program. [Pg.84]

Treatment Action Campaign and the AIDS Law Project (TAC/ALP). 2004. Memo to the South African International Trade Negotiating Team. Johannesburg TAC/ALP. Available at http // lists.essentiaLorg/pipermail/ip-health/2004-February/005904.html [Accessed February 7, 2006]. [Pg.198]

Figure 5-21 Nucleosomes. (A) Electron micrographs of individual nucleosomes reconstituted from 256-bp DNA fragments and separated proteins. From Hamiche et Courtesy of Ariel Prunell. (B) Model of a nucleosome core. The 1.75-tum (145-bp) DNA superhelix winds around the histone octomer which consists of two subunits apiece of histones H2A, H2B, H3, and H4. In addition, two elongated molecules of proteins HMG-14 or HMG-17 are indicated (see also Chapter 27). (C) Schematic radial projection of the doublehelical DNA showing areas protected from cleavage by hydroxyl radicals (see Fig. 5-50) by the bound proteins. The shaded areas are those protected by HMGs. The zigzag lines near the dyad axis indicate the most prominent regions of protection. (B) and (C) are from Alfonso et alP ... Figure 5-21 Nucleosomes. (A) Electron micrographs of individual nucleosomes reconstituted from 256-bp DNA fragments and separated proteins. From Hamiche et Courtesy of Ariel Prunell. (B) Model of a nucleosome core. The 1.75-tum (145-bp) DNA superhelix winds around the histone octomer which consists of two subunits apiece of histones H2A, H2B, H3, and H4. In addition, two elongated molecules of proteins HMG-14 or HMG-17 are indicated (see also Chapter 27). (C) Schematic radial projection of the doublehelical DNA showing areas protected from cleavage by hydroxyl radicals (see Fig. 5-50) by the bound proteins. The shaded areas are those protected by HMGs. The zigzag lines near the dyad axis indicate the most prominent regions of protection. (B) and (C) are from Alfonso et alP ...
Acknowledgment is made to Region Rhone-Alpes for its financial support through a project "nanotechnologies" ( PR97039). [Pg.434]

We would like to thank all our Ph.D. students whose contributions to the development ofthe PAT-Plat approach was crucial S. Corde, A. Joubert, M.-C. Biston, Z. Bencokova and J. Gastaldo.This work was also supported by the Association Pour la Recherche sur l Ataxie-Telangiectasie(/ PRM), the Association pour la Recherche contre le Cancer (ARC), the Electricite de France (Comite de Radioprotection), the ETOILE Project (Region Rhdne-Alpes and Lyon University), the Region Rhdne-Alpes and ROCHE-France. [Pg.300]

The Region Rh6ne-Alpes and the TREDI Company are gratefully acknowledged for the financial support of this project. [Pg.621]

Acknowledgements. The authors would like to acknowledge Mr. F. Navarro (Chauman of the Board of Mutualite Fran5aise Rhone-Alpes - France), as well as all the staff who had the kind enough to entrust us this project, data to validate our models and who answered our numerous questions. The authors are very grateful to the reviewers for their comments which were hoth useful and helpful. [Pg.105]

During the mid-1970s, researchers at the National Institute of Standards and Technology (NIST) at Boulder, Colorado undertook a series of projects with the objectives of measuring and predicting the properties of liquefied natural gas and related mixtures. One result from this project was an extended corresponding-states model for liquefied natural gas densities developed by McCarty. That implementation used a 32-term, modified Benedict-Webb-Rubin equation of state for methane as the reference fluid and shape factors which had the same functional form as those proposed by Leach, but which had been re-fit to liquefied natural gas density data. The model reproduced the available liquefied natural gas density data to within 0.1 %. Eaton et alP used McCarty s methane equation to predict critical lines and VLB in (methane ethane). [Pg.163]

The source code for some of the algorithms discussed above is available on the Internet as part of the ALPS (Algorithms and Libraries for Physics Simulations) project. SSE programs for the Heisenberg model can also be found on the homepage of A. Sandvik. ... [Pg.201]

Talc is mined and produced in large quantities in the United States (mostly in Montana, New York, Texas, and Vermont). Talc is also found in abundance in Canada, China, Japan, the Italian Alps, the French Pyrenees, Russia, Brazil, and South Korea. The supply of talc is rather large and is projected to meet the growth in demand. [Pg.223]

Figure 6 ATR setup. Optical and stmctural features are related to the IRE fixed-coordinate system x,y,z. E and E denote the parallel and perpendicular polarized electric field components of the light incident to the IRE under the angle 0,. E results in the , and E components of the evanescent wave, while E results in the Ey component, m denotes the unit vector in direction of the transition dipole moment vector of a given vibrational mode, and Wy, are the corresponding components in the IRE coordinate system, m goes off at an angle a with respect to the z-axis and the projection of mto the xy-plane goes off at an angle

Figure 6 ATR setup. Optical and stmctural features are related to the IRE fixed-coordinate system x,y,z. E and E denote the parallel and perpendicular polarized electric field components of the light incident to the IRE under the angle 0,. E results in the , and E components of the evanescent wave, while E results in the Ey component, m denotes the unit vector in direction of the transition dipole moment vector of a given vibrational mode, and Wy, are the corresponding components in the IRE coordinate system, m goes off at an angle a with respect to the z-axis and the projection of mto the xy-plane goes off at an angle <p with respect to the x-axis. Reproduced with permission of the American Institute of Physics from Fringeli UP etal. (1998) AlP Conference Proceedings 430 729-747.

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See also in sourсe #XX -- [ Pg.623 ]




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