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Master's Programme in Nanobiophysics

Summary. For the 14th time now, PicoQuant invited the top researchers working in the field of Single Molecule Spectroscopy to the annual International Workshop on "Single Molecule Spectroscopy and Ultrasensitive Analysis in the Life Sciences" held in Berlin, September 17-19, 2008.

Dresden single molecule
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Leibniz Institute for Polymer Research Dresden

Visiting Scientist in Leibniz IPF Dresden (single molecules study) 1998-2001: Researcher in Department of Organic Chemistry, Kiev Polytechnic Institute, Ukraine (PhD-thesis - synthetic organic chemistry, computational chemistry) Innovationspreis 2009 Leibniz Institute of Polymer Research Dresden for the work Molecule-Based Nanodevices from

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Benedikt Sohmen — SingleMolecule

3/5/2018 · TU Dresden, cfaed Single Molecule Machines Group Tel.: +49 (0) 351 463-39405 [email protected] Matthias Hahndorf TU Dresden, cfaed Head of Communications Tel.: +49 (0)351 463 42847 [email protected] cfaed cfaed is a microelectronics research cluster funded by the German Excellence Initiative.

Dresden single molecule
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DRESDEN-concept | Novum in der deutschen

Current-induced conformational switching in single-molecule junctions than a full vibration period. Thus, the molecule returns to its original conformation with high probability, and confor-mational switching occurs rarely. Such low-quantum-yield switching has been observed in recent experiments [16, 27, 28].

Dresden single molecule
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Molecular Magnetism Web - uni-bielefeld.de

Located in Dresden, Germany, DKMS Life Science Lab is one of the world's largest and most advanced genotyping service providers. Our main focus is high resolution, sequence based HLA typing for stem cell donor registries. We are also looking to expand the scope of our services into areas where our core competencies can provide exceptional value

Dresden single molecule
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Folding and Assembly of Proteorhodopsin

Every individuum counts: The many faces of single-molecule FRET. Tag der Forschung, July 5, 2019, Freiburg. Poster presentation DPG Spring Meeting, March 14-19, 2017, Dresden. Oral presentation

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Single molecule transcription elongation - MPI-CBG

single molecule Molecular Inversion Probes (smMIPs) smMIPs is a very cost-effective capture method of the genomic regions of interest and reprensets a modification of the molecular inversion probes (MIP) technology resulting in a highly sensitive variant calling and precise quantitation of mutation frequency, therefore addressing not only

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Nanomechanik Lab | Dresden Technologieportal

Single Molecule Machines Group Dr. Francesca Moresco. Photo: Jürgen Lösel Group Leader: Dr. Francesca Moresco. The Single Molecule Machines group uses atomic and molecular manipulation as well as on-surface synthesis methods to exploit the quantum mechanical properties of molecular and atomic structures for applications in electronics and mechanics at the nanoscale.

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Deep Sequencing - Equipment | BioTechnology Platform

Moreover, our analysis reveals specific features of the angular distribution of high energy direct electrons which can be employed for molecular imaging. For the H+2 molecule as an example we show the signatures of the molecule orientation and the molecular structure in the investigated angular distribution.

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Current-induced conformational switching in single

Relmholtz-Zentrum Dresden-Rossendorf, D-01328 Dresden, Germany \iVe show statistical measurements of single molecule-metal contacts using the mechanically controllable break junction technique. The measurements are carried out in a solvent, in order to allow in sit'U binding of the

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Research Groups of Biophyics in Dresden

Selective arc-discharge synthesis of Dy2S- clusterfullerenes and their isomer-dependent single molecule magnetism† Chia-Hsiang Chen,‡a Denis S. Krylov,‡a Stanislav M. Avdoshenko, a Fupin Liu, a Lukas Spree,a Ravi Yadav,a Antonis Alvertis,a Liviu Hozoi,a Konstantin Nenkov,a Aram Kostanyan,b Thomas Greber,b Anja U. B. Woltera and Alexey A. Popov *a A method for the selective synthesis of

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Genome Center: Sequencers

Memristive properties of single-molecule magnets Carsten Timm* Institute for Theoretical Physics, Technische Universit¨at Dresden, 01062 Dresden, Germany Massimiliano Di Ventra† Department of Physics, University of California, San Diego, La Jolla, California 92093, USA (Received 23 July 2012; published 19 September 2012)

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Equipment | BioTechnology Platform - TU Dresden

We are actively exploring the potential of two promising technologies, namely single molecule real time (SMRT) sequencing by Pacific Biosciences and Nanopore sequencing (MinION and PromethION) by Oxford Nanopore Technologies. We already use the SMRT technologies routinely for full length characterisation of novel or partially known HLA alleles.

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Homepage | PicoQuant

Dresden, Germany Symposium on Electron Transport on the Molecular Scale Dresden, 23{24 February 2001 Experimental investigation of electronic transport through a single organic molecule 15:10 - 15:45 Avik Ghosh (Purdue, USA) Ab-initio description of current conduction and surface potential

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Dresden Single Molecule

Single molecule transcription elongation Eric A. Galburta,b,*, Stephan W. Grilla,b, Carlos Bustamantec,d,e a Max Planck Institute for the Physics of Complex Systems, Nöthnitzerstraße 38, 01187 Dresden, Germany bMax Planck Institute of Molecular Cell Biology and Genetics, Pfotenhauerstraße 108, 01307 Dresden, Germany cUniversity of California—Berkeley, Department of Molecular and Cellular

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BIOTEC: In situ single-molecule imaging of the bacterial

Constructing single molecule-machinery? 20.10.2017 (Friday), 11:30 - 12:30 TU Dresden, Villa, Lecture Theatre , Würzburger Str. 46 , 01187 Dresden . Abstract: After the Blaise Pascal's calculating clock, the vacuum lamps calculators, the computers lithographed on the surface of a silicon crystal, what about embedding all or parts of an

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In situ single-molecule imaging of the bacterial DNA

structurally well characterized. Using single-molecule microscopy and spectroscopy, we observed the oligomeric assembly of native PR molecules and detected their folding in the membrane. PR showed unfolding patterns identical with those of bacteriorhodopsin and halorhodopsin, indicating that PR folds similarly to archaeal rhodopsins.