THE BEST SIDE OF CEESDEKKER

The best Side of ceesdekker

The best Side of ceesdekker

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1996, initially mesoscopic charge density waves units; and to start with electrical measurements on just one steel nanocluster involving nanoelectrodes

Multicolor imaging in the bacterial nucleoid and mobile division proteins with blue, orange, and near-infrared fluorescent proteins

2007, first real-time detection of strand exchange in homologous recombination by RecA; discovery of the small persistence duration of finishes of microtubules; and solved the system of biosensing with carbon nanotubes

2015, discovery that condensin is a extremely flexible protein structure; and initial detection of DNA knots making use of nanopores

The coiled-coil on the human Rad50 DNA restore protein incorporates distinct segments of elevated adaptability

We condition micro organism into varieties that deviate from their normal phenotype. Especially, I will show our power to form Dwell E. coli germs into novel shapes which include rectangles, squares, triangles and circles.

Dynamic ParB–DNA interactions initiate and maintain a partition condensate for bacterial chromosome segregation

The rotors harness energy from a nanoscale h2o and ion circulation that's created by a static chemical or electrochemical likely gradient within the nanopore, which are recognized through a salt gradient or used voltage, respectively. These artificial nanoengines self-Manage and function autonomously in physiological conditions, suggesting solutions to constructing Electrical power-transducing motors at nanoscale interfaces.

It was in the course of this period that Dekker completed investigation on magnetic spin units and on sounds in superconductors and semiconductors.

Testing pseudotopological and nontopological versions for SMC-driven DNA loop extrusion against roadblock-traversal experiments

1999, initial measurement in the wavefunction of solitary molecular orbitals of carbon nanotubes; and discovery of kink heterojunctions of carbon nanotubes which gave decisive evidence for the new Luttinger description of interacting electrons in nanotubes

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Dekker heeft fundamentele ontdekkingen gedaan op het gebied van koolstof nanobuisjes. Mede vanwege deze werkzaamheden is hij al jaren de meest geciteerde fysicus in Nederland. Tegenwoordig onderzoekt hij fulfilled enkel-molecuultechnieken de biofysica van moleculen in de biologische cel. Dekker is naast zijn wetenschappelijk werk ook bekend vanwege zijn belangstelling voor de relatie tussen geloof en wetenschap en de discussie rond clever style in 2005. (nl)

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