LITTLE KNOWN FACTS ABOUT CEES DEKKER.

Little Known Facts About cees dekker.

Little Known Facts About cees dekker.

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Nanotechnology presents a range of options to lead to biology. Listed here I'll current illustrations wherever nanofabrication – a chance to make confined buildings with Proportions at will – is applied to look at the biophysics of one molecules and cells. I'll existing some illustrations from our lab:

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Around the exact time, the group of Paul McEuen, who was then based for the University of California, Berkeley, confirmed equivalent outcomes on ropes of bundled nanotubes. Depending on the wrapping angle, nanotubes can can be found in metallic or semiconducting variants, a prediction that we and Charles Lieber’s group at Harvard College independently confirmed employing scanning tunnelling spectroscopy experiments.

I can rarely consider how I, for a geneticist, would have the capacity to understand elementary physics, let alone compete at the best. How did you go about this?

De sterke polarisatie in de discussie rond schepping/evolutie en meer algemeen rond geloof/wetenschap lijkt helaas geen eind te kennen. Toch is er wel degelijk een heilzame middenweg, maar deze krijgt around het algemeen weinig aandacht. Dit boek kan hier wellicht verandering in brengen. Wie de geschiedenis van de relatie tussen geloof en wetenschap in duikt, komt tot verrassende inzichten. De moderne mens leeft achieved veel stereotypen die historisch niet verantwoord blijken te zijn. Afgezaagde typeringen als ‘Vroeger dachten we dat de

SMC complexes can go physical roadblocks larger than their ring sizing, indicating a nontopological system for DNA loop extrusion

We form microorganisms into types that deviate from their all-natural phenotype. Particularly, I'll exhibit our capacity to shape live E. coli microbes into novel styles including rectangles, squares, triangles and circles.

2000, discovery that nanotubes can carry incredible big recent densities; fixed the controversial problem of Digital transportation through DNA molecules by measurements of insulating conduct at The only molecule amount; and demonstration of an AFM method for solitary-molecule manipulation of nanotubes

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‘The fantastically subtle way wherein things in character perform never ceases to amaze me. If we address the puzzle of how lifetime came into becoming, I expect that my amazement within the complexity of development can have increased and with it my awe with the greatness on the Creator.’

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Cees Dekker is Distinguished University Professor at TU Delft. Educated as being a physicist, he pioneered nanotechnology with numerous discoveries on carbon nanotubes within the cees dekker 1990s. Since 2000, he moved to one-molecule biophysics and nanobiology. His present-day investigate concentrates on (i) nanopores for protein sequencing; (ii) chromosome construction, particularly SMC motor protein; and (iii) creating a living artificial mobile from lifeless molecules. Dekker is surely an elected member in the KNAW and fellow towards the APS and the IOP.

2008, to start with observation of protein-coated DNA translocation as a result of nanopores; fixed the origin with the electrophoretic pressure on DNA in nanopores; uncovered a major velocity boost of microtubules in electric fields; discovered an anomalous electro-hydrodynamic orientation of microtubules; and fixed the origin of sounds in carbon nanotubes in liquid

Illustration (2) of bending configurations in 3D simulations of DNA rods on nanopores. A part of the membrane is revealed in grey, the rim of your pore is highlighted in crimson, in addition to a 3D rendering in the movement from the DNA rod is shown.

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