HTTPS://WWW.CEESDEKKER.NET - AN OVERVIEW

https://www.ceesdekker.net - An Overview

https://www.ceesdekker.net - An Overview

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Spatial framework facilitates cooperation in a very social Predicament: empirical proof from a bacterial Neighborhood

Our team scientific studies bacterial cell division and is particularly aiming to represent a ‘bottom up biology’ in synthetic cells which can autonomously divide. Our key desire lies in cell division, chromatin structure, and spatial Command.

Like a human being, I possess the biblical assignment to discover and use every thing in creation for the good thing about my neighbour. I never experience any conflict between religion and science. Quite the opposite, my faith stimulates me to do science, to generally be open up-minded on this planet.’

Nanofabrication of electrodes with sub-5 nm spacing for transport experiments on one molecules and metal clusters

Dekker is naast zijn wetenschappelijk werk ook bekend vanwege zijn belangstelling voor de relatie tussen geloof en wetenschap en de discussie rond intelligent design in 2005. (nl)

SMC complexes can go Bodily roadblocks bigger than their ring dimension, indicating a nontopological mechanism for DNA loop extrusion

We shape microbes into kinds that deviate from their natural phenotype. Specially, I will exhibit our capacity to shape Dwell E. coli bacteria into novel designs such as rectangles, squares, triangles and circles.

2000, discovery that nanotubes can have incredible large present densities; settled the controversial concern of electronic transport by means of DNA molecules by measurements of insulating conduct at The only molecule degree; and demonstration of an AFM approach for solitary-molecule manipulation of nanotubes

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Dekker started off his study on solitary carbon nanotubes in 1993 when he set up a whole new line of research to review electrical transportation through solitary natural and organic molecules in between nanoelectrodes. In 1996 a breakthrough was recognized with carbon nanotubes. This was obtained within a collaboration with the group of Nobel laureate Richard Smalley. STM and nanolithography approaches were used to exhibit that these nanotubes are quantum wires at The one-molecule level, with exceptional Actual physical Attributes.

Since 2000 he moved to solitary-molecule biophysics and nanobiology, with study from studies of DNA loop extrusion and supercoiling to DNA translocation by nanopores. A lot more recently his investigation has focused on finding out chromatin structure and mobile division with bacteria on chip, when he can also be seeking to in the end Establish synthetic cells from The underside up.

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Example (two) of bending configurations in 3D simulations of DNA rods on nanopores. A portion of the membrane is demonstrated in gray, the rim on the pore is highlighted in red, plus a 3D cees dekker rendering of the movement of the DNA rod is shown.

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