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Charlotte Hamngren Blomqvist
Charlotte Hamngren Blomqvist
Principal Research Engineer, Department of Physics, Biological Physics, Gothenburg University
Email verificata su physics.gu.se
Titolo
Citata da
Citata da
Anno
Pore size effects on convective flow and diffusion through nanoporous silica gels
CH Blomqvist, C Abrahamsson, T Gebäck, A Altskär, AM Hermansson, ...
Colloids and Surfaces A: Physicochemical and Engineering Aspects 484, 288-296, 2015
202015
Colloidal particle aggregation in three dimensions
H Häbel, A Särkkä, M Rudemo, CH Blomqvist, E Olsson, M Nordin
Journal of Microscopy 275 (3), 149-158, 2019
82019
Interconnectivity imaged in three dimensions: nano-particulate silica-hydrogel structure revealed using electron tomography
CH Blomqvist, T Gebäck, A Altskär, AM Hermansson, S Gustafsson, ...
Micron 100, 91-105, 2017
82017
A Single-Cell Study of a Highly Effective Hog1 Inhibitor for in Situ Yeast Cell Manipulation
C Hamngren Blomqvist, P Dinér, M Grøtli, M Goksör, CB Adiels
Micromachines 5 (1), 81-96, 2014
72014
Estimation of mass thickness response of embedded aggregated silica nanospheres from high angle annular dark‐field scanning transmission electron micrographs
M Nordin, C Abrahamsson, C Hamngren Blomqvist, H Häbel, M Röding, ...
Journal of microscopy 253 (2), 166-170, 2014
72014
From static micrographs to particle aggregation dynamics in three dimensions
H Häbel, A Särkkä, M Rudemo, C Hamngren Blomqvist, E Olsson, ...
Journal of Microscopy 262 (1), 102-111, 2016
62016
Design and evaluation of a microfluidic system for inhibition studies of yeast cell signaling
C Hamngren, P Dinér, M Grøtli, M Goksör, CB Adiels
Optical Trapping and Optical Micromanipulation IX 8458, 419-425, 2012
32012
Nano-particulate Silica Hydrogels Imaged in 2d and 3d using tem
CH Blomqvist
PQDT-Global, 2016
2016
Quantitative Transmission Electron Microscopy Studies of the Porous Structure of Silica Nanoparticle Gels
CH Blomqvist
Chalmers University of Technology, Department of Applied Physics, 2015
2015
Development of a novel microfluidic chamber for single cell analysis of HOG inhibition in Saccharomyces cerevisiae (Master thesis)
C Hamngren
Department of Physics, University of Gothenburg, 2010
2010
Il sistema al momento non può eseguire l'operazione. Riprova più tardi.
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