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Timo Ikonen

Showing results (1-10 of 10) with videos related to

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The Journal of Chemical Physics|June 23, 2014
Driven polymer transport through a periodically patterned channelTimo Ikonen
The Journal of Chemical Physics|August 24, 2015
Theory of polymer translocation through a flickering nanopore under an alternating driving forceJalal Sarabadani, Timo Ikonen, Tapio Ala-Nissila
The Journal of Chemical Physics|December 8, 2014
Iso-flux tension propagation theory of driven polymer translocation: the role of initial configurationsJalal Sarabadani, Timo Ikonen, Tapio Ala-Nissila
The Journal of Chemical Physics|June 7, 2012
Polymer translocation under time-dependent driving forces: resonant activation induced by attractive polymer-pore interactionsTimo Ikonen, Jaeoh Shin, Wokyung Sung, et al.
The Journal of Chemical Physics|February 12, 2014
Polymer escape from a confining potentialHarri Mökkönen, Timo Ikonen, Hannes Jónsson, et al.
The Journal of Chemical Physics|June 15, 2015
Transition state theory approach to polymer escape from a one dimensional potential wellHarri Mökkönen, Timo Ikonen, Tapio Ala-Nissila, et al.
Physica Medica : PM : an International Journal Devoted to the Applications of Physics to Medicine and Biology : Official Journal of the Italian Association of Biomedical Physics (AIFB)|February 8, 2018
Abstract ID: 142 Monte Carlo modeling of Varian TrueBeam with Geant4-based VirtuaLinac and comparison to experimentsTimo Ikonen, Antti Kulmala, Christopher Boylan, et al.
The Journal of Chemical Physics|November 16, 2010
Polymer escape from a metastable Kramers potential: path integral hyperdynamics studyJaeoh Shin, Timo Ikonen, Mahendra D Khandkar, et al.
Scientific Reports|August 9, 2017
Driven translocation of a semi-flexible polymer through a nanoporeJalal Sarabadani, Timo Ikonen, Harri Mökkönen, et al.
Scientific Reports|March 30, 2020
Conjugation with carbon nanotubes improves the performance of mesoporous silicon as Li-ion battery anodeTimo Ikonen, Nathiya Kalidas, Katja Lahtinen, et al.
Pageof 1

Showing results (1-10 of 10) with videos related to

Sort By:
Pageof 1
The Journal of Chemical Physics|June 23, 2014
Driven polymer transport through a periodically patterned channelTimo Ikonen
The Journal of Chemical Physics|August 24, 2015
Theory of polymer translocation through a flickering nanopore under an alternating driving forceJalal Sarabadani, Timo Ikonen, Tapio Ala-Nissila
The Journal of Chemical Physics|December 8, 2014
Iso-flux tension propagation theory of driven polymer translocation: the role of initial configurationsJalal Sarabadani, Timo Ikonen, Tapio Ala-Nissila
The Journal of Chemical Physics|June 7, 2012
Polymer translocation under time-dependent driving forces: resonant activation induced by attractive polymer-pore interactionsTimo Ikonen, Jaeoh Shin, Wokyung Sung, et al.
The Journal of Chemical Physics|February 12, 2014
Polymer escape from a confining potentialHarri Mökkönen, Timo Ikonen, Hannes Jónsson, et al.
The Journal of Chemical Physics|June 15, 2015
Transition state theory approach to polymer escape from a one dimensional potential wellHarri Mökkönen, Timo Ikonen, Tapio Ala-Nissila, et al.
Physica Medica : PM : an International Journal Devoted to the Applications of Physics to Medicine and Biology : Official Journal of the Italian Association of Biomedical Physics (AIFB)|February 8, 2018
Abstract ID: 142 Monte Carlo modeling of Varian TrueBeam with Geant4-based VirtuaLinac and comparison to experimentsTimo Ikonen, Antti Kulmala, Christopher Boylan, et al.
The Journal of Chemical Physics|November 16, 2010
Polymer escape from a metastable Kramers potential: path integral hyperdynamics studyJaeoh Shin, Timo Ikonen, Mahendra D Khandkar, et al.
Scientific Reports|August 9, 2017
Driven translocation of a semi-flexible polymer through a nanoporeJalal Sarabadani, Timo Ikonen, Harri Mökkönen, et al.
Scientific Reports|March 30, 2020
Conjugation with carbon nanotubes improves the performance of mesoporous silicon as Li-ion battery anodeTimo Ikonen, Nathiya Kalidas, Katja Lahtinen, et al.
Pageof 1