Amanote Research

Amanote Research

    RegisterSign In

Length-Independent Transport Rates in Biomolecules by Quantum Mechanical Unfurling

Chemical Science - United Kingdom
doi 10.1039/c5sc03495g
Full Text
Open PDF
Abstract

Available in full text

Categories
Chemistry
Date

January 1, 2016

Authors
Ariel D. LevineMichael IvUri Peskin
Publisher

Royal Society of Chemistry (RSC)


Related search

Transport of Biomolecules in Asymmetric Nanofilter Arrays

Analytical and Bioanalytical Chemistry
BiochemistryAnalytical Chemistry
2009English

Quantum Mechanical Balance Equations for Modeling Transport in Closed Electric Circuits.

2001English

Chloride Ion Transport by the E. Coli CLC Cl−/H+ Antiporter: A Combined Quantum-Mechanical and Molecular-Mechanical Study

Frontiers in Chemistry
Chemistry
2018English

Image Analysis and Length Estimation of Biomolecules Using AFM

IEEE Transactions on Information Technology in Biomedicine
2012English

Length-Independent Charge Transport of Well-Separated Single-Crystal TiO2 Long Nanowire Arrays

Chemical Science
Chemistry
2018English

Quantum Tunneling in Deformed Quantum Mechanics With Minimal Length

Advances in High Energy Physics
High Energy PhysicsNuclear
2016English

Majority Voting by Independent Classifiers Can Increase Error Rates

American Statistician
MathematicsStatisticsUncertaintyProbability
2013English

Mechanical Quantum Resonators

AIP Conference Proceedings
AstronomyPhysics
2005English

Quantum Transport in Carbon Nanotubes

Reviews of Modern Physics
AstronomyPhysics
2015English

Amanote Research

Note-taking for researchers

Follow Amanote

© 2025 Amaplex Software S.P.R.L. All rights reserved.

Privacy PolicyRefund Policy