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papers.bib
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---
---
@string{aps = {American Physical Society,}}
@book{einstein1920relativity,
title={Relativity: the Special and General Theory},
author={Einstein, Albert},
year={1920},
publisher={Methuen & Co Ltd},
html={relativity.html}
}
@book{einstein1956investigations,
bibtex_show={true},
title={Investigations on the Theory of the Brownian Movement},
author={Einstein, Albert},
year={1956},
publisher={Courier Corporation},
preview={brownian-motion.gif}
}
@article{einstein1950meaning,
abbr={AJP},
bibtex_show={true},
title={The meaning of relativity},
author={Einstein, Albert and Taub, AH},
journal={American Journal of Physics},
volume={18},
number={6},
pages={403--404},
year={1950},
publisher={American Association of Physics Teachers}
}
@article{PhysRev.47.777,
abbr={PhysRev},
title={Can Quantum-Mechanical Description of Physical Reality Be Considered Complete?},
author={Einstein*†, A. and Podolsky*, B. and Rosen*, N.},
abstract={In a complete theory there is an element corresponding to each element of reality. A sufficient condition for the reality of a physical quantity is the possibility of predicting it with certainty, without disturbing the system. In quantum mechanics in the case of two physical quantities described by non-commuting operators, the knowledge of one precludes the knowledge of the other. Then either (1) the description of reality given by the wave function in quantum mechanics is not complete or (2) these two quantities cannot have simultaneous reality. Consideration of the problem of making predictions concerning a system on the basis of measurements made on another system that had previously interacted with it leads to the result that if (1) is false then (2) is also false. One is thus led to conclude that the description of reality as given by a wave function is not complete.},
journal={Phys. Rev.},
location={New Jersey},
volume={47},
issue={10},
pages={777--780},
numpages={0},
year={1935},
month={May},
publisher=aps,
doi={10.1103/PhysRev.47.777},
url={http://link.aps.org/doi/10.1103/PhysRev.47.777},
html={https://journals.aps.org/pr/abstract/10.1103/PhysRev.47.777},
pdf={example_pdf.pdf},
altmetric={248277},
dimensions={true},
google_scholar_id={qyhmnyLat1gC},
video={https://www.youtube-nocookie.com/embed/aqz-KE-bpKQ},
additional_info={. *More Information* can be [found here](https://github.com/alshedivat/al-folio/)},
annotation={* Example use of superscripts<br>† Albert Einstein},
selected={true},
inspirehep_id = {3255}
}
@article{einstein1905molekularkinetischen,
title={{\"U}ber die von der molekularkinetischen Theorie der W{\"a}rme geforderte Bewegung von in ruhenden Fl{\"u}ssigkeiten suspendierten Teilchen},
author={Einstein, A.},
journal={Annalen der physik},
volume={322},
number={8},
pages={549--560},
year={1905},
publisher={Wiley Online Library}
}
@article{einstein1905movement,
abbr={Ann. Phys.},
title={Un the movement of small particles suspended in statiunary liquids required by the molecular-kinetic theory 0f heat},
author={Einstein, A.},
journal={Ann. Phys.},
volume={17},
pages={549--560},
year={1905}
}
@article{einstein1905electrodynamics,
title={On the electrodynamics of moving bodies},
author={Einstein, A.},
year={1905}
}
@Article{einstein1905photoelectriceffect,
bibtex_show={true},
abbr={Ann. Phys.},
title="{{\"U}ber einen die Erzeugung und Verwandlung des Lichtes betreffenden heuristischen Gesichtspunkt}",
author={Albert Einstein},
abstract={This is the abstract text.},
journal={Ann. Phys.},
volume={322},
number={6},
pages={132--148},
year={1905},
doi={10.1002/andp.19053220607},
award={Albert Einstein receveid the **Nobel Prize in Physics** 1921 *for his services to Theoretical Physics, and especially for his discovery of the law of the photoelectric effect*},
award_name={Nobel Prize}
}
@book{przibram1967letters,
bibtex_show={true},
title={Letters on wave mechanics},
author={Einstein, Albert and Schrödinger, Erwin and Planck, Max and Lorentz, Hendrik Antoon and Przibram, Karl},
year={1967},
publisher={Vision},
preview={wave-mechanics.gif},
abbr={Vision}
}
@article{wang2024modelling,
title={Modelling and simulation of natural hydraulic fracturing applied to experiments on natural sandstone cores},
author={Wang, Junxiang and Sonntag, Alixa and Lee, Dongwon and Xotta, Giovanna and Salomoni, Valentina A and Steeb, Holger and Wagner, Arndt and Ehlers, Wolfgang},
journal={Acta Geotechnica},
pages={1--17},
year={2024},
publisher={Springer},
selected={true},
abbr={Acta Geotech}
}
@inproceedings{wang2023modelling,
title={Modelling of natural hydraulic fracturing in sandstone cylinders},
author={Wang, J and Xotta, G and Sonntag, A and Wagner, A and Ehlers, W and others},
booktitle={CFRAC 2023: The Seventh International Conference on Computational Modeling of Fracture and Failure of Materials and Structures-Proceedings},
year={2023},
abbr={CFRAC}
}
@inproceedings{wang2022implementation,
title={Implementation of a bounding surface constitutive model for fully coupled dynamic analysis of soil and its validation using dynamic triaxial test},
author={Wang, Junxiang and Xotta, Giovanna and De Marchi, Nico and Salomoni, Valentina and others},
booktitle={8th European Congress on Computational Methods in Applied Sciences and Engineering-ECCOMAS Congress 2022},
year={2022},
abbr={ECCOMAS}
}
@article{wang2022enhanced,
title={An Enhanced Bounding Surface Model for Modelling Various Cyclic Behaviour of Clay},
author={Wang, Junxiang and Xotta, Giovanna and De Marchi, Nico and Salomoni, Valentina},
journal={Materials},
volume={15},
number={21},
pages={7609},
year={2022},
publisher={MDPI},
abbr={Materials}
}