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heiDATA is an institutional repository for Open Research Data from Heidelberg University. It is managed by Heidelberg University's Research Data Unit, a joint institution of the University Library and the Computing Centre. If you are interested in publishing your data here, please have a look at our user guide and get in touch with us. Detailed information on heiDATA can be found in our service description.
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Mar 28, 2024 - Astronomische Grundlagen für den Kalender
Schmidt, Robert W., 2024, "Astronomische Grundlagen für den Kalender 2026 [Datensatz]", https://doi.org/10.11588/data/7NB1L5, heiDATA, V1
Die Astronomischen Grundlagen für den Kalender werden vom Astronomischen Rechen-Institut in Heidelberg berechnet und herausgegeben. Sie haben den Zweck, den Kalenderverlagen das Material für die Herstellung ihrer Kalender bereitzu- stellen. Eine gesetzliche Gewähr kann nicht Über...
Mar 28, 2024Astronomisches Rechen-Institut (ARI)
This dataverse contains fundamental astronomical calendar data for our annual book "Astronomische Grundlagen für den Kalender". The calculations were performed at the Astronomisches Rechen-Institut of the Zentrum für Astronomie, Heidelberg University. The data provide calendar pu...
Mar 27, 2024 - Tegeder Group
Ajdari, Mohsen; Landwehr, Felix; Hoffmann, Marvin; Hoffmann, Hendrik; Bunz, Uwe H. F.; Dreuw, Andreas; Tegeder, Petra, 2024, "Influence of Core Halogenation on the Electronic Structure of Naphthothiadiazole Derivatives [data]", https://doi.org/10.11588/data/BKMRYG, heiDATA, V1
Underlying data for figures in the paper "Influence of Core Halogenation on the Electronic Structure of Naphthothiadiazole Derivatives"
Mar 27, 2024 - Tegeder Group
Hoffmann, Marvin; Ajdari, Mohsen; Landwehr, Felix; Tverskoy, Olena; Bunz, Uwe H. F.; Dreuw, Andreas; Tegeder, Petra, 2024, "Influence of N-Introduction in Pentacene on the Electronic Structure and Excited Electronic States [data]", https://doi.org/10.11588/data/TUQIHY, heiDATA, V1
Underlying data for figures in the paper "Influence of N-Introduction in Pentacene on the Electronic Structure and Excited Electronic States"
Mar 27, 2024 - Tegeder Group
Ajdari, Mohsen; Pappenberger, Ronja; Walla, Christian; Hoffmann, Marvin; Michalsky, Ina; Kivala, Milan; Dreuw, Andreas; Tegeder, Petra, 2024, "Impact of Connectivity on the Electronic Structure of N-Heterotriangulenes [data]", https://doi.org/10.11588/data/CG6QFT, heiDATA, V1
Underlying data for figures in the paper "Impact of Connectivity on the Electronic Structure of N-Heterotriangulenes"
Tegeder Group(Universität Heidelberg)
Mar 27, 2024
Research data publications of tegeder group.
Mar 26, 2024 - SFB 1249: N-Heteropolyzyklen als Funktionsmaterialien - A: Synthesis
Hüßler, Christopher; Dietl, Martin C.; Kahle, Justin; Lopes, Eric F.; Kawamura, Miku; Krämer, Petra; Rominger, Frank; Rudolph, Matthias; Hachida, Iwao; Hashmi, A. Stephen K., 2024, "Synthesis and structural properties of para-diselenopyrazines [data]", https://doi.org/10.11588/data/UYS0N6, heiDATA, V1
Recently, dithienopyrazines have emerged as promising building blocks in the field of materials science, showcasing their potential as hole-transport materials in organic electronic devices. Herein, we report the synthesis of its heavier analogues, the diselenopyrazines, along wi...
Mar 25, 2024 - SFB 1249: N-Heteropolyzyklen als Funktionsmaterialien - B: Theory & Structure
Kefer, Oskar; Kolesnichenko, Pavel V.; Buckup, Tiago, 2024, "Two-dimensional coherent electronic spectrometer with switchable multi-color configurations [research data]", https://doi.org/10.11588/data/BLXCSM, heiDATA, V1
Broadband implementation of two-dimensional electronic spectroscopy (2DES) is a desirable goal for numerous research groups, yet achieving it presents considerable challenges. An effective strategy to mitigate these challenges is the utilization of two-color approaches, effective...
Mar 21, 2024 - AG Weinhardt
Erozan, Ayse; Heuveline, Vincent; Weinhardt, Venera, 2024, "ACSeg: Automated 3D Cytoplasm Segmentation in Soft X-Ray Tomography [Jurkat T cell data]", https://doi.org/10.11588/data/XEBZLL, heiDATA, V1
The structure of cells is a key to understanding cellular function, diagnosing diseases, and developing new treatments. Soft X-ray tomography is uniquely used to access 3D cellular structure of various cells at statistically significant sample sizes. These datasets are reconstruc...
AG Weinhardt(Heidelberg University, Centre of Organismic Studies )
Mar 21, 2024
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