1 to 10 of 12,991 Results
Feb 17, 2025 - Institute of Climate and Energy Systems (ICE) – Jülich Systems Analysis (ICE-2)
Dabrock, Kristina; Pflugradt, Noah; Weinand, Jann Michael; Stolten, Detlef, 2024, "ETHOS.BUILDA: A Unified and Complete Building Height Dataset for Germany", https://doi.org/10.26165/JUELICH-DATA/NYCPXE, Jülich DATA, V2
Zenodo |
Feb 17, 2025 - Institute of Climate and Energy Systems (ICE) – Jülich Systems Analysis (ICE-2)
Dabrock, Kristina; Ulken, Jens; Pflugradt, Noah; Weinand, Jann Michael; Stolten, Detlef, 2024, "ETHOS.BUILDA: A Dataset of TABULA Building Types for all German Residential Buildings", https://doi.org/10.26165/JUELICH-DATA/SXYIB6, Jülich DATA, V2
Zenodo |
Feb 10, 2025 - mGROWA North Rhine-Westphalia
Herrmann, Frank, 2025, "Mit der Modellkette RCP-GCM-RCM-mGROWA projizierte Grundwasserneubildung in Nordrhein-Westfalen (NRW)", https://doi.org/10.26165/JUELICH-DATA/JXJOTI, Jülich DATA, V1
Mit einem Multi-Modell-Ensemble wurde analysiert, wie sich der Klimawandel auf den Grundwasserhaushalt in Nordrhein-Westfalen (NRW) auswirkt. Hierzu wurden Projektionen der zukünftigen Grundwasserneubildung für insgesamt 36 Mitglieder der Modellkette RCP-GCM-RCM-mGROWA, bestehend... |
Feb 10, 2025 - mGROWA Germany
Herrmann, Frank, 2025, "Grundwasserneubildung in Deutschland in den Dekaden von 1961 bis 2020", https://doi.org/10.26165/JUELICH-DATA/IZCYJI, Jülich DATA, V1
Mit dem Modell mGROWA für ganz Deutschland simulierte mittlere Netto-Grundwasserneubildung. Aggregierung der Ergebnisse für die sechs Dekaden und zwei 30-Jahre-Perioden von 1961 bis 2020 |
Feb 7, 2025 - mGROWA Germany
Herrmann, Frank; McNamara, Ian, 2025, "Estimates of irrigation requirements throughout Germany under varying climatic conditions", https://doi.org/10.26165/JUELICH-DATA/SJ6HJH, Jülich DATA, V1
As climate change brings about hotter and often drier summers, an improved understanding of how irrigation requirements vary according to climatic conditions is of increasing importance. Within Germany, temperate conditions have historically enabled most agriculture to be supplie... |
Feb 7, 2025 - Peter Grünberg Institute – Semiconductor Nanoelectronics (PGI-9)
Schäpers, Thomas, 2025, "Fabrication and characterization of InAs nanowire-based quantum dot structures utilizing buried bottom gates", https://doi.org/10.26165/JUELICH-DATA/0X7H3S, Jülich DATA, V1
Semiconductor nanowires can be utilized to create quantum dot qubits. The formation of quantum dots is typically achieved by means of bottom gates created by a lift-off process. As an alternative, we fabricated flat buried bottom gate structures by filling etched trenches in a Si... |
Feb 7, 2025 -
Fabrication and characterization of InAs nanowire-based quantum dot structures utilizing buried bottom gates
Fixed Field Text Data - 9.1 KB - SHA-256: dc4b13f574d65001ba5c8413e26e9601970512b06fe17222bde2f8aafc1b0355
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Feb 7, 2025 -
Fabrication and characterization of InAs nanowire-based quantum dot structures utilizing buried bottom gates
Fixed Field Text Data - 9.1 KB - SHA-256: 75df0c55dbd7c3ddfb13696d44364d61582a2ceb3b394662e65d0074ce597e7a
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Feb 7, 2025 -
Fabrication and characterization of InAs nanowire-based quantum dot structures utilizing buried bottom gates
Fixed Field Text Data - 9.1 KB - SHA-256: fc8b801516923bb112eb4ab882770934f9da026f84f5d7d586c313aceffbefa4
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Feb 7, 2025 -
Fabrication and characterization of InAs nanowire-based quantum dot structures utilizing buried bottom gates
MS Excel Spreadsheet - 22.3 KB - SHA-256: 4820becf37a5a8043584967d2c0963ec1d023596e47f9921e859ba0b173483a9
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