Universitätsmedizin Göttingen; Schadstoffsanierung im Emissionsarmen Verfahren TRGS 519 BT 4344 im Personalwohnheim 3, Göttingen; Umbau Personalwohnheim 3, 2.OG geplant

Universitätsmedizin Göttingen; Schadstoffsanierung im Emissionsarmen Verfahren TRGS 519 BT 4344 im Personalwohnheim 3, Göttingen; Umbau Personalwohnheim 3, 2.OG geplant RIB Tender - RIB e-Vergabe und Aufträge für Bieter More settings for Vergabeplattform Bayern More settings for Vergabeplattform Berlin More settings for Vergabeplattform Wuppertal More settings for Vergabeplattform Stuttgart More settings for Vergabeplattform Hannover More settings for Vergabeplattform der GMSH More settings for RIB eVergabe 04 Maschinentechnik Zweckverband Unteres Lonetal Show further assignments by Zweckverband Unteres Lonetal Application period Sep 15, 2026 until Oct 14, 2026 Expiration time Oct 14, 2026, 10:00 AM Period not specified Execution place 89129 Öllingen Brief Description Demontagearbeiten, Lieferung und Montage Neu-Armarturen, Rohrleitungen, Schieber, Antriebe, Pumpen, MID, Geländer; Herstellung Kernbohrungen Details Apply Recommend 15 September 2026 Publication date ...

September 16, 2026

Vergabestelle Instandsetzung Regenwasserkanal Soltau, Celler Straße; öffentliche Ausschreibung veröffentlicht

Vergabestelle Instandsetzung Regenwasserkanal Soltau, Celler Straße; öffentliche Ausschreibung veröffentlicht CXQ6YY6RSDN | Instandsetzung Regenwasserkanal Soltau, Celler Straße | vergabe.niedersachsen.de Info Ohne Bestätigung der Teilnahme an diesem Verfahren erfolgt keine E-Mail Benachrichtigung über neue Nachrichten der Vergabestelle (z.B. Aktualisierung der Vergabeunterlagen). Bestätigen Sie die Teilnahme am Verfahren um folgende Vorteile nutzen zu können: Sie werden über neue Nachrichten der Vergabestelle automatisch per E-Mail informiert (z.B. Änderungen an den Vergabeunterlagen). Sie können direkt über den Kommunikationsbereich der Vergabestelle eigene Nachrichten zukommen lassen. ...

September 16, 2026

Wisdom Madede Nzima forsvarer sin doktorgradsoppgave i Urbygningen, NMBU; Malawi matsikkerhet påvirkes av småskala grønnsaksdyrking

Wisdom Madede Nzima forsvarer sin doktorgradsoppgave i Urbygningen, NMBU; Malawi matsikkerhet påvirkes av småskala grønnsaksdyrking september 2026: Wisdom Madede Nzima (LANDSAM) | NMBU september 2026: Wisdom Madede Nzima (LANDSAM) Wisdom Madede Nzima (Institutt for internasjonale miljø- og utviklingsstudier) forsvarer sin doktorgradsoppgave: Småskala grønnsaksdyrking i Malawi - Et helhetlig perspektiv på gårdens matsikkerhet og levekår English title of the thesis: The smallholder vegetable farming system in Malawi: A whole farm perspective on food security and rural livelihoods ...

September 16, 2026

Wisdom Madede Nzima undersøker grønnsaksdyrking i Malawi; Fattigste drar størst nytte av inntekter

Wisdom Madede Nzima undersøker grønnsaksdyrking i Malawi; Fattigste drar størst nytte av inntekter Grønnsaksdyrking styrker matsikkerheten, men gevinstene er ulikt fordelt | NMBU Grønnsaksdyrking styrker matsikkerheten, men gevinstene er ulikt fordelt For mange bondefamilier i Malawi er grønnsaker først og fremst en inntektskilde, og dernest mat. Samtidig varierer gevinstene betydelig som følge av store forskjeller i ressurser og muligheter. Landbruk er livsgrunnlaget for rundt 85 prosent av Malawis befolkning. Likevel er matusikkerhet og fattigdom fortsatt utbredt. Grønnsaksdyrking trekkes stadig oftere fram som en vei til bedre kosthold, levekår og inntekter. ...

September 16, 2026

Adam E. A. Fouda Site-Selective Classification of Auger-Electron Spectra and Core-Electron Binding Energies; Chicago, IL; binding energy boosts robustness and accuracy.

Adam E. A. Fouda Site-Selective Classification of Auger-Electron Spectra and Core-Electron Binding Energies; Chicago, IL; binding energy boosts robustness and accuracy. Site-Selective Functional Group Classification of Auger-Electron Spectra and Core-Electron Binding Energies with Convolutional Neural Networks Site-Selective Functional Group Classification of Auger-Electron Spectra and Core-Electron Binding Energies with Convolutional Neural Networks Adam E. A. Fouda*1 Data Science Institute, The University of Chicago, Chicago, IL, 60637, United States (*Electronic mail: adamfouda@uchicago.edu) (Dated: 16 September 2026) X-ray spectroscopy techniques probe chemical states in systems with atom-site specificity; however, the site-selective characterization of local bond environments in novel research materials often relies on a combination of reference spectra, multiple complementary spectroscopic techniques and electronic structure calculations. Auger-electron spec- troscopy has long accompanied x-ray photoelectron spectroscopy as a second modality to resolve chemical states with overlapping core-electron binding energies. Here I show that the wealth of information encoded in the Auger spectrum offers the opportunity to train convolutional neural networks for site-selective functional group classification in organic molecules directly from the Auger spectrum lineshape. Furthermore, the inclusion of the core-electron binding energy as an additional modality improves the classification, either by augmenting the input fitted intensities with the binding energy or by conditioning the classification on the binding energy via feature-wise linear modulation layers. The latter approach was previously developed for visual reasoning in image classification, and the present results show that this is the more robust approach for including the binding energy. This work demonstrates the potential for new data-driven characterization capabilities in spectroscopic techniques that are information-rich but difficult to interpret. I. INTRODUCTION The local bonding environment around specific atom sites can significantly alter the activity of functional materials and molecules in applications such as catalysis1,2 and organic synthesis3,4. Spectroscopic techniques are used to character- ize chemical systems. Infrared (IR) and Raman spectroscopy excite the vibrational modes between atoms and are widely used for bond-type identification. However, IR and Raman are global probes of the system’s bonding environment, and higher-energy x-rays are required to interrogate the bonding environment around a specific atom site. X-rays excite inner- shell electrons tightly bound to an atom’s nucleus, and the binding energies of the electrons in these core orbitals are affected by the target atom’s local bond environment, an ef- fect known as the chemical shift.5 This phenomenon enables the photoionization of inner-shell electrons by x-ray photo- electron spectroscopy (XPS) measurements to resolve dif- ferent chemical states in materials,6 molecules,7 solutions,8 liquids,9,10 and biological matter,11 with atom-site selectivity. However, the influence of multiple competing mechanisms, such as charge transfer, electric fields and hybridization,5 which contribute to the structural environment effects on the core-electron binding energy, results in the presence of over- lapping peaks in the XP spectrum, which limits the resolution of XPS measurements. The site-selective characterization of bond environments in novel research materials therefore often relies on reliable reference spectra and on the combination of multiple complementary spectroscopic techniques. Following the removal of a core electron by x-ray pho- toionization, the core-hole decay process results in the au- toionization of secondary electrons from the x-ray-irradiated sample.12,13 The detection of these secondary electrons, which appear as Auger features in the XP spectrum, is com- monly used to distinguish oxidation states of active metal sites in catalysts and functional materials.14–22 This decay process, known as Auger-Meitner decay, involves an outer-shell elec- tron filling the core vacancy, and another outer-shell electron being ejected to the continuum. All energetically possible decay channels involving two outer-shell electrons contribute to the spectrum, and the number of possible final states thus scales non-linearly with respect to the system size. The multi- tude of decay channels explicitly involving transitions of elec- trons from valence bonds to the core-hole encodes a wealth of information into the Auger spectrum, making it a sensitive probe of the surrounding electronic structure. Auger-Electron Spectroscopy (AES) is therefore a powerful tool for charac- terizing local bond environments in novel chemical systems. The complexity of the Auger-Meitner decay process en- ables its enhanced sensitivity compared with XPS and other single-electron x-ray techniques. However, its complexity also challenges its experimental interpretation and computa- tional simulation, which limits the widespread adoption of this technique. The theoretical treatment of the large num- ber of final valence two-hole states (including the contribu- tion of multielectron shakeup and shakeoff processes) is non- trivial due to their multiconfigurational character.23–25 Fur- thermore, the accurate determination of the Auger-Meitner decay rate, and thus spectral intensity, requires the treatment of the ejected electron’s continuum wave function. Numerous approaches have been developed for its treatment, including approximating the spectral intensity by an electron population analysis,26–29 and both implicit30–42 and explicit43–50 consid- erations of the continuum electron wave function. Thus, full treatments of the Auger spectrum are usually limited to small molecules, and approximate treatments of the decay channels and rates are often employed for molecules with more than 20 atoms and for non-gas-phase systems. Whilst the analysis of x-ray spectroscopy measurements with electronic structure methods in “forward” (structure-to- spectrum) mapping is well established for techniques such as XPS,10,51–54 x-ray absorption spectroscopy (XAS),55–61 x- ray emission spectroscopy (XES)62–67 and resonant inelastic arXiv:2609.16386v1 [physics.chem-ph] 14 Sep 2026 ...

September 16, 2026

AlphaEarth embeddings for cropland mapping in Maine, USA; 93.7% accuracy without fine-tuning

AlphaEarth embeddings for cropland mapping in Maine, USA; 93.7% accuracy without fine-tuning From Foundation Embeddings to Cropland Maps:Label Efficiency, Temporal Transferability and Independent Human Validation From Foundation Embeddings to Cropland Maps: Label Efficiency, Temporal Transferability and Independent Human Validation Abstract. Geospatial foundation models provide reusable representations of satellite imagery that can support downstream mapping with limited task-specific modelling. We evaluate whether annual AlphaEarth embeddings support binary cultivated-versus-non-cultivated mapping in Maine, USA, using 192 spatially separated image patches and labels derived from the USDA Cropland Data Layer (CDL). Without fine-tuning the foundation model, a lightweight classifier reaches approximately 93.7% overall accuracy and 90.8% balanced accuracy on held-out patches. Logistic regression is within 0.3 percentage points of a gradient-boosted ensemble, while a nearest-class-centroid rule, which uses labelled class centroids but no iterative parameter fitting, reaches 90.2%. A balanced sample of 60,000 labelled pixels is within approximately 1.3 percentage points of the full pool of 8.6 million pixels; because pixels are spatially autocorrelated, this result concerns pixel-sample efficiency rather than 60,000 independent annotation sites. In a same-region temporal-transfer experiment, classifiers trained in one year remain accurate across 2018 to 2023. Against a blind, two-interpreter consensus at 385 randomly sampled points in one contiguous 2023 block, the AlphaEarth-plus-random-forest map agrees at 95.3% ( κ = 0.82 \kappa=0.82 ), compared with 91.7% for the CDL ( κ = 0.72 \kappa=0.72 ; exact two-sided McNemar p = 0.0161 p=0.0161 ). This local result is consistent with partial smoothing of CDL label noise, but it does not establish statewide correction of the reference product. On the same points, the difference from a fine-tuned TerraMind segmentation model is not statistically significant (95.3% versus 93.5%; p = 0.14 p=0.14 ), and the experiment is not a controlled comparison of computational cost. These results support frozen geospatial embeddings as a low-compute candidate for regional cropland mapping, subject to the limits of a single-state study, a 30 m-derived training reference, and a one-block human validation. ...

September 16, 2026

Bayerische Erzeuger Bio-Kuhmilchgeld in Bayern; monatliche Gesamtauszahlung variiert

Bayerische Erzeuger Bio-Kuhmilchgeld in Bayern; monatliche Gesamtauszahlung variiert Milchgeldauszahlung an bayerische Erzeuger für ökologisch erzeugte Kuhmilch bis einschließlich Juli 2026 bei tatsächlichem Fett- und Eiweißgehalt bei 4,0 % Fett- und 3,4 % Eiweißgehalt Vorjahr bei 4,0 % Fett- und 3,4 % Eiweißgehalt kg % % € ct/kg ct/kg ct/kg ct/kg Januar 60.187.243 4,337 3,459 40.691.121 67,61 66,23 62,50 2,75 Februar 56.553.785 4,247 3,390 37.492.491 66,30 65,51 63,41 2,72 März 64.213.130 4,201 3,353 42.093.101 65,55 65,08 64,49 2,70 April 64.221.079 4,167 3,356 41.870.129 65,20 64,82 64,72 2,73 Mai 67.246.861 4,026 3,368 43.511.056 64,70 64,75 65,17 2,76 Juni 61.396.995 3,978 3,316 39.560.472 64,43 64,86 65,54 2,79 Juli 61.185.927 3,916 3,319 39.186.280 64,04 64,67 66,10 2,82 August 66,65 September 66,99 Oktober 67,05 November 67,03 Dezember 66,79 Jahreswerte5) 435.005.020 4,122 3,365 284.404.651 65,38 65,12 66,57 2,75 ...

September 16, 2026

Beirat Schwachhausen – Bürgerantrag zur Aufenthaltsqualität Nelson-Mandela-Park; akustische Prävention geplant

Beirat Schwachhausen – Bürgerantrag zur Aufenthaltsqualität Nelson-Mandela-Park; akustische Prävention geplant 260908 Beirat Schwachhausen – Fachausschuss „Soziales Integration und Senioren“ – Sitzungsprotokoll Nr. 12 – Anlage 4: Bürgerantrag - Maßnahmen zur Steigerung der Aufenthaltsqualität im Nelson-Mandela-Park durch akustische Prävention 260908 Beirat Schwachhausen – Fachausschuss „Soziales Integration und Senioren“ – Sitzungsprotokoll Nr. 12 – Anlage 4: Bürgerantrag - Maßnahmen zur Steigerung der Aufenthaltsqualität im Nelson-Mandela-Park durch akustische Prävention Anlagen zu Einladungen und Protokollen der Beirats- und Fachausschusssitzungen ...

September 16, 2026

Beiratsfraktion SPD – Antrag zur Errichtung eines Zauns am Nelson-Mandela-Park entlang der Blumenthalstraße

Beiratsfraktion SPD – Antrag zur Errichtung eines Zauns am Nelson-Mandela-Park entlang der Blumenthalstraße 260908 Beirat Schwachhausen – Fachausschuss „Soziales Integration und Senioren“ – Sitzungsprotokoll Nr. 12 – Anlage 2: Beiratsfraktion SPD – Antrag zur Errichtung eines Zauns am Nelson-Mandela-Park entlang der Blumenthalstraße 260908 Beirat Schwachhausen – Fachausschuss „Soziales Integration und Senioren“ – Sitzungsprotokoll Nr. 12 – Anlage 2: Beiratsfraktion SPD – Antrag zur Errichtung eines Zauns am Nelson-Mandela-Park entlang der Blumenthalstraße ...

September 16, 2026

GdP-Chef Kopelke präsentiert Bundeslagebild Organisierte Kriminalität 2025 in Deutschland; Gewalt steigt, 31 OK-Verfahren mit Gewaltdelikten

GdP-Chef Kopelke präsentiert Bundeslagebild Organisierte Kriminalität 2025 in Deutschland; Gewalt steigt, 31 OK-Verfahren mit Gewaltdelikten OK-Lagebild 2025 –GdP-Chef Kopelke: Mehr Schutz gegen immer brutalere Täter OK-Lagebild 2025 – GdP-Chef Kopelke: Mehr Schutz gegen immer brutalere Täter Das heute vorgestellte Bundeslagebild Organisierte Kriminalität 2025 zeigt aus Sicht der Gewerkschaft der Polizei (GdP) eine alarmierende Entwicklung: 683 OK-Ermittlungsverfahren und 7.988 Tatverdächtige zeigen, wie groß die Herausforderung inzwischen ist. Die Täter arbeiten international, digital und zunehmend gewalttätig. Während andere Staaten ihre Kräfte gegen die Organisierte Kriminalität bündeln, droht Deutschland an seinen Zuständigkeiten und Strukturen zu scheitern. ...

September 16, 2026