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651 results for “The Netherlands”

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Figs 18–19 in Lemonia batavorum sp. nov. from the Netherlands, an overlooked sibling of L. dumi (Lepidoptera: Brahmaeidae)

Figs 18–19. Male genitalia of Lemonia dumi (Linnaeus, 1761). 18 – Czechia, Moravia, Kuřim, gen. prep. SU21301; 19 – Slovakia, Plášťovce, gen. prep. SU21285 (a – detail of socii, b – detail of the tip of aedeagus).

opencc-by-4.0Dec 2021View details →
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Figs 16–17 in Lemonia batavorum sp. nov. from the Netherlands, an overlooked sibling of L. dumi (Lepidoptera: Brahmaeidae)

Figs 16–17. Male genitalia of Lemonia batavorum sp. nov., paratypes. 16 – gen. prep. SU21289; 17 – gen. prep. SU21286 (a – detail of socii, b – detail of the tip of aedeagus).

opencc-by-4.0Dec 2021View details →
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Figs 6–10 in Lemonia batavorum sp. nov. from the Netherlands, an overlooked sibling of L. dumi (Lepidoptera: Brahmaeidae)

Figs 6–10. Habitus of Lemonia dumi (Linnaeus, 1761), males. 6 – Czechia, Bohemia, Jirny, 16.x.1932, F. Gemperle leg. (NMPC). 7 – Czechia, Moravia, Kuřim, 24.ix.1979, L. Traxler leg. (NMPC). 8 – Austria, Wien, 10.x.1940, F. Fischer leg. (NMPC). 9 – Switzerland, Menziken (without faunistic details) (NMPC). 10 – Denmark, Tibirke Bk., Sjaelland RT, 16.x.1980, R. Torp (ZMUC) (a – dorsal view, b – ventral view).

opencc-by-4.0Dec 2021View details →
zenodo40/100

Figs 11–15 in Lemonia batavorum sp. nov. from the Netherlands, an overlooked sibling of L. dumi (Lepidoptera: Brahmaeidae)

Figs 11–15. Habitus of Lemonia dumi (Linnaeus, 1761), females. 11 – Czechia, Bohemia, Jirny, 10.x.1933, A. Silbernagel leg. (NMPC). 12 – Czechia, Moravia, Kuřim, 16.ix.1979, L. Traxler leg. (NMPC). 13 – Slovakia, Gbelce, 27.x.1966, J. Marek (NMPC). 14 – Germany, Walheim (without faunistic details) (NMPC). 15 – Denmark, Tibirke Bk., Sjaelland RT, 13.x.1955, H. K. Jensen (ZMUC) (a – dorsal view, b – ventral view).

opencc-by-4.0Dec 2021View details →
zenodo40/100

Figs 1–5 in Lemonia batavorum sp. nov. from the Netherlands, an overlooked sibling of L. dumi (Lepidoptera: Brahmaeidae)

Figs 1–5. Habitus of Lemonia batavorum sp. nov., Netherlands, De Veluwe, x.2017, ex ovo (NMPC). 1 – holotype, male. 2–5 – paratypes: 2–3 – males; 4–5 – females (a – dorsal view, b – ventral view).

opencc-by-4.0Dec 2021View details →
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Fig. 26 in Lemonia batavorum sp. nov. from the Netherlands, an overlooked sibling of L. dumi (Lepidoptera: Brahmaeidae)

Fig. 26. Neighbor-joining tree based on public DNA barcodes of the Lemonia specimens with Sabalia picarina Walker, 1865 (Brahmaeidae) as an outgroup species (for sources see Material and methods).

opencc-by-4.0Dec 2021View details →
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Figs 24–25 in Lemonia batavorum sp. nov. from the Netherlands, an overlooked sibling of L. dumi (Lepidoptera: Brahmaeidae)

Figs 24–25. Female genitalia of Lemonia sp. 24 – L. batavorum sp. nov., paratype, gen. prep. SU19904; 25 – L. dumi (Linnaeus, 1761), Czechia, Moravia, Brno, gen. prep. SU21288. a – detail of ostium.

opencc-by-4.0Dec 2021View details →
zenodo40/100

Will it float? Exploring the social feasibility of floating solar energy infrastructure in the Netherlands

<p>Floating photovoltaic (FPV) is emerging as a promising renewable energy concept in which solar panels are installed on floating infrastructure to enable the production of renewable energy on water. While the body of knowledge on technical, financial and environmental aspects is expanding steadily, so far the societal implications of FPV remain largely unstudied. Here, we investigate public attitudes to a FPV pilot project at the Oostvoornse lake, the Netherlands. We conducted interviews with stakeholders to explore how the local community with high interest and involvement in the lake perceives the pilot project. Thereupon, we conducted a field survey with recreational users of the lake and carried out a random forest regression analysis to examine what factors shape recreationists&rsquo; support or opposition. Interview results show that the diversity of stakeholders and their diverging use of the Oostvoornse lake leads to a broad variety of concerns about how the pilot project could affect their activities and interests. Particularly the uncertainty on possible impacts due to the newness of FPV was a reason for stakeholders to take a reluctant stance towards the pilot. In contrast, our quantitative results show that recreationists were highly supportive of the project, mainly due to their positive attitudes towards local authorities and the broader societal benefits the pilot project is perceived to generate. Landscape alteration was identified to be by far the most important objection, which indicates that negative implications from a recreation perspective could be largely accommodated through appropriate siting decisions or other measures that mitigate visibility.</p>

opencc-by-4.0Feb 2022View details →
zenodo40/100

LiDAR metrics generated from Airborne Laser Scanning (ALS) data across the Netherlands

<p>This data repository contains the LiDAR metrics generated from country-wide Airborne Laser Scanning (ALS) data from the Netherlands. The LiDAR metrics (10-meter&nbsp;resolution) are derived from AHN3 using <a href="https://laserfarm.readthedocs.io/en/latest/">Laserfarm</a> workflow. Raw point cloud data can be downloaded <a href="https://app.pdok.nl/ahn3-downloadpage/">here</a>.&nbsp;</p>

opencc-by-4.0Mar 2022View details →
zenodo40/100

Fig. 4 in New Species Of Praepusa (Carnivora, Phocidae, Phocinae) From The Netherlands Supports East To West Neogene Dispersal Of True Seals

Fig. 4. Geographical and palaeogeographical locations of the studied area with arrows indicating dispersals of different species of the genus Praepusa from the Eastern Paratethys westward: 1 — Praepusa vindobonensis: Western Kazakhstan and Austria, Middle Miocene, early Sarmatian (16.5–11.2 Ma); 2 — Pr. vindobonensis (= tarchankutica): Ukraine and Moldova, Middle Miocene, middle Sarmatian (13.6–12.3 Ma); 3 — Pr. pannonica: Moldova and Hungary, Middle Miocene, early-middle Sarmatian (12.3–11.2 Ma). 4 — Pr. magyaricus: Vienna Basin, middle Sarmatian, Middle Miocene (13.6–12.3 Ma); 5 — Pr. boeska: The Netherlands and Belgium, Late Miocene — Early Pliocene (11.6–3.2 Ma).

opencc-by-4.0Dec 2015View details →
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Fig. 1 in New Species Of Praepusa (Carnivora, Phocidae, Phocinae) From The Netherlands Supports East To West Neogene Dispersal Of True Seals

Fig. 1. Sandpit de Kuilen, location of Mill-Langenboom, in the eastern Noord-Brabant, The Netherlands(Late Miocene).

opencc-by-4.0Dec 2015View details →
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Fig. 3 in New Species Of Praepusa (Carnivora, Phocidae, Phocinae) From The Netherlands Supports East To West Neogene Dispersal Of True Seals

Fig. 3. Sacrum of Praepusa boeska sp. n., RGM 629552, collection of the Naturalis Biodiversity Center in Leiden (NL). Zanclian–Piacenzian (Pliocene), Antwerp Basin, Belgium: A — ventral view; B — dorsal view; C — cranial view.

opencc-by-4.0Dec 2015View details →
dryad40/100

Integrated population model for the Mallard in the Netherlands

<p><span>Europe's highest densities of breeding Mallards (<em>Anas platyrhynchos</em>) are found in the Netherlands, but the breeding population there has declined by ~30% since the 1990s. The exact cause of this decline has remained unclear.</span><span> </span><span>Here, we used an integrated population model to jointly analyze Mallard population survey, nest survey, duckling survival and band-recovery data. We used this approach to holistically estimate all relevant vital rates, including duckling survival rates for years for which no explicit data were available. Mean vital rate estimates were high for nest success (0.38 ±0.01) and egg hatch rate (0.96 ±0.001), but relatively low for clutch size (8.2 ±0.05) compared to populations in other regions. Estimates for duckling survival rate for the three years for which explicit data were available were low (0.16-0.27) compared to historical observations, but were comparable to rates reported for other regions with declining populations. Finally, mean survival rate was low for ducklings (0.18 ±0.02), but high and stable for adults (0.71 ±0.03). Population growth rate was only affected by variation in duckling survival, but since this is a predominantly latent state variable, this result should be interpreted with caution. However, it does strongly indicate that none of the other vital rates, all of which were supported by data, was able to sufficiently explain the population decline. Together with a comparison with historic vital rates, these findings point to a reduced duckling survival rate as the likely cause of the decline. Candidate drivers of reduced duckling survival are increased predation pressure and reduced food availability, but this requires future study. Integrated population modeling can provide valuable insights into population dynamics even when empirical data for a key parameter are partly missing.</span></p>

opencc-zeroMay 2022View details →
zenodo40/100

Supplementary material of Kristallbrockensalt microstructures of the Zechstein-2 rock salt from the Northern Netherlands

<p>This dataset represents supporting data for the paper entitled&nbsp; <strong>Grain size dependent large rheology contrasts of halite at low deviatoric stress: evidence from microstructural study of naturally deformed gneissic Zechstein-2 rock salt (Kristallbrockensalz) from the Northern Netherlands</strong> <strong>,&nbsp;</strong>which has been submitted to <strong>Solid Earth </strong>journal</p> <p>The so-called Kristallbrocken salt has a unique and quite spectacular grain size distribution and marks an important horizon throughout the entire Permian Basin. Based on microstructural observations we interpret that fine grained halite deformed much weaker (i.e. faster) and has characteristic pressure-solution structures,&nbsp;as compared to much less deformed Kristallbrocken megacrystals that developed subgrains during dislocation creep.</p> <p>This dataset contains (1) a collection of addiational micrographs from gamma irradiated halite thin sections, (2) high resolution sample overview scans in tramsmitted and reflected light microscopy and grain and subgrainsize measurements, (3) Supportind EBSD material, (4) BIB-SEM material and (5) XRD results of sedond phase inclusions.</p> <p>(1), (3) and (4) are compiled in PowerPoint (.pptx) format, (2) contains multiple files of microscopical images or panoramas overlain with interpreted digitized grain and subgrain boundaries compiled in Inkscape (.svg) files together with corresponding measurements in Excel (.xls) files and (5) a text document (.txt) of XRD second phase results.</p>

opencc-by-4.0Jul 2022View details →
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The Story Map of the Royal Netherlands Standardization Institute (NEN) on Institutionalizing Responsibility

<p>The Royal Netherlands Standardization Institute (NEN) has started various research projects to explore how standardization can be made more socially responsible. The Delft University of Technology has explored what factors motivate, obstruct, and facilitate social responsibility in standardisation processes. As such, it supports NEN in understanding how it can better align its activities with the values, needs, and expectations of society.</p>

opencc-by-4.0Jul 2022View details →
zenodo40/100

Text-fig. 1. Type specimen of Palmocarpon cretaceum MIQUEL, 1853, as illustrated by Miquel (1853: pl. 7). This figure does not include the piece of flint covering the central part of the fossil shown in the photograph (Text-fig. 2). in The Type Of Palmocarpon Cretaceum Miq., 1853 Described From The Cretaceous Of The Sint-Pietersberg, The Netherlands, Is An Eocene Nypa Burtinii (Brongn.) Ettingsh., 1879, Most Likely From The Brussels Area, Belgium

Text-fig. 1. Type specimen of Palmocarpon cretaceum MIQUEL, 1853, as illustrated by Miquel (1853: pl. 7). This figure does not include the piece of flint covering the central part of the fossil shown in the photograph (Text-fig. 2).

opencc-by-4.0Aug 2022View details →
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Text-fig. 2. Type specimen of Palmocarpon cretaceum MIQUEL, 1853 (V 21763 in the NHM, London). a: Shows the front (for comparison with Text-fig. 1), b: shows the reverse, with the label glued to it. in The Type Of Palmocarpon Cretaceum Miq., 1853 Described From The Cretaceous Of The Sint-Pietersberg, The Netherlands, Is An Eocene Nypa Burtinii (Brongn.) Ettingsh., 1879, Most Likely From The Brussels Area, Belgium

Text-fig. 2. Type specimen of Palmocarpon cretaceum MIQUEL, 1853 (V 21763 in the NHM, London). a: Shows the front (for comparison with Text-fig. 1), b: shows the reverse, with the label glued to it.

opencc-by-4.0Aug 2022View details →
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Figure 1 in Risk screening and management of alien terrestrial planarians in The Netherlands

Figure 1. Photographs of the alien terrestrial planarian species found indoors and outdoors in The Netherlands: Anisorhynchodemus sp., found in greenhouses in Rotterdam, Amsterdam and Arnhem (A, Photo by Roy Kleukers); Bipalium kewense found in greenhouses Amsterdam, Utrecht and Leiden (B, Photo by Pierre Gros); Parakontikia ventrolineata found in a garden in Amsterdam Noord (C, Photo by Roy Kleukers); Caenoplana coerulea found in a greenhouse in Nijmegen (D, Photo by Roy Kleukers); Caenoplana variegata found in gardens in Castricum, Bleiswijk, Hillegersberg, Zwijndrecht, Zaandam and Heemstede (E, Photo by Roy Kleukers); Caenoplana cf. micholitzi found in a greenhouse in Arnhem (F, Photo by Roy Kleukers); Dolichoplana sp. found in greenhouses in Amsterdam and Arnhem, (G, Photo by Roy Kleukers); Marionfyfea adventor found in gardens in Goes, Schiedam and Beek-Ubbergen (H, Photo by Jochem Kuhnen) and Obama cf. nungara found in a garden center in Gilzen (I, Photo by Pierre Gros).

opencc-by-4.0Dec 2021View details →
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Figure 3 in Risk screening and management of alien terrestrial planarians in The Netherlands

Figure 3. Distribution of alien terrestrial planarian species in The Netherlands (A sp = Anisorynchodemus sp; BK = Bipalium kewense; CC = Caenoplana coerulea; CM = Caenoplana cf. micholitzi; CV = Caenoplana variegata; D sp = Dolichoplana sp. MA = Marionfyfea adventor; ON = Obama cf. nungara; PV = Parakontikia ventrolineata). For details see Supplementary material Table S24.

opencc-by-4.0Dec 2021View details →
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Figure 2 in Risk screening and management of alien terrestrial planarians in The Netherlands

Figure 2. Cumulative number of introduced species based on the years of first records of alien terrestrial planarians in the United Kingdom, France, and The Netherlands.

opencc-by-4.0Dec 2021View details →

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dandi-nwb
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International Brain Laboratory public data

The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.

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Last verified 2026-04-29Open record

OpenNeuro

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openneuro
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Last verified 2026-04-29Open record