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333 results for “Slovakia”

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Fig. 4 in Distribution and ecology of Ruspolia nitidula (SCOPOLI 1786) and Aiolopus thalassinus (FABRICIUS 1781) (Orthoptera) in Slovakia

Fig. 4: Distribution of Aiolopus thalassinus in Slovakia in mapping squares of the Slovak Fauna Databank (for explanation, see Fig. 1).

opencc-by-4.0Jul 2007View details →
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Fig. 2 in Distribution and ecology of Ruspolia nitidula (SCOPOLI 1786) and Aiolopus thalassinus (FABRICIUS 1781) (Orthoptera) in Slovakia

Fig. 2: Distribution of Ruspolia nitidula at different altitudes and in different habitats in Slovakia.

opencc-by-4.0Jul 2007View details →
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Fig. 1 in Distribution and ecology of Ruspolia nitidula (SCOPOLI 1786) and Aiolopus thalassinus (FABRICIUS 1781) (Orthoptera) in Slovakia

Fig. 1: Distribution of Ruspolia nitidula in Slovakia in mapping squares of the Slovak Fauna Databank (empty circles = published data, full circles = unpublished data, semi-full circles = published and unpublished data, light-grey area = Pannonian bioregion, white area of Slovakia = Carpathian [Alpine] bioregion).

opencc-by-4.0Jul 2007View details →
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Chilean observatories at home office, by Robert Barsa, Slovakia

<p>Third place in the 2021 IAU OAE Astrophotography Contest, category Wide star fields.</p> <p>This rich panoramic image shows a range of constellations, deep sky objects and planets. The brightest point of light with a pale reddish hue (left of center) is the planet Mars. In the bottom far left of the image, located just above the sloped roof of the building are two points of light appearing very close to each other, these are the planets Jupiter (brighter) and Saturn. To the far right of the image the two fuzzy cloud-like objects are the Large and Small Magellanic Clouds. These are satellite dwarf galaxies of the Milky Way located at a distance of approximately 160,000 and 200,000 light years, respectively. The Andromeda Galaxy, which is located at an approximate distance of 2.5 million light years, appears in this image as a small, angled smudge between Mars and the brightest glow on the horizon (closer to the horizon). The bright glow is not from the Sun or the Moon, but the city lights of San Pedro de Atacama.</p> <p>Prominent constellations include: Orion &ndash; identified by the three stars forming Orion&rsquo;s Belt; Taurus &ndash; a small triangle shaped collection of stars to the left of Orion and identified by the pale orange star (Aldebaran) at the vertex of the triangle; Canis Major &ndash; to the bottom right of Orion, identified by the bright star Sirius (the brightest star in the night sky) and three stars in the shape of a triangle just above the observatory dome in the foreground; Pegasus &ndash; identified by the trapezium shape diagonally below Mars. Other constellations include Andromeda, Perseus and Aries. Diverse cultures around the world have their own names and rich stories associated with these constellations and many others.</p> <p>To the top right of Orion&rsquo;s Belt is an angled line of stars (Orion&rsquo;s Sword) within which is a pinkish smudge (looks like a fuzzy star when observed with the unaided eye) that is the Orion Nebula &ndash; a stellar nursery located 1500 light years from Earth &ndash; where stars are formed. To the left of Taurus is a compact fuzzy smudge, and that is the Pleiades star cluster. The variation in the colour of stars is the result of temperature of the stars, for example, the red orange star to the bottom left of Orion&rsquo;s Belt is the red giant star Betelgeuse. Cooler stars appear redder, compared to the higher temperature white and bluish stars. The colours in the image are enhanced because of the higher sensitivity of the digital camera compared to the human eye.</p> <p>Credit:&nbsp;Robert Barsa/IAU OAE</p>

opencc-by-4.0Aug 2021View details →
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Fig. 2 in Lower Sarmatian Bryozoa from brackish sediment in the northern part of the Danube Basin (Dubová, Slovakia)

Fig. 2: Bryozoa: (1-2) Tubulipora cumulus (Sinzow 1892). Note marked concentric grown lines, apertures arranged in fascicles and porous frontal walls. (3) Hippadenella regularis (Reuss 1874). General view showing wide apertures with characteristic key-shaped suboral avicularium (visible on lower rows of zooecia). (4) Hippopleurifera cf. semicristata (REUSS 1848), fragment of colony with characteristically developed apertures and large pores on frontal wall. (5) Celleporina sp. general view showing small suboral avicularia, lateral areolar pores and ovicells with semicircular windows. (6) Schizoporella tetragona (REUSS 1848). Detail of few zooecia with visible characteristic aperture with wide sinus and large oral avicularia with prominent pivotal bar. All pictures were made in Paleontological Institute of Vienna University in SEM Jeol type JSM-6400 by Dr. K. Zágoršek. Scale bar 100 µm.

opencc-by-4.0Jul 2006View details →
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Wastewater monitoring of SARS-CoV-2 from wastewater in Bratislava, Slovakia and other Slovak cities

<p>The statistics for Bratislava and other selected Slovak cities - Ko&scaron;ice, Pre&scaron;ov, Žilina, Bansk&aacute; Bystrica, Trenč&iacute;n, Trnava, Pie&scaron;ťany, Nov&aacute;ky, Poprad (Petržalka is a district of Bratislava) shows the correlation between the positive PCR tests, deaths caused by COVID-19 and detected virus particles from wastewater (based on a wastewater model developed by the Slovak University of Technology, Faculty of Chemical and Food Technology) in a certain period of time in 2020-2021.</p> <p>The statistics were developed as a result of the Project VIR-SCAN &ndash; Wastewater Monitoring Data as an Early Warning Tool to alert COVID-19 in the Population, supported by the EOSCsecretariat.eu</p> <p>Project VIR-SCAN &ndash; Wastewater Monitoring Data as an Early Warning Tool to alert COVID-19 in the Population&ldquo; has received funding from the EOSC Secretariat project. EOSCsecretariat.eu has received funding from the European Union&rsquo;s Horizon Programme call H2020-INFRAEOSC-05-2018-2019, grant Agreement number 831644.</p>

opencc-by-4.0May 2021View details →
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Figure 1 in Where the rare species hide: a new record of Parachironomus monochromus (van der Wulp, 1874) for Slovakia from artificial urban waterbodies

Figure 1. View of the urban pond (left) and city fountain (right) in Banská Bystrica, where Parachironomus monochromus exuviae were collected. Photo: S Bartóková and L Hamerlík.

opencc-by-4.0Sep 2022View details →
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Figure 2 in Where the rare species hide: a new record of Parachironomus monochromus (van der Wulp, 1874) for Slovakia from artificial urban waterbodies

Figure 2. Number of Parachironomus monochromus exuviae recorded in the urban pond during the study period. Dates on x-axis refer to sampling dates. Dates after 17. 9. 2021 are not shown due to the absence of the species in the samples.

opencc-by-4.0Sep 2022View details →
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Figure 1 in Lasiodiamesa (Podonominae, Chironomidae), first record of the genus from Slovakia

Figure 1. Location of the pond (indicated by arrow) in the Dolina Bielych plies valley where the larvae of Lasiodiamesa was recorded.

opencc-by-4.0Dec 2019View details →
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Figure 2 in Lasiodiamesa (Podonominae, Chironomidae), first record of the genus from Slovakia

Figure 2. Photograph of the head (a), mandible (b), mentum (c) and anal end with procerci (d) of the recorded Lasiodiamesa larva.

opencc-by-4.0Dec 2019View details →
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Figure 2. A in First records of Lasiodiamesa gracilis (Kieffer, 1924), Parochlus kiefferi (Garrett, 1925) and several other Chironomidae from the Czech Republic and Slovakia

Figure 2. A spring close to Nová Klínovka chalet (in the background) in the eastern part of a meadow called Klínové Boudy, The Krkonoše Mountains National Park. Parochlus kiefferi sampling site (site nr. H11 in the List). Photographed during sampling 20 February 2015.

opencc-by-4.0Dec 2015View details →
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Figure 1 in First record of Phaenopsectra flavipes (Meigen, 1818) in Slovakia with notes on its ecology

Figure 1. Pictures of the sites of the first record of Phaenopsectra flavipes: a pond near Moškovec with the occurrence of the pupal exuvia (a) and the ponds near Holiša (b) and Stráňany (c) where larvae of Phaenopsectra sp. were recorded. Photo M. Svitok.

opencc-by-4.0Oct 2016View details →
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Figure 1 in First records of Lasiodiamesa gracilis (Kieffer, 1924), Parochlus kiefferi (Garrett, 1925) and several other Chironomidae from the Czech Republic and Slovakia

Figure 1. Radostínské rašeliniště National Nature Reserve, Lasiodiamesa gracilis sampling site (site nr. S15 in the List). Photograph taken during sampling 22 March 2015.

opencc-by-4.0Dec 2015View details →
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Spis Castle, Slovakia

The ruins of Spiš Castle in eastern Slovakia form one of the largest castle sites in Central Europe. The castle is situated above the town of Spišské Podhradie and the village of Žehra, in the region known as Spiš. It was included in the UNESCO list of World Heritage Sites in 1993. This is one of the biggest European castles by area (41 426 m²). Several movies like Dragonheart or The Last Legion were filmed there. I created the model with Agisoft Photoscan trial using a drone video. Fixes of the geometry and texture map were done in ZBrush. Source: Objaverse 1.0 / Sketchfab

opencc-byDec 2017View details →
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Genus Aconitum in Slovakia: a phenetic approach. S23: Genus Aconitum subgen. Aconitum sect. Cammarum full matrix of morphological traits

<p>This is full dataset of all analyzed morphological traits for genus Aconitum subgen. Aconitum sect. Cammarum in Slovakia coded as 0/1.</p>

opencc-by-4.0Jul 2017View details →
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Genus Aconitum in Slovakia: a phenetic approach. S24: Genus Aconitum subgen. Aconitum sect. Cammarum matrix of selected morphological traits

<p>This is dataset of analyzed morphological traits, which were specially selected as taxonomically valuable for genus Aconitum subgen Aconitum sect. Cammarum in Slovakia and coded as 0/1.</p>

opencc-by-4.0Jul 2017View details →
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Genus Aconitum in Slovakia: a phenetic approach. S21: Genus Aconitum subgen. Aconitum sect. Aconitum full matrix of morphological traits

<p>This is full dataset of all analyzed morphological traits for genus Aconitum subgenus Aconitum sect. Aconitum in Slovakia coded as 0/1.</p>

opencc-by-4.0Jul 2017View details →
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Genus Aconitum in Slovakia: a phenetic approach. S27: Genus Aconitum subgen. Lycoctonum full matrix of morphological traits

<p>This is full dataset of all analyzed morphological traits for genus Aconitum subgen. Lycoctonum in Slovakia coded as 0/1.</p>

opencc-by-4.0Jul 2017View details →
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Genus Aconitum in Slovakia: a phenetic approach. S30: Database of specimens from Slovakia cited in published sources

<p>This is database generated from published sources. It contains data about Aconitum specimens mentioned in other publications and preserved in herbaria outside of Slovakia.</p>

opencc-by-4.0Jul 2017View details →
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Genus Aconitum in Slovakia: a phenetic approach. S22: Genus Aconitum subgen. Aconitum sect. Aconitum matrix of selected morphological traits

<p>This is dataset of analyzed morphological traits, which were specially selected as taxonomically valuable for genus Aconitum subgen Aconitum sect. Aconitum in Slovakia and coded as 0/1.</p>

opencc-by-4.0Jul 2017View details →

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