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138 results for “Turkmenistan”
Fig. 1 in Terminal Maastrichtian ammonites from Turkmenistan, Central Asia
Fig. 1. Location of the study area in the western Kopet Dagh Mountains (Sumbar River region near the village of Kara−Kala, Turkmenistan). An arrow indicates the approximate position of the ammonite−bearing Cretaceous–Paleogene Sumbar River section.
Fig. 3. Scaphitid ammonoid Hoploscaphites constrictus johnjagti Machalski, 2005a in Terminal Maastrichtian ammonites from Turkmenistan, Central Asia
Fig. 3. Scaphitid ammonoid Hoploscaphites constrictus johnjagti Machalski, 2005a, Sumbar River section, Turkmenistan, upper Maastrichtian, Upper Cretaceous, all collected by ASA, with indications in brackets of centimetres below K/Pg boundary (where known). A. NHMM 2011 037, external mould of phragmocone. B. NHMM 2011 039, partial body chamber of macroconch. C. NHMM 2011 036, nucleus. D. NHMM 2011 034, partial phragmocone of?macroconch (15 cm). E. NHMM 2011 038, nucleus (5 cm). F. NHMM 2011 033, near−complete?microconch (18 cm). G. NHMM 2011 035, microconch (5 cm). H. NHMM 2011 040, macroconch.
Linked collectors and determiners for: A new spider species, Heser stoevi sp. nov., from Turkmenistan (Araneae: Gnaphosidae).
Natural history specimen data linked to collectors and determiners held within, "A new spider species, Heser stoevi sp. nov., from Turkmenistan (Araneae: Gnaphosidae)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/be62e2f5-e871-407c-8e58-3e2200bf3d2b">https://bionomia.net/dataset/be62e2f5-e871-407c-8e58-3e2200bf3d2b</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/be62e2f5-e871-407c-8e58-3e2200bf3d2b">https://gbif.org/dataset/be62e2f5-e871-407c-8e58-3e2200bf3d2b</a>. Formatted as a Frictionless Data package.
Fig. 4. Sternum 6 in A new species of Anthidium bee with an armed sternum from Turkmenistan (Apoidea, Anthidiini)
Fig. 4. Sternum 6 of the males of four West Palaearctic Anthidium species with long-spined sterna: A. Anthidium turkmenistanicum nov.sp., B. A. spiniventre, C. A. gussakovskiji, and D. A. caspicum.
Fig. 3 in A new species of Anthidium bee with an armed sternum from Turkmenistan (Apoidea, Anthidiini)
Fig. 3. Anthidium turkmenistanicum nov.sp. Male genitalia in dorsal and lateral view (A, B) and S8 (C).
Figs 1–4. 1 in Contribution to the knowledge of beetles (Coleoptera) inhabiting rodent burrows in Turkmenistan
Figs 1–4. 1 – Aleochara jacobsoni, 2 – Orodaliscus transaralicus, 3 – Thinorycter
Turkmenistan methane point source detections and retrievals from Landsat 5 (1986-2011)
<p>Global atmospheric methane concentrations rose by 10-15 ppb/yr in the 1980s before abruptly slowing to 2-8 ppb/yr in the early 1990s. This period in the 1990s is known as the "methane slowdown" and has been attributed to the collapse of the former Soviet Union (USSR) in December 1991, which may have decreased the methane emissions from oil and gas operations. Here we develop a methane plume detection system based on probabilistic deep learning and human-labelled training data. We use this method to detect methane plumes from Landsat 5 satellite observations over Turkmenistan from 1986 to 2011. We focus on Turkmenistan because economic data suggest it could account for half of the decline in oil and gas emissions from the former USSR. We find an increase in both the frequency of methane plume detections and the magnitude of methane emissions following the collapse of the USSR. We estimate a national loss rate from oil and gas infrastructure in Turkmenistan of more than 10% at times, which suggests the socioeconomic turmoil led to a lack of oversight and widespread infrastructure failure in the oil and gas sector. Our finding of increased oil and gas methane emissions from Turkmenistan following the USSR's collapse casts doubt on the long-standing hypothesis regarding the methane slowdown, begging the question: "what drove the 1992 methane slowdown?"</p>
Fig. 5. Uroctea grossa Roewer, 1960 in The spider family Oecobiidae (Arachnida: Araneae) in Iran, Afghanistan and Turkmenistan
Fig. 5. Uroctea grossa Roewer, 1960, holotype, ♀ (GNM-A497); dorsal habitus. Scale bar = 4 mm.
Figs 1–4 in A new species of the genus Raphiglossa S.S. Saunders, 1850 (Hymenoptera: Vespidae: Eumeninae sensu lato) from Turkmenistan
Figs 1–4. Raphiglossa rasnitsyni Fateryga, sp. n., ♀, holotype: 1 – habitus, dorsal view;
Figs 1–5 in A new species of the genus Eumerus Meigen, 1822 (Diptera: Syrphidae) from Turkmenistan
Figs 1–5. Eumerus badkhyziensis Mutin, sp. n., holotype ♂. 1 – habitus, dorsal view; 2 –
Turkmenistan
[Turkmenistan](https://en.wikipedia.org/wiki/Turkmenistan) is a landlocked country in Central Asia, bordered by Kazakhstan to the northwest, Uzbekistan to the north, east and northeast, Afghanistan to the southeast, Iran to the south and southwest and the Caspian Sea to the west. Ashgabat is the capital and largest city of the country. The population of the country is about 6 million, the lowest of the Central Asian republics. Turkmenistan is one of the most sparsely populated nations in Asia. Citizens of Turkmenistan are known as Turkmenistanis (where citizenship and not ethnicity is emphasized), Turkmenians or Turkmens. Source: Objaverse 1.0 / Sketchfab
Fig. 2 in A new species of Anthidium bee with an armed sternum from Turkmenistan (Apoidea, Anthidiini)
Fig. 2. Anthidium turkmenistanicum nov.sp., male, holotype. A. Face; B. Apical terga.
Turkmenistan methane point source detections and retrievals from Landsat 5 (1986-2011)
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PLATE VIII. Outgroup taxa and Phrynocephalus mimicry adaptations. (A) Laudakia caucasia; (B) habitat of A, Big Balkan Mountains, Turkmenistan; (C) Trapelus sanguinolentus; (D) habitat of C, Repetek, Karakum Desert, Turkmenistan; (E) P. turcomanus illustrating false large head with eyes on body-back; and (F) P. mystaceus illustrating false enlarged mouth with red capillary-beds. in A molecular phylogenetic hypothesis for the Asian agamid lizard genus Phrynocephalus reveals discrete biogeographic clades implicated by plate tectonics
PLATE VIII. Outgroup taxa and Phrynocephalus mimicry adaptations. (A) Laudakia caucasia; (B) habitat of A, Big Balkan Mountains, Turkmenistan; (C) Trapelus sanguinolentus; (D) habitat of C, Repetek, Karakum Desert, Turkmenistan; (E) P. turcomanus illustrating false large head with eyes on body-back; and (F) P. mystaceus illustrating false enlarged mouth with red capillary-beds.
PLATE III. Species of southern Tibet and soft substrate habitats in the Caspian Basin. (A) P. theobaldi; (B) habitat of A, near Yangbajain, north of Lhasa, southern Tibet; (C) P. sogdianus; (D) P. interscapularis; (E) P. mystaceus; and (F) habitat of D and E, Karakum Desert. north of Ashkhabad, Turkmenistan. in A molecular phylogenetic hypothesis for the Asian agamid lizard genus Phrynocephalus reveals discrete biogeographic clades implicated by plate tectonics
PLATE III. Species of southern Tibet and soft substrate habitats in the Caspian Basin. (A) P. theobaldi; (B) habitat of A, near Yangbajain, north of Lhasa, southern Tibet; (C) P. sogdianus; (D) P. interscapularis; (E) P. mystaceus; and (F) habitat of D and E, Karakum Desert. north of Ashkhabad, Turkmenistan.
FIGURES 36 in Pygmodispus (Pygmodispus) paraequestris spec. nov. (Acari: Heterostigmata: Scutacaridae) from Turkmenistan
FIGURES 36. Pygmodispus paraequestris Khaustov et Chydyrov, spec. nov. (Holotype, adult female). 36 – legs IIV, respectively.
FIGURES 12 in Pygmodispus (Pygmodispus) paraequestris spec. nov. (Acari: Heterostigmata: Scutacaridae) from Turkmenistan
FIGURES 12. Pygmodispus paraequestris Khaustov et Chydyrov, spec. nov. (Holotype, adult female). 1 – dorsal view of body, 2 – ventral view of body.
FIGURES 15 in A new species of Nysson Latreille (Hymenoptera: Crabronidae: Bembicinae) from Turkmenistan
FIGURES 15. Nysson kazenasi sp. nov. 1, female hypoepimeral area of mesopleuron; 2, male antenna; 3, female clypeus; 4, female pygidial plate; 5, male tergum VII.
FIGURES 37–48. Head, frontal view. 37 Ceriana brunettii male, Tajikistan 38 Ceriana caesarea male, Turkmenistan 39 Ceriana conopsoides male, Greece 40 Ceriana conopsoides female, Russia 41 Ceriana glaebosa male paratype 42 Ceriana media male paratype, Afghanistan 43 Ceriana naja male, Tajikistan 44 Ceriana sartorum male, Turkmenistan 45 Ceriana sartorum female, Tajikistan 46 Ceriana skevingtoni male paratype, Azerbaijan Talish 47 Ceriana vespiformis male, Greece 48 in Revision of the West-Palaearctic species of the tribe Cerioidini (Diptera, Syrphidae)
FIGURES 37–48. Head, frontal view. 37 Ceriana brunettii male, Tajikistan 38 Ceriana caesarea male, Turkmenistan 39 Ceriana conopsoides male, Greece 40 Ceriana conopsoides female, Russia 41 Ceriana glaebosa male paratype 42 Ceriana media male paratype, Afghanistan 43 Ceriana naja male, Tajikistan 44 Ceriana sartorum male, Turkmenistan 45 Ceriana sartorum female, Tajikistan 46 Ceriana skevingtoni male paratype, Azerbaijan Talish 47 Ceriana vespiformis male, Greece 48 Ceriana vespiformis female, Rhodos. Scale line = 2 mm.
Subspecies and Distribution. V. p. peregusna Giildenstadt, 1770 — Russia. V. p. alpherakii Birula, 1910 — Afghanistan, Iran, Pakistan, Tajikistan, Turkmenistan, and Uzbekistan. V. p. euxina Pocock, 1936 — Bulgaria, Greece, Macedonia, Montenegro, Romania, Serbia, Turkey, and Ukraine. V. p. negans G. S. Miller, 1910 — NC & W China and S Mongolia. V.p. pallidior Stroganov, 1948 — Kazakhstan. V. p. syriaca Pocock, 1936 — Armenia, Azerbaidjan, Egypt, Georgia, Iraq, Israel, Lebanon, and Syria. in Mustelidae
Subspecies and Distribution. V. p. peregusna Giildenstadt, 1770 — Russia. V. p. alpherakii Birula, 1910 — Afghanistan, Iran, Pakistan, Tajikistan, Turkmenistan, and Uzbekistan. V. p. euxina Pocock, 1936 — Bulgaria, Greece, Macedonia, Montenegro, Romania, Serbia, Turkey, and Ukraine. V. p. negans G. S. Miller, 1910 — NC & W China and S Mongolia. V.p. pallidior Stroganov, 1948 — Kazakhstan. V. p. syriaca Pocock, 1936 — Armenia, Azerbaidjan, Egypt, Georgia, Iraq, Israel, Lebanon, and Syria.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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