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173 results for “CAMELS”
FIG. 5 in Recent camel finds from Hungary
FIG. 5. — Dorsal, plantar, lateral (left to right) and proximal (top) aspects of a posterior lateral phalanx I of a probably female Bactrian camel from Keszthely (Site 9, Appendix A; Photo Andrea Ko˝ rÖsi). Scale bar, 5 cm.
FIG. 1 in The camel remains from site HD-6 (Ra's al-Hadd, Sultanate of Oman): an opportunity for a critical review of dromedary findings in eastern Arabia
FIG. 1. — The Late Stone Age, Bronze and Iron Age sites with camel remains in eastern Arabia mentioned in the text.
FIG. 2 in Camels, donkeys and caravan trade: an emerging context from Baraqish- , ancient Yathill (Wadi- - al-Jawf, Yemen)
FIG. 2. — Bara¯ qish, extramural excavations 2005-06: stratigraphic profile of sectors A-C and upper D (above) and sector E and Sounding F (below). The plant-detritus and 'manure' units in sectors A-D are emphasized; also shown are the Minaean city wall (T7) and the occurrences of Stratum K (K).
FIG. 10 in The camel remains from site HD-6 (Ra's al-Hadd, Sultanate of Oman): an opportunity for a critical review of dromedary findings in eastern Arabia
FIG. 10. — Sha'ib Musamma open-air site, Central Arabia. Rock engraving of group hunting of one-humped camel (Camelus dromedarius) (Spassov & Stoytchev 2004).
FIG. 1 in Recent camel finds from Hungary
FIG. 1. — The geographical distribution of camel finds from Hun- gary in relation to ancient imperial borders. A, Roman Period; B, Ottoman Period. Site codes in the map are listed by period in Appendices A-B (Drawing by László Bartosiewicz).
FIG. 7 in The camel remains from site HD-6 (Ra's al-Hadd, Sultanate of Oman): an opportunity for a critical review of dromedary findings in eastern Arabia
FIG. 7. — LSI-values calculated on the astragalus of dromedaries from Arabian Peninsula (empty triangles referring to hybrids).
FIG. 2 in Caravans, camel wrestling and cowrie shells: towards a social zooarchaeology of camel hybridization in Anatolia and adjacent regions
FIG. 2. — Location of place names mentioned in the text (circles, ancient place names, numbers refer to sites according to Table 2; squares, modern place names).
FIG. 4. — A in The camel remains from site HD-6 (Ra's al-Hadd, Sultanate of Oman): an opportunity for a critical review of dromedary findings in eastern Arabia
FIG. 4. — A plan of HD-6. The map displays the main occupation levels labeled as Period I (3100–2700 BC) and dromedary remains (Plan: Valentina Azzarà).
FIG. 3 in The camel remains from site HD-6 (Ra's al-Hadd, Sultanate of Oman): an opportunity for a critical review of dromedary findings in eastern Arabia
FIG. 3. — Third lower molar of Camelus dromedarius founded in an external sandy layer to a stone structure from the saline component. It presents large areas of combustion: A, lingual side; B, labial side; C, occlusal side (Photo: Elena Maini).
FIG. 3 in Recent camel finds from Hungary
FIG. 3. — Lateral aspects of scapulae from Features 16 and 17-21 and cranial aspect of the 8th thoracic vertebra from Feature 17–21 at Dunavecse–Ugordáció, Site I (Site 6, Appendix A; Photo László Lichtenstein). Scale bar, 5 cm.
FIG. 5 in Camels, donkeys and caravan trade: an emerging context from Baraqish- , ancient Yathill (Wadi- - al-Jawf, Yemen)
FIG. 5. — Bara¯ qish, extramural excavations 2005-06: spatial clustering in the main Later Sabaean cultural level, lower sector E. The cluster in quadrangle E11 is 'Locus 151'.
FIG. 6 in Camels, donkeys and caravan trade: an emerging context from Baraqish- , ancient Yathill (Wadi- - al-Jawf, Yemen)
FIG. 6. — Bara¯ qish, extramural excavations 2005-06: indication of the area on the upper talus subjected to frequent stationing of camels and donkeys during the Minaean occupation; Minaean wall with turrets T6-T7 in the background. Some of the earliest 'manure' layers can be seen in section (upper sector D, on the right).
Orientalist Rug Shop Camel
A model comel outside the Orientalist Rug and Persian Carpet Shop on Highgate Road at the junction with Lady Somerset Road, London. Date: 1980s (installation). Excellent article by Ian Visits: https://www.ianvisits.co.uk/articles/find-the-highgate-camel-40706/ 149 photos taken in August 2022 with a Sony a7R III and processed in Reality Capture. Source: Objaverse 1.0 / Sketchfab
camel 1.0
<p>Background: This paper describes an analysis that was conducted on newly collected repository with 92 versions of 38 proprietary, open-source and academic projects. A preliminary study performed before showed the need for a further in-depth analysis in order to identify project clusters. <br> Aims: The goal of this research is to perform clustering on software projects in order to identify groups of software projects with similar characteristic from the defect prediction point of view. One defect prediction model should work well for all projects that belong to such group. The existence of those groups was investigated with statistical tests and by comparing the mean value of prediction efficiency. <br> Method: Hierarchical and k-means clustering, as well as Kohonen’s neural network was used to find groups of similar projects. The obtained clusters were investigated with the discriminant analysis. For each of the identified group a statistical analysis has been conducted in order to distinguish whether this group really exists. Two defect prediction models were created for each of the identified groups. The first one was based on the projects that belong to a given group, and the second one - on all the projects. Then, both models were applied to all versions of projects from the investigated group. If the predictions from the model based on projects that belong to the identified group are significantly better than the all-projects model (the mean values were compared and statistical tests were used), we conclude that the group really exists. <br> Results: Six different clusters were identified and the existence of two of them was statistically proven: 1) cluster proprietary B – T=19, p=0.035, r=0.40; 2) cluster proprietary/open - t(17)=3.18, p=0.05, r=0.59. The obtained effect sizes (r) represent large effects according to Cohen’s benchmark, which is a substantial finding. <br> Conclusions: The two identified clusters were described and compared with results obtained by other researchers. The results of this work makes next step towards defining formal methods of reuse defect prediction models by identifying groups of projects within which the same defect prediction model may be used. Furthermore, a method of clustering was suggested and applied.</p>
Nigerian Camel
Nigerian Camel is part of Manchester University's Ethnographic Art Collection. This item was 3D scanned using a Creaform Go Scan 20. Source: Objaverse 1.0 / Sketchfab
Wooden Camel by Revopoint POP
Another scan I made with the POP scanner. I did some cleanup in Meshmixer where I removed excessive noise and in Blender where I added leather belts that weren't captured. I think the result is pretty good :> Source: Objaverse 1.0 / Sketchfab
Victoria Embankment Camel Bench
A cast iron and wood bench on the Victoria Embankment (facing the river), London. One of several, this one my be a reproduction (further research underway). Date (of originals): 1877 The benches include camels at the arm rests because they were designed to compliment Cleopatra's Needle when installed further along the Embankment. 439 photos taken in November 2020 with a Sony a6000 and processed in Reality Capture. Source: Objaverse 1.0 / Sketchfab
Fathi Camel Microbiome Project (FCMP) Fecal Metagenome-assembled Genomes (MAGs)
<p>The Fathi Camel Microbiome Project (FCMP) aims to characterize the diversity and phenotypic associations of the dromedary camel microbiome. The gut microbiome of N = 55 camels was deeply sequenced via dropped stool. The raw reads, after QC, were assembled and binned into metagenome-assembled genomes (MAGs). We include here a collection of 3165 medium-quality or higher prokaryotic MAGs by MiMAG-like criteria (completeness >= 50%, contamination <= 5%). </p>
FIG. 8 in Camels in Romania
FIG. 8. — Camel pelvic bone with signs of pathology. Scale bar: 10 cm.
FIG. 3 in Camels in Romania
FIG. 3. — Repartition by body segments of the camel bone fragments.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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OpenNeuro
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