Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
329
datasets available to search
ShareScore release 0.9.0
Dataset results
329 results for “excavation”
Рис. 3. Раскоп 2: А – северная стенка, квадраты С–У; В – профиль бровки по линии меЖду квадратами 12–13, квадратами П–Р. Fig. 3. Excavation 3: A – the northern wall, squares С–У; В – the profile of the edge along the line between the squares 12–13, squares П–Р. in Mollusks from the shell-midden of the Telyakovskogo 2 site in southern Primorye (Yankovskaya culture), their paleoecology and role in paleoeconomy
Рис. 3. Раскоп 2: А – северная стенка, квадраты С–У; В – профиль бровки по линии меЖду квадратами 12–13, квадратами П–Р. Fig. 3. Excavation 3: A – the northern wall, squares С–У; В – the profile of the edge along the line between the squares 12–13, squares П–Р.
Рис. 2. Раскоп 1: А – сектор 5, профиль бровки по линии меЖду квадратами 20–21; В – северная стенка, квадраты 21–22. Fig. 2. Excavation 1: A – sector 5, the profile of the edge along the line between the squares 20–21; B – the northern wall, squares 21–22. in Mollusks from the shell-midden of the Telyakovskogo 2 site in southern Primorye (Yankovskaya culture), their paleoecology and role in paleoeconomy
Рис. 2. Раскоп 1: А – сектор 5, профиль бровки по линии меЖду квадратами 20–21; В – северная стенка, квадраты 21–22. Fig. 2. Excavation 1: A – sector 5, the profile of the edge along the line between the squares 20–21; B – the northern wall, squares 21–22.
Archaeological Survey of India, Annual Report, Part 2, plate XLI showing seals found during excavations.
<p>Theodor Bloch, "Excavations at Basarh," <em>Archaeological Survey of India, Annual Report 1903-04, </em>Part 2 (Calcutta: Calcutta: Superintendent of Government Printing, 1906): plate XLI.</p>
Archaeological Survey of India, Annual Report, Part 2, plate XL showing seals found during excavations.
<p>Theodor Bloch, "Excavations at Basarh," <em>Archaeological Survey of India, Annual Report 1903-04, </em>Part 2 (Calcutta: Calcutta: Superintendent of Government Printing, 1906): plate XL.</p>
Data set for the fauna material excavated at the Liang Abu site (East Kalimantan, Indonesia)
<p>Data set for the fauna material excavated at the Liang Abu site (East Kalimanta, Indonesia): count by subphylum, class, order, family, genus, and species for the squares 11Ec, 11Ed, and12Eb.</p>
Data set for the lithic material excavated at the Liang Abu site (East Kalimantan, Indonesia)
<p>Three tables describing the lithic material excavated at the Liang Abu site (East Kalimantan, Indonesia):</p> <ul> <li>abu-lithic-class.csv: count by class by stratigraphic layer</li> <li>abu-lithic-spatial-distribution.csv: count by square and stratigraphic layer</li> <li>abu-lithic-flakes.csv: morphometric values of the flakes</li> </ul>
Figure 1. Excavating a in Nidicolous mites associated with Bombus niveatus Kriechbaumer (Hymenoptera, Apidae) in Iran
Figure 1. Excavating a nest of Bombus niveatus around Meshkinshahr, Ardabil Province, Iran – A. Enclosing the colony area, we saw the location of the nest when we saw a bee enter the hole; B. The entrance hole of the colony is shown in the center of the arranged stones; C. Begin digging carefully with a small shovel to access the bee colony; D. Digging deeper into the soil and approaching to find bumblebee colony; E. Exposure to the highest layer of the colony and the appearance of the first colony larvae; F. The complete emergence of bumblebee colony, bees had used waste materials left by bird nest for making their nest colony; G. A photo from a distance to show the depth at which the colony was located; H. Complete transfer of bee colony to bucket.
Рис. 9. Фрагменты раковин жемчужниц Dahurinaia dahurica иЗ раскопа 3 поселениЯ Константиновка-1. МасштабнаЯ линейка 5 см. Fig. 9. Fragments of pearl mussel Dahurinaia dahurica shells from excavation 3 of the Konstantinovka-1 site. Scale bar 5 cm. in Mollusks from the archaeological site Konstantinovka-1 in Primorye (Russian Far East)
Рис. 9. Фрагменты раковин жемчужниц Dahurinaia dahurica иЗ раскопа 3 поселениЯ Константиновка-1. МасштабнаЯ линейка 5 см. Fig. 9. Fragments of pearl mussel Dahurinaia dahurica shells from excavation 3 of the Konstantinovka-1 site. Scale bar 5 cm.
Рис. 6. Морские двустворчатые моллюски иЗ раскопа 5 поселениЯ Константиновка-1: A–H – Mizuhopecten yessoensis (Jay, 1857) (слои 1, 2 – бровка). Длина фрагментов от 51 до 121 мм. Fig. 6. Marine bivalves from excavation 5 of the Konstantinovka-1 settlement excavations: A–H – Mizuhopecten yessoensis (Jay, 1857) (levels 1, 2 – cross section). Sizes of shell fragments are from 51 to 121 mm. in Mollusks from the archaeological site Konstantinovka-1 in Primorye (Russian Far East)
Рис. 6. Морские двустворчатые моллюски иЗ раскопа 5 поселениЯ Константиновка-1: A–H – Mizuhopecten yessoensis (Jay, 1857) (слои 1, 2 – бровка). Длина фрагментов от 51 до 121 мм. Fig. 6. Marine bivalves from excavation 5 of the Konstantinovka-1 settlement excavations: A–H – Mizuhopecten yessoensis (Jay, 1857) (levels 1, 2 – cross section). Sizes of shell fragments are from 51 to 121 mm.
Рис. 8. Фрагменты раковин пресноводных моллюсков иЗ раскопов поселениЯ Константиновка-1: А, B – створка жемчужницы иЗ раскопа 1, вид снаружи и иЗнутри; C–E – створки жемчужниц Dahurinaia dahurica иЗ раскопа 2; F, G – фрагмент раковины гастроподы иЗ раскопа 2, вид с раЗных ракурсов. Масштабные линейки 2 см. Fig. 8. Fragments of freshwater mollusk shells from the Konstantinovka-1 site excavations: A, B – pearl mussel Dahurinaia dahurica from excavation 1, the inner and outer views; C–E – pearl mussel Dahurinaia dahurica from excavation 2; F, G – fragment of a gastropod shell from excavation 2, view from different angles. Scale bars 2 cm. in Mollusks from the archaeological site Konstantinovka-1 in Primorye (Russian Far East)
Рис. 8. Фрагменты раковин пресноводных моллюсков иЗ раскопов поселениЯ Константиновка-1: А, B – створка жемчужницы иЗ раскопа 1, вид снаружи и иЗнутри; C–E – створки жемчужниц Dahurinaia dahurica иЗ раскопа 2; F, G – фрагмент раковины гастроподы иЗ раскопа 2, вид с раЗных ракурсов. Масштабные линейки 2 см. Fig. 8. Fragments of freshwater mollusk shells from the Konstantinovka-1 site excavations: A, B – pearl mussel Dahurinaia dahurica from excavation 1, the inner and outer views; C–E – pearl mussel Dahurinaia dahurica from excavation 2; F, G – fragment of a gastropod shell from excavation 2, view from different angles. Scale bars 2 cm.
Рис. 14. Характер повреЖдений раковин рапан (Rapana venosa) иЗ раскопа 2. Fig. 14. Fracture patterns of the veined rapa whelk shells (Rapana venosa) from excavation 2. in Mollusks from the shell-midden of the Telyakovskogo 2 site in southern Primorye (Yankovskaya culture), their paleoecology and role in paleoeconomy
Рис. 14. Характер повреЖдений раковин рапан (Rapana venosa) иЗ раскопа 2. Fig. 14. Fracture patterns of the veined rapa whelk shells (Rapana venosa) from excavation 2.
Рис. 6. Характер фрагментации створок мидии Грея (Crenomytilus grayanus) иЗ раскопа 1. Fig. 6. Fragmentation patterns of valves of the giant mussel ((Crenomytilus grayanus) from excavation 1. in Mollusks from the shell-midden of the Telyakovskogo 2 site in southern Primorye (Yankovskaya culture), their paleoecology and role in paleoeconomy
Рис. 6. Характер фрагментации створок мидии Грея (Crenomytilus grayanus) иЗ раскопа 1. Fig. 6. Fragmentation patterns of valves of the giant mussel ((Crenomytilus grayanus) from excavation 1.
Рис. 7. Целые створки устрицы (Crassostrea gigas) иЗ раскопа 2. Fig. 7. Intact valves of the giant oyster (Crassostrea gigas) from excavation 2. in Mollusks from the shell-midden of the Telyakovskogo 2 site in southern Primorye (Yankovskaya culture), their paleoecology and role in paleoeconomy
Рис. 7. Целые створки устрицы (Crassostrea gigas) иЗ раскопа 2. Fig. 7. Intact valves of the giant oyster (Crassostrea gigas) from excavation 2.
Рис. 5. Характер повреЖдений створок анадары Броутона (Anadara broughtonii) иЗ раскопа 1. Fig. 5. Fragmentation patterns of valves of the Broughton's blood cockle (Anadara broughtonii) from excavation 1. in Mollusks from the shell-midden of the Telyakovskogo 2 site in southern Primorye (Yankovskaya culture), their paleoecology and role in paleoeconomy
Рис. 5. Характер повреЖдений створок анадары Броутона (Anadara broughtonii) иЗ раскопа 1. Fig. 5. Fragmentation patterns of valves of the Broughton's blood cockle (Anadara broughtonii) from excavation 1.
Рис. 7. Морские двустворчатые моллюски иЗ раскопа 1 поселениЯ Константиновка-1: A–M – Glycymeris (Glycymeris) yessoensis (Sowerby III, 1889) (A, B – данные не расшифрованы, длина раковины 44.6 мм; C, D – данные не расшифрованы, длина раковины 38.7 мм; E, F – раскоп 5, пл. 6, кв. Б-6, длина раковины 30.7 мм; G, H –?подъемный материал, длина раковины 33.8 мм; I, J – раскоп 3, кв. З-6, длина раковины 40.4 мм; K–M – раскоп 2, пл. 7, кв. Д-6, длина раковины 23.5 мм; N, O – Mya (Arenomya) japonica Jay, 1857 – подъемный материал, длина раковины 61.7 мм. Fig. 7. Marine bivalves from excavation 1 of the Konstantinovka-1 site: A–M – Glycymeris (Glycymeris) yessoensis (Sowerby III, 1889) (A, B – data not available, shell length 44.6 mm; C, D – data not available, shell length 38.7 mm; E, F – excavation 5, layer 6, square Б-6, shell lenth 30.7 mm; G, H –?surface scatter, shell length 33.8 mm; I, J – excavation 3, square З-6, shell length 40.4 mm; K–M – excavation 2, layer 7, square Д-6, shell length 23.5 mm; N, O – Mya (Arenomya) japonica Jay, 1857 – surface scatter, shell length 61.7 mm. in Mollusks from the archaeological site Konstantinovka-1 in Primorye (Russian Far East)
Рис. 7. Морские двустворчатые моллюски иЗ раскопа 1 поселениЯ Константиновка-1: A–M – Glycymeris (Glycymeris) yessoensis (Sowerby III, 1889) (A, B – данные не расшифрованы, длина раковины 44.6 мм; C, D – данные не расшифрованы, длина раковины 38.7 мм; E, F – раскоп 5, пл. 6, кв. Б-6, длина раковины 30.7 мм; G, H –?подъемный материал, длина раковины 33.8 мм; I, J – раскоп 3, кв. З-6, длина раковины 40.4 мм; K–M – раскоп 2, пл. 7, кв. Д-6, длина раковины 23.5 мм; N, O – Mya (Arenomya) japonica Jay, 1857 – подъемный материал, длина раковины 61.7 мм. Fig. 7. Marine bivalves from excavation 1 of the Konstantinovka-1 site: A–M – Glycymeris (Glycymeris) yessoensis (Sowerby III, 1889) (A, B – data not available, shell length 44.6 mm; C, D – data not available, shell length 38.7 mm; E, F – excavation 5, layer 6, square Б-6, shell lenth 30.7 mm; G, H –?surface scatter, shell length 33.8 mm; I, J – excavation 3, square З-6, shell length 40.4 mm; K–M – excavation 2, layer 7, square Д-6, shell length 23.5 mm; N, O – Mya (Arenomya) japonica Jay, 1857 – surface scatter, shell length 61.7 mm.
Рис. 5. Морские двустворчатые моллюски иЗ раскопов памЯтника Константиновка-1: A–D, G–K – Anadara talmiensis Kalishevich, 1976 (A, B – раскоп 3, постройка № 40, пласт 6, квадрат Ж.3-10, длина раковины 49.3 мм; C, D – раскоп 3, постройка № 40, квадрат Ж.3-10, длина фрагмента 40.8 мм; G, H – раскоп 3, постройка № 40, квадрат Ж.3-10, длина фрагмента 41.6 мм; I–K – раскоп 1, пласт 1, квадрат Б2, длина фрагмента 35.8 мм; E, F – Crenomytilus grayanus (Dunker, 1853), подъемный материал, длина фрагмента 100.7 мм. Fig. 5. Marine bivalves from the Konstantinovka-1 site excavations: A–D, G–K – Anadara talmiensis Kalishevich, 1976 (A, B – excavation 3, construction N 40, layer 6, square Ж.3-10, shell length 49.3 mm; C, D – excavation 3, construction N 40, square Ж.3-10, fragment length 40.8 mm; G, H – excavation 3, construction N 40, square Ж.3-10, fragment length 41.6 mm; I–K – excavation 1, formation 1, square B2, fragment length 35.8 mm); E, F – Crenomytilus grayanus (Dunker, 1853), lifting material, fragment length 100.7 mm. in Mollusks from the archaeological site Konstantinovka-1 in Primorye (Russian Far East)
Рис. 5. Морские двустворчатые моллюски иЗ раскопов памЯтника Константиновка-1: A–D, G–K – Anadara talmiensis Kalishevich, 1976 (A, B – раскоп 3, постройка № 40, пласт 6, квадрат Ж.3-10, длина раковины 49.3 мм; C, D – раскоп 3, постройка № 40, квадрат Ж.3-10, длина фрагмента 40.8 мм; G, H – раскоп 3, постройка № 40, квадрат Ж.3-10, длина фрагмента 41.6 мм; I–K – раскоп 1, пласт 1, квадрат Б2, длина фрагмента 35.8 мм; E, F – Crenomytilus grayanus (Dunker, 1853), подъемный материал, длина фрагмента 100.7 мм. Fig. 5. Marine bivalves from the Konstantinovka-1 site excavations: A–D, G–K – Anadara talmiensis Kalishevich, 1976 (A, B – excavation 3, construction N 40, layer 6, square Ж.3-10, shell length 49.3 mm; C, D – excavation 3, construction N 40, square Ж.3-10, fragment length 40.8 mm; G, H – excavation 3, construction N 40, square Ж.3-10, fragment length 41.6 mm; I–K – excavation 1, formation 1, square B2, fragment length 35.8 mm); E, F – Crenomytilus grayanus (Dunker, 1853), lifting material, fragment length 100.7 mm.
Excavation data from Eripe 1 rock shelter, Papua New Guinea
<p>Data from archaeological excavations made in 2024 at the Eripe 1 rockshelter, Gulf Province, Papua New Guinea, by the <a href="https://papuanpast.hypotheses.org/2908" target="_blank" rel="noopener"><em>Papuan Past Project</em></a> team. This dataset can be visualised using the online <a href="https://analytics.huma-num.fr/archeoviz/eripe1" target="_blank" rel="noopener"><em>archeoViz</em></a> application.</p> <p>This dataset includes piece-plotted objects and some objects from the sieved materials (note that pebbles were piece-plotted in spit 1 and then retrieved from the sieve). The archaeological assemblage includes mainly lithic and faunal remains, some beads, and charcoal samples.</p> <ul> <li><strong>id</strong>: unique identifier in the dataset</li> <li><strong>id_plot</strong>: unique identifier attributed during excavation</li> <li><strong>layer</strong>: number of the 10 cm spits, defined from objects' altitude</li> <li><strong>layer_recorded</strong>: spit recorded during the excavation</li> <li><strong>object_type</strong>: type of archaeological remain</li> <li><strong>object_subtype</strong>: subtype of archaeological remain</li> <li><strong>object_fauna.anatomy</strong>: when available about faunal remains, anatomical parts</li> <li><strong>object_lithic.material</strong>: lithic raw material</li> <li><strong>object_local.interpretation</strong>: description of objects by local Pawaian helpers during the excavation</li> </ul>
Fig. 14 in The history of palaeontological research and excavations at Monte San Giorgio
Fig. 14 Bernhard Peyer (University of Zurich) standing to the left of his guest Ferdinand Broili (University of Munich), seen sitting on beds of the Lower Meride Limestone in Val Serrata. Foto 1929 © archive PIMUZ
Fig. 13 in The history of palaeontological research and excavations at Monte San Giorgio
Fig. 13 The studied section in the Lower Meride Limestone at the locality Cassina. Fritz Buchser (left), the technical assistant from Meride, discovered these fossiliferous beds in 1931. Foto M. P. Linck, 1933 © archive PIMUZ
Fig. 11 in The history of palaeontological research and excavations at Monte San Giorgio
Fig. 11 Start of Peyer's largest excavation in the laminated dolomitic beds with thin bituminous interlayers (today part of the upper Besano Formation), above the abandoned mine at Val Porina. Note the numbering of the bituminous layers, called Tetto nuovo min 1 (base) to Tetto nuovo min 17 (top). Foto M. P. Linck, 1929 © archive PIMUZ
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
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.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.