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.
800
datasets available to search
ShareScore release 0.9.0
Dataset results
800 results for “mixtures”
FIGURES 8A–8C in DNA barcodes reveal that the widespread European tortricid moth Phalonidia manniana (Lepidoptera: Tortricidae) is a mixture of two species
FIGURES 8A–8C. Holotype of Phalonidia tolli Razowski, 1960. Fig. 8A: adult male. Fig. 8B: male genitalia (phallus removed). Fig. 8C: Phallus.
FIGURES 3A-3C. Female genitalia. Fig. 3A, 3B in DNA barcodes reveal that the widespread European tortricid moth Phalonidia manniana (Lepidoptera: Tortricidae) is a mixture of two species
FIGURES 3A-3C. Female genitalia. Fig. 3A, 3B: Phalonidia udana. Fig. 3C: P. manniana. 3A, genitalia slide NHMO 2065; 3B, genitalia slide NHMO 2066; 3C, genitalia slide LAA 2011.015.
FIGURE 10 in DNA barcodes reveal that the widespread European tortricid moth Phalonidia manniana (Lepidoptera: Tortricidae) is a mixture of two species
FIGURE 10. Maximum Likelihood phylogenetic tree of Cochylini, based on COI sequences. The tree is rooted to Tortrix viridana (Tortricidae, Tortricini). Node bootstrap support values are indicated by the nodes.
FIGURE 7 in DNA barcodes reveal that the widespread European tortricid moth Phalonidia manniana (Lepidoptera: Tortricidae) is a mixture of two species
FIGURE 7. Comparison of valvae of Phalonidia manniana and P. udana with C. notulana lectotype, C. udana lectotype and P. tolli holotype included.
FIGURES 2A-2G. Male genitalia. Fig. 2A–2D in DNA barcodes reveal that the widespread European tortricid moth Phalonidia manniana (Lepidoptera: Tortricidae) is a mixture of two species
FIGURES 2A-2G. Male genitalia. Fig. 2A–2D: Phalonidia udana. Fig. 2E–2H: P. m a n n i a n a. 2A–2B, genitalia slide NHMO 2063; 2C–2D, genitalia slide NHMO 2068; 2E–2F, genitalia slide NISK 20003; 2G–2H, genitalia slide NHMO 2064. 2B, 2D, 2F, 2H show the phallus of the preparations.
Data associated to the manuscript "Enhanced diffusion of tracer particles in nonreciprocal mixtures"
<p>Contains an example of LAMMPS input file and data used to generate the figures of the article:</p><p><strong>Enhanced diffusion of tracer particles in nonreciprocal mixtures</strong></p><p>Anthony Benois, Marie Jardat, Vincent Dahirel, Vincent Démery, Jaime Agudo-Canalejo, Ramin Golestanian, and Pierre Illien</p><p>https://arxiv.org/abs/2307.05408</p><p>Article published in Physical Review E (2023).</p>
Martini 2 and Martini 3 simulations of DOPE/DOPC mixtures
<p>Martini simulations of DOPE/DOPC lipid mixtures from 0% to 100% in increments of 10%. Performed with GROMACS.</p>
Data supplement for "Drops of volatile binary mixtures on brush-covered substrates"
<p>This dataset contains supplementary data for the following publication:</p> <p>Diekmann, J. & Thiele, U.<br>Drops of volatile binary mixtures on brush-covered substrates<br>EPJ-ST: Vol. 233, p. 1615-1624, 2024<br>doi: 10.1140/epjs/s11734-024-01169-4</p> <p> </p> <p>We provide the data and sources necessary to generate figure 2.</p>
Data Sets For: Heterogeneous Structure, Mechanisms of Counterion Exchange, and the Spacer Salt Effect in Complex Molten Salt Mixtures Including LaCl3
<p>Data Sets For: Heterogeneous Structure, Mechanisms of Counterion Exchange, and the Spacer Salt Effect in Complex Molten Salt Mixtures Including LaCl3</p>
AN EXTENSION OF N-MIXTURE OCCUPANCY MODELS FOR COUNT DATA
Open the record for dataset details and reuse information.
Data for "Boson-fermion pairing and condensation in two-dimensional Bose-Fermi mixtures"
<p>Data and Python scripts for reproducing figures of: Leonardo Pisani, Pietro Bovini, Fabrizio Pavan, and Pierbiagio Pieri, "Boson-fermion pairing and condensation in two-dimensional Bose-Fermi mixtures" (2024). <br><br>Arxiv: </p> <table> <tbody> <tr> <td><span><a href="https://arxiv.org/abs/2405.05029">arXiv:2405.05029</a></span></td> </tr> </tbody> </table> <p> </p>
Finite Mixture Models for Clustering Sales Series Data in the Presence of Promotions
<pre> 131 sales data where promotion causes volatility over the entire time series</pre>
From: Soil fauna accelerate litter mixture decomposition globally, especially in dry environments
<p>More than half of net primary production in terrestrial ecosystems returns to the soil through leaf litter fall and decomposition. In terrestrial ecosystems, litter constitutes a mixture of mainly senescent foliage from multiple species. Yet, the effect of litter mixing on litter decomposition rate remains ambiguous. Quantification of the soil fauna contribution and inclusion of their interaction with litter could remove the prevailing ambiguity, as soil fauna might influence the direction and magnitude of litter mixture effects on decomposition.</p> <p>We carried out a global meta-analysis to elucidate how soil fauna influenced litter mixture decomposition rate based on 55 published studies with 873 fauna inclusion/exclusion comparisons in field litterbag experiments. We hypothesized that soil fauna inclusion in litter mixture experiments would cause a positive change in the magnitude of mixed litter decomposition. That is, the presence of soil fauna would lead to synergistic litter mixture effects while the absence of soil fauna would lead to antagonistic litter mixture effects. Furthermore, we hypothesized that soil fauna would have a greater positive impact on the litter mixture effect in environments with low precipitation.</p> <p>While litter mixture had a neutral effect on decomposition on average across studies, non-additive mixture effects were common, with a key role for soil fauna, which generally enhanced decomposition rate compared to the component single species litters. In contrast, fauna exclusion resulted in a diminished decomposition rate overall. The overall synergistic soil fauna effect on litter mixture decomposition increased under low precipitation. Under high precipitation, the litter mixture effect was positive in the absence of soil fauna but non-significant in the presence of fauna. Climate imposes a great effect on litter mixture, with synergistic effects increasing towards the equator.</p> <p>Synthesis: These results highlight the importance of soil fauna in mixed litter decomposition, most strongly in dry environments. In this era of global climate change, where some regions are projected to become drier, soil fauna might compensate the expected slower decomposition of litter by increasingly enhancing litter mixture decomposition. </p>
Evaluation of Ion Mobility Spectrometry for Improving Constitutional Assignment in Natural Products Mixtures - cytoscape files
<p>Cytoscape files associated with Figure 5 from the manuscript: Evaluation of Ion Mobility Spectrometry for Improving Constitutional Assignment in Natural Products Mixtures</p>
Derivation and analysis of a phase field crystal model for a mixture of active and passive particles
<p>Supplementary data for the following manuscript: Michael te Vrugt, Max Philipp Holl, Aron Koch, Raphael Wittkowski, Uwe Thiele, "Derivation and analysis of a phase field crystal model for a mixture of active and passive particles"</p>
Simulations of POPC/cholesterol mixtures at 333 K, three system sizes
<p>For the calculation of shear viscosities based on Vögele et al., Phys. Rev. Lett. 120, 268104 (2018). All simulations at 333 K.</p>
Tree mixtures increase bird taxonomic and functional diversity over pure stands of tree species planted outside their natural range—but not over pure native stands
<p><span>Recent biodiversity loss has emphasized the necessity to critically evaluate the consequences of human alterations of forest ecosystems. Stand diversification via tree species mixtures and the use of non-native tree species are two such alterations currently gaining importance as climate change adaptations. However, the effects of local versus regional tree mixing on associated bio</span><span>diversity and notably the modifying role of tree species growing outside their natural range remain poorly understood. </span></p> <p><span>We assessed how monocultures and mixtures of native and introduced tree species influence the taxonomic and functional diversity of northwest German bird communities at stand and landscape scales. We focused on the dominant natural tree species (<em>Fagus sylvatica</em>) and economically important conifer species planted outside their natural range (the native <em>Picea abies</em> and non-native <em>Pseudotsuga menziesii</em>). </span></p> <p><span>We found that bird species richness and functional diversity were generally higher in pure and mixed stands of native <em>F. sylvatica</em> than in pure conifer stands, especially in comparison to non-native <em>P. menziesii</em>. These differences were particularly strong at the landscape scale. Pure conifer stands harbored only a reduced set of functionally similar bird species. Structural diversity based on tree microhabitat availability emerged as a key predictor of bird diversity. </span></p> <p><span>Synthesis and applications: Our study suggests that tree species mixtures do not necessarily increase bird diversity compared to pure stands of native trees, but can promote bird diversity relative to pure stands of species planted outside their natural range. Moreover, local mixtures, rather than a mosaic of pure stands, may promote bird diversity also at the landscape scale. By contrast, pure stands of tree species planted outside their natural range can increase the biotic homogenization of forest birds. Promoting structural diversity of microhabitats via tree retention and ensuring that non-native trees are planted in mixtures with native trees may alleviate potential limitations of climate change-oriented management for biodiversity. </span></p>
Simulations of POPC/cholesterol mixtures at 298 K, three system sizes, CHARMM36
<p>GROMACS input and output files. CHARMM36.</p> <p>Membranes with 64, 256, and 1024 lipids.</p> <p>Version 2: Updated with complete files for CHOL0_small.</p>
1H, 11B and 1H-11B HSQC spectra for the paper "The assignment of 11B and 1H resonances in the post-reaction mixture from the dry synthesis of Li(BH3NH2BH2NH2BH3)"
<p>Complete NMR datasets (Varian format) for the paper Nawrocka et al. "The assignment of 11B and 1H resonances in the post-reaction mixture from the dry synthesis of Li(BH3NH2BH2NH2BH3)" (DOI: 10.1002/mrc.5309)</p>
Simulations of POPC/cholesterol mixtures at 298 K, three system sizes, MacRog
<p>GROMACS input and output files. Lipid model by Maciejewski and Rog ('MacRog').</p> <p>Membranes with 64, 256, and 1024 lipids.</p>
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.