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17 results for “backyard”
Backyard Beetles and Pollinators Dataset - EREN/NEON Flexible Learning Project
<p>This dataset comes from the EREN-NEON flexible learning project 'Backyard Beetles and Pollinators.' It can be used for teaching field, computational, or hybrid courses. The dataset is standardized, visual observations of insect plant visitors, identified to standard functional groups, to indirectly assess pollination and construct plant-pollinator interaction networks. Insects were identified to morphospecies in the field using reference images. We also collected information about the flowers the insects were observed on - including functional type information about the color, size, and type of flower - as well as cover. This information is part of an ongoing course-based undergraduate research project to both teach about plants, insects, and functional biodiversity in a flexible and inclusive way - while collaboratively assessing interaction networks across landscapes and time. </p> <p>To use the flexible lesson materials or join the collaboration, get more information here: https://erenweb.org/eren-neon-flexible-learning-projects/ Or contact the project lead, Dr. Stack Whitney, directly at kxwsbi [at] RIT [dot] edu. </p>
Dataset from: Gravitational wave sources in our Galactic backyard - Predictions for BHBH, BHNS and NSNS binaries in LISA
<p>The data from all simulations used in "<em><strong>Gravitational wave sources in our Galactic backyard: Predictions for BHBH, BHNS and NSNS binaries in LISA</strong></em>"</p> <p>Contents:</p> <ul> <li><strong>detections_and_totals.zip</strong> <ul> <li>Contains for .npy files that contain tables of the detections and total DCOs in Milky Way. These were calculated with <a href="https://github.com/TomWagg/detecting-DCOs-in-LISA/blob/main/simulation/postprocessing_notebooks/get_detection_rates.ipynb">this</a> and <a href="https://github.com/TomWagg/detecting-DCOs-in-LISA/blob/main/simulation/postprocessing_notebooks/get_total_DCOs_in_MW.ipynb">this</a> notebook and are included for convenience so you don't have to re-run these notebooks</li> </ul> </li> <li><strong>simulations_4yr.zip</strong> <ul> <li>Contains 60 .h5 files that contain the main simulations for a 4-year LISA mission. Each file contains the results for a single DCO type (BHBH, BHNS or NSNS) and model variation (20 variations) are labeled as <em>{DCO_type}_{variation}_all.h5</em><strong><em>. </em></strong></li> </ul> </li> <li><strong>simulations_10yr.zip</strong> <ul> <li>As simulations_4yr.zip but for a 10-year LISA mission</li> </ul> </li> <li><strong>simple_mw_simulations.zip</strong> <ul> <li>As simulations_4yr.zip but using a simple model for the Milky Way (discussed in Appendix D) and only for models A and F (hence only contains 6 .h5 files)</li> </ul> </li> </ul> <p>For a description of how to use these files to reproduce figures and results see the README.md in the associated GitHub repository: <a href="https://github.com/TomWagg/detecting-DCOs-in-LISA">https://github.com/TomWagg/detecting-DCOs-in-LISA</a></p> <p>Version 0.0.1 - Changes model E to E' as discussed in paper (now we allow HeHG donors to survive common-envelopes)</p> <ul> </ul>
In My Backyard: On-Site Survey Responses Raw Dataset
<p>In My Backyard: On-Site Survey Responses Raw Dataset</p> <p>In My Backyard is a citizen science project promoted by Rio Neiva – Environmental NGO and its partner CEA – Municipal Centre for Environmental Education, both based in Esposende, Portugal. It was funded through the ACTION project. In My Backyard aimed to understand the use of harmful pesticides and fertilizers in home farming and gardening and uncovering sustainable alternatives practiced within domestic backyards. </p> <p>www.rioneiva.com/nomeuquintal</p>
In My Backyard: Online Survey Responses Raw Dataset
<p>In My Backyard: Online Survey Responses Raw Dataset</p> <p>In My Backyard is a citizen science project promoted by Rio Neiva – Environmental NGO and its partner CEA – Municipal Centre for Environmental Education, both based in Esposende, Portugal. It was funded through the ACTION project. In My Backyard aimed to understand the use of harmful pesticides and fertilizers in home farming and gardening and uncovering sustainable alternatives practiced within domestic backyards. </p> <p>www.rioneiva.com/nomeuquintal</p>
DATASET AND CODES FOR THE PAPER "NUCLEAR WASTE IN MY BACKYARD: SOCIAL ACCEPTANCE AND ECONOMIC INCENTIVES"
<p>These are the codes and dataset used in the paper "Nuclear Waste in My Backyard: Social Acceptance and Economic Incentives", https://doi.org/10.1016/j.enpol.2023.113979.</p> <p>The structure of codes is explained in the README file. </p>
Data from: Quantifying the damage caused by fruit bats to backyard lychee trees in Mauritius and evaluating the benefits of protective netting
The Mauritius fruit bat (Pteropus niger) has been the subject of repeated culling campaigns, apparently in response to pressure from the fruit-growing industry concerned over damage to commercially valuable orchard crops such as lychees. More than 31,000 fruit-bearing lychee trees also exist in private backyards making this an issue pertinent to a wide cross-section of the Mauritian general public and not just those involved in commercial fruit production. The level of damage caused by bats to fruit crops is often debated and the low number of robust damage assessment studies hampers mitigation efforts. During the fruiting season of 2016/2017, we assessed the damage among backyard lychee trees attributable to fruit bats and other causes around Vacoas-Phoenix, Central Mauritius and evaluated the impact of using protective netting as a mitigation strategy. Fruit yield from panicles that were protected from depredation by nylon netting was approximately one third greater than that from unprotected panicles. We suspect that fruit bats were responsible for approximately 42% of the total damage but illustrate the difficulties in attributing damage to a single cause in such assessments. Although we demonstrate the value of protective netting we recognize that barriers to implementation exist and that a more holistic approach that incorporates crop protection, forest restoration strategies and addresses negative public attitudes towards bats in general is required to ensure the persistence of this endemic species.
FIGURES 2–5 in Linnaeomyia hortensis gen. et spec. nov. (Diptera: Cecidomyiidae, Porricondylinae) from a backyard site in Öland, Sweden
FIGURES 2–5. Morphology of male Linnaeomyia hortensis. 2: Genitalia, ventral. 3: Gonostylus, ventral. 4: Tegmen and ejaculatory apodeme, ventral. 5: Wing, vestiture omitted. Tg 9 = ninth tergite; ejac ap = ejaculatory apodeme. Scale for 2–4, 0.05 mm; for 5, 0.50 mm.
FIGURE 1 in Linnaeomyia hortensis gen. et spec. nov. (Diptera: Cecidomyiidae, Porricondylinae) from a backyard site in Öland, Sweden
FIGURE 1. Setting of the Malaise trap in Station Linné's backyard in 2014. Note the compost pile behind the trap. View towards the east.
FIGURE 7 in Two new species of Eperua (Leguminosae, Detarioideae, Detarieae) from the Amazon and Cerrado Biomes discovered in a botanical garden and a backyard
FIGURE 7. Eperua manausensis: A. two-leaved branch showing the leaflet number variation; B. piece of branch showing the pair of stipules; C. detail of the leaflet base, abaxial side; D. detail of the abaxial margin of the leaflet showing the two intramarginal veins; E. inflorescence; F. flower; G. flower bud and bracteoles; H. detail of the indumentum of the inflorescence axis; I. sepal; J. stamen; K. detail of the indumentum at the base of the filament; L. carpel and stamen sheath; M. detail of carpel indumentum; N. fruit; O. detail of the fruit indumentum. A, C–D, O: specimen Fortes E.A. & Viana G.P. 194b; E–N: specimen Cabral F.N. et al. 1561. Illustrated by Marcus Falc"o.
FIGURE 4 in Two new species of Eperua (Leguminosae, Detarioideae, Detarieae) from the Amazon and Cerrado Biomes discovered in a botanical garden and a backyard
FIGURE 4. Eperua cerradoensis: A–B. inflorescence and detail of indumentum, bar 1cm; C. flower, bar 1 cm; D. sepals, bar 1 cm; E. adaxial petal, bar 1 cm; F. stamens, bar 1 cm; G. three of the four petalodia, bar 1 cm; H. carpel and detail of ovary indumentum, bar 1 cm. Photos, A.S. Gonçalves.
FIGURE 3 in Two new species of Eperua (Leguminosae, Detarioideae, Detarieae) from the Amazon and Cerrado Biomes discovered in a botanical garden and a backyard
FIGURE 3. Eperua cerradoensis: A. habit; B. trunk base; C. bark as a background for a photo of the inflorescence in bud; D. leaf, bar 3 cm; E. stipules, bar 1 cm; F. intramarginal vein, bar 1 mm; G. epunctate leaflet, bar 1 mm; H. adaxial surface of leaflet, bar 1 cm; I. fruits, bar 3 cm. Photos, A–D, I: A.S. Gonçalves; E–H: E.A. Fortes.
FIGURE 5 in Two new species of Eperua (Leguminosae, Detarioideae, Detarieae) from the Amazon and Cerrado Biomes discovered in a botanical garden and a backyard
FIGURE 5. Eperua cerradoensis: A. leaf; B. detail of leaflet margin, abaxial side, showing the intramarginal vein; C. stipules; D. inflorescence; E. detail of the indumentum of the main axis of the inflorescence and the pedicel; F. flower, lateral view with pair of bracteoles and scar of the caducous bract; G. flower, polar vision; H. sepal; I. petal; J. four petalodia; K. detail of the stamen tube and petalodia (sepals and petals removed); L. detail of the glabrous stamen tube and intrastaminal nectaries; M. anther, side view; N. carpel; O. detail of the ovary indumentum; P. stigma; Q. fruit; R. detail of the fruit indumentum. Specimen: Gonçalves A.S. 01 and 02. Illustrated by Marcus Falc"o.
FIGURE 1 in Two new species of Eperua (Leguminosae, Detarioideae, Detarieae) from the Amazon and Cerrado Biomes discovered in a botanical garden and a backyard
FIGURE 1. Different inflorescence arrangements and flower architectures in the genus Eperua. A–E. Short and erect inflorescence, flower with tubular corolla and inserted stamens; F–H. Long and pendulous inflorescence, flower with non-tubular corolla and exserted stamens; I–J. Short and erect inflorescence, flower with non-tubular corolla and exserted stamens. Bar 1 cm; A–C. E. oleifera; D–E. E. glabriflora; F–H. E. rubiginosa Miquel (1851: 12) var. rubiginosa; I–J. E. duckeana. Photos A–C: F. Farroñay; D: D.B. Cardoso; E–H: E.A. Fortes; I–J: T.C. Monteiro.
FIGURE 2 in Two new species of Eperua (Leguminosae, Detarioideae, Detarieae) from the Amazon and Cerrado Biomes discovered in a botanical garden and a backyard
FIGURE 2. Geographic distribution of Eperua cerradoensis and Eperua manausensis. Biome shape from IBGE (2019).
FIGURE 6 in Two new species of Eperua (Leguminosae, Detarioideae, Detarieae) from the Amazon and Cerrado Biomes discovered in a botanical garden and a backyard
FIGURE 6. Eperua manausensis: A. trunk base; B–C. leaves; D. bark; E. leaflet abaxial surface, bar 1 cm; F. intramarginal vein, abaxial side, bar 1 mm; G. pellucid-punctate leaflet, bar 1 mm; H. flowering branch, ruler 15 cm; I. branch bearing a fruit, ruler 15 cm; J. inflorescence with a flower highlighted, bar 1 cm; K. ovary and stamens highlighting the indumentum, bar 1 cm. Photos, A–G, K: E.A. Fortes; H–J: F.N. Cabral.
Data from: Quantifying the damage caused by fruit bats to backyard lychee trees in Mauritius and evaluating the benefits of protective netting
Open the record for dataset details and reuse information.
in the backyard
<u>Source</u>: Flickr <br><u>4DCity URL</u>: <a href="https://4dcity.org/imgupload/1677443350.3151.jpg">https://4dcity.org/imgupload/1677443350.3151.jpg</a> <br><u>Original Image URL</u>: <a href="https://live.staticflickr.com/65535/48954325383_e09d40a619_m.jpg">https://live.staticflickr.com/65535/48954325383_e09d40a619_m.jpg</a>
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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International Brain Laboratory public data
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OpenNeuro
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