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2,214 results for “Walls”

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zenodo36/100

Stone Wall Nr.1

Stone Wall with some plants and moss, 133 photos processed with Photoscan Source: Objaverse 1.0 / Sketchfab

opencc-byAug 2017View details →
zenodo36/100

Wall torch

This is the torch I made for game I am working on. I hope you like it and that it will be usefull to you in your future projects :). Source: Objaverse 1.0 / Sketchfab

opencc-byAug 2020View details →
zenodo36/100

FS0191 Honanki Room 14 North Wall

This room is located to the east of the main west alcove rooms at the Honanki Cultural Heritage site. The room walls were created by the Sinagua Paleo Indian culture circa 1100 AD to 1300 AD. The Sinagua are, in part, ancestors of the Hopi Indian culture. The Honanki Cultural Heritage site is located in the Red Rock District of the Coconino Forest northwest of Sedona Arizona Additional information about the Red Rock District of the Coconino Forest can be found at the following web sites http://www.sedonaredrocktrails.org/ http://www.fs.usda.gov/recmain/coconino/recreation Information about volunteer opportunities in the Coconino Forest including the creation of the 3D models and other projects can be found at http://www.friendsoftheforestsedona.org/ Source: Objaverse 1.0 / Sketchfab

opencc-byOct 2016View details →
zenodo36/100

The Wall With "Mysterious" Insctiption F. A. B.

Broumov - kartuse F. A. BModel. (zahrady) mapa: https://mapy.cz/s/fefotumole Source: Objaverse 1.0 / Sketchfab

opencc-bySep 2021View details →
zenodo36/100

POINTCLOUD / Newtown Wall

I am testing Everypoint app to scan this wall, it's over 10 meter height. Source: Objaverse 1.0 / Sketchfab

opencc-byApr 2021View details →
zenodo36/100

Medieval Wall PBR Scan 01

Captured from an old abbey in the spanish Pyrenees. **Fully processed 3D scans**: reduced light information, color-matched, etc. **Ready to use for all kind of CGI** 8K Textures: * normal * albedo * roughness Please let me know if something isn't working as it should. Source: Objaverse 1.0 / Sketchfab

opencc-bySep 2022View details →
zenodo36/100

Berlin Wall Fragment at Tembusu College (2 of 2)

This is one of two panels which was gifted by Mr Elmar Prost, Managing Director of Lagerhaus KW GmbH to Singapore in 2015 to celebrate 50 years of diplomatic relations between Germany and Singapore. The panels are on loan to the National University of Singapore through the Ministry of Foreign Affairs. They were officially unveiled on 18 October 2015. Segments of the Berlin Wall can also be seen in more than 100 memorials around the world, including the Vatican City and Kingston, Jamaica. Specs of each panel: Approx 4 tonnes in weight, 3.6m tall, 1.2m across, 27cm thick, 2.1m wide base. More info: https://www.straitstimes.com/singapore/two-panels-of-historic-berlin-wall-on-display-at-nus-university-town https://tembusu.nus.edu.sg/news/2016/fragments-of-the-berlin-wall-at-tembusu-college https://news.nus.edu.sg/berlin-wall-at-nus/ https://www.facebook.com/nus.singapore/videos/the-berlin-wall-in-nus/10154625929853540/ 3D scan made with 3D Live Scanner Pro. Source: Objaverse 1.0 / Sketchfab

opencc-byFeb 2022View details →
zenodo36/100

Cyclic test data of five URM walls at half-scale

<p>This data presents the results of a test series on five identical unreinforced masonry walls built at half-scale that were constructed using hollow clay brick units and standard cement-based mortar. The test units were subjected to<br> quasi-static cycles of increasing drift demands and the tests differed with regard to the applied axial load and the moment restraint applied at the top of the walls. The walls were tested up to failure. Throughout the loading the deformations of the walls were recorded using a digital photogrammetric measurement system tracking the movement of 312 points per test unit.</p>

opencc-by-sa-4.0Nov 2014View details →
zenodo36/100

Quasi-Static Cyclic Tests of Two U-Shaped Reinforced Concrete Walls

<p>U-shaped or channel-shaped walls are frequently used as lateral strength providing members in reinforced concrete (RC) buildings since their form does not only provide strength and stiffness in any horizontal direction but is also well suited to accommodate elevator shafts or staircases. Despite this popularity, experimental results on the seismic behavior of U-shaped walls are scarce. For this reason a research program with the objective to provide additional experimental evidence for such walls under seismic loading was developed. It included quasi-static cyclic testing of two U-shaped walls at the structural engineering laboratories of the ETH Zurich. The walls were built at half-scale and designed for high ductility. The main difference between the two walls was their wall thickness. The project was chiefly focusing on the bending behavior in different directions and therefore the walls were subjected to a bi-directional loading regime. This article discusses the design of the test units, the test setup and the test predictions. Finally the main results are summarized in terms of failure mechanisms and force-displacement hystereses.</p>

opencc-by-sa-4.0Jul 2015View details →
zenodo36/100

Tests on Thin Reinforced Concrete Walls Subjected to In-plane and Out-of-plane Cyclic Loading - General

<p>The entire dataset&nbsp;describes an experimental campaign on five thin&nbsp;T-shaped&nbsp;reinforced concrete walls, including: details on the test units, materials, test&nbsp;setup,&nbsp;loading protocol, instrumentation, main features of each unit&rsquo;s response,&nbsp;organization of the provided test data, and examples of derived data. The&nbsp;tests aimed at assessing the influence of wall thickness on member stability,&nbsp;the role of lap splices on damage distribution and displacement ductility,&nbsp;and the effects of the simultaneous application of out-of-plane loading on&nbsp;the member response.</p>

opencc-zeroOct 2015View details →
zenodo36/100

Walls, Pillars and Beams: A 3D Decomposition of Quality Anomalies

<p>This is an artifact package accompanying&nbsp;the paper &quot;Walls, Pillars and Beams: A 3D Decomposition of Quality Anomalies&quot;.</p> <p>The package contains a dataset that can be used to reproduce the experiment or compare it with other approaches that may be proposed in the future. We also provide a video which demonstrates our approach.</p>

opencc-by-sa-4.0Jun 2016View details →
zenodo36/100

Figure 8. - Pollination and oviposition behavior of the Japanese Epicephala species. A Epicephalaanthophilia female actively depositing pollen on Glochidionacuminatum female flower B Epicephalaanthophilia ovipositing through stylar pit of Glochidionacuminatum flower C Epicephalabipollenella ovipositing through stylar pit of Glochidionzeylanicum flower D Epicephalalanceolatella ovipositing through stylar pit of Glochidionlanceolatum flower E Epicephalaperplexa ovipositing through lateral ovary wall of Glochidionlanceolatum flower F Epicephalaobovatella ovipositing through lateral ovary wall of Glochidionobovatum flower G Epicephalacorruptrix ovipositing through ovary wall of Glochidionrubrum flower H Epicephalavitisidaea ovipositing in the interspace between ovary and tepal I Epicephalaparasitica ovipositing in young fruit of Phyllanthuslepidocarpus.

Figure 8. - Pollination and oviposition behavior of the Japanese Epicephala species. A Epicephalaanthophilia female actively depositing pollen on Glochidionacuminatum female flower B Epicephalaanthophilia ovipositing through stylar pit of Glochidionacuminatum flower C Epicephalabipollenella ovipositing through stylar pit of Glochidionzeylanicum flower D Epicephalalanceolatella ovipositing through stylar pit of Glochidionlanceolatum flower E Epicephalaperplexa ovipositing through lateral ovary wall of Glochidionlanceolatum flower F Epicephalaobovatella ovipositing through lateral ovary wall of Glochidionobovatum flower G Epicephalacorruptrix ovipositing through ovary wall of Glochidionrubrum flower H Epicephalavitisidaea ovipositing in the interspace between ovary and tepal I Epicephalaparasitica ovipositing in young fruit of Phyllanthuslepidocarpus.

opencc-by-4.0Feb 2017View details →
zenodo36/100

Old Mandu (बूढ़ी मांडू), Dhār district, Madhya Pradesh. Detail of fort wall.

<p>Old Mandu (बूढ़ी मांडू), Dhār district, Madhya Pradesh. Detail of fort wall. Photo 2/2010.</p>

opencc-by-4.0Mar 2017View details →
zenodo36/100

Estimates for the stiffness, strength and drift capacity of stone masonry walls based on 123 quasi-static cyclic tests reported in the literature

<p>Database of 123 shear and compression tests on stone masonry walls reported in the literature. Test references, geometrical and typological data, loading and boundary conditions, mechanical characterisation data, and synthetic test results are collected. Such test results include failure mode, force and displacement capacities&nbsp;for different limit states and estimates of the elastic and effective stiffness. Hysteretic force-displacement curves,&nbsp;digitalised from the sources, and the derived envelopes are provided, when available, as .csv files.</p>

opencc-by-4.0Jun 2017View details →
zenodo36/100

Nicosia, Cyprus. Bedesten, east end, with adjacent walls of St. Sophia

<p>Nicosia, Cyprus. Bedesten, east end, with adjacent walls of St. Sophia, as documented in 1974.</p>

opencc-by-4.0Jun 2017View details →
zenodo36/100

Position error-free control of magnetic-domain wall devices via spin-orbit torque modulation

<p>Magnetic domain-wall devices such as racetrack memory and domain-wall shift registers facilitate massive data storage as hard disk drives with low power portability as flash memory devices. The key issue to be addressed is how perfectly the domain-wall motion can be controlled without deformation, as it can replace the mechanical motion of hard disk drives. However, such domain-wall motion in real media is subject to the stochasticity of thermal agitation with quenched disorders, resulting in severe deformations with pinning and tilting. To sort out the problem, we propose and demonstrate a new concept of domain-wall control with a position error-free scheme. The primary idea involves spatial modulation of the spin-orbit torque along nanotrack devices, where the boundary of modulation possesses broken inversion symmetry. In this work, by showing the unidirectional motion of domain wall with position-error free manner, we provide an important missing piece in magnetic domain-wall device development.</p>

opencc-by-4.0Oct 2023View details →
zenodo36/100

Position error-free control of magnetic-domain wall devices via spin-orbit torque modulation

<p>Magnetic domain-wall devices such as racetrack memory and domain-wall shift registers facilitate massive data storage as hard disk drives with low power portability as flash memory devices. The key issue to be addressed is how perfectly the domain-wall motion can be controlled without deformation, as it can replace the mechanical motion of hard disk drives. However, such domain-wall motion in real media is subject to the stochasticity of thermal agitation with quenched disorders, resulting in severe deformations with pinning and tilting. To sort out the problem, we propose and demonstrate a new concept of domain-wall control with a position error-free scheme. The primary idea involves spatial modulation of the spin-orbit torque along nanotrack devices, where the boundary of modulation possesses broken inversion symmetry. In this work, by showing the unidirectional motion of domain wall with position-error free manner, we provide an important missing piece in magnetic domain-wall device development.</p>

opencc-by-4.0Nov 2023View details →
dryad36/100

Nutrient conditions mediate mycorrhizal effects on biomass production and cell wall chemistry in poplar

<p> Large-scale biofuel production from lignocellulosic feedstock is limited by the financial and environmental costs associated with growing and processing lignocellulosic material and the resilience of these plants to environmental stress. Symbiotic associations with arbuscular (AM) and ectomycorrhizal (EM) fungi represent a potential strategy for expanding feedstock production while reducing nutrient inputs. Comparing AM and EM effects on wood production and chemical composition is a necessary step in developing biofuel feedstocks. Here, we assessed the productivity, biomass allocation and secondary cell wall (SCW) composition of greenhouse-grown Populus tremuloidesMichx. inoculated with either AM or EM fungi. Given the long-term goal of reducing nutrient inputs for biofuel production, we further tested the effects of nutrient availability and nitrogen: phosphorus stoichiometry on mycorrhizal responses. Associations with both AM and EM fungi increased plant biomass by 14–74% depending on the nutrient conditions but had minimal effects on SCW composition. Mycorrhizal plants, especially those inoculated with EM fungi, also allocated a greater portion of their biomass to roots, which could be beneficial in the field where plants are likely to experience both water and nutrient stress. Leaf nutrient content was weakly but positively correlated with wood production in mycorrhizal plants. Surprisingly, phosphorus played a larger role in EM plants compared with AM plants. Relative nitrogen and phosphorus availability were correlated with shifts in SCW composition. For AM associations, the benefit of increased wood biomass may be partially offset by increased lignin content, a trait that affects downstream processing of lignocellulosic tissue for biofuels. By comparing AM and EM effects on the productivity and chemical composition of lignocellulosic tissue, this work links broad functional diversity in mycorrhizal associations to key biofuel traits and highlights the importance of considering both biotic and abiotic factors when developing strategies for sustainable biofuel production.</p>

opencc-zeroOct 2023View details →
dryad36/100

Data for: Protective functions of Biocrusts on the Great Wall of China

<p><span>The Great Wall of China, one of the most emblematic and historical structures built by humankind throughout all of history, is suffering from rain and wind erosion and is largely colonized by biocrusts. Yet, how biocrusts influence the conservation and longevity of this structure is virtually unknown. Here, we conducted an extensive biocrust survey across the Great Wall and found that biocrusts cover 67% of the studied sections. Biocrusts enhance the mechanical stability and reduce the erodibility of the Great Wall. Compared with bare rammed earth, the biocrust-covered sections exhibited reduced porosity, water-holding capacity, erodibility, and salinity by 2%–48%, while increasing compressive strength, penetration resistance, shear strength, and aggregate stability by 37%–321%. We further found that the protective function of biocrusts mainly depended on biocrust features, climatic conditions, and structure types. Our work highlights the fundamental importance of biocrusts as a nature-based intervention to the conservation of the Great Wall, protecting this monumental heritage from erosion.</span></p>

opencc-zeroNov 2023View details →
zenodo36/100

Fragment of the Berlin Wall - Albania Heritage

3D model from 70 pictures, using reality capture. This piece of Berlin wall is located in Tirana, Albania. Free model ! Source: Objaverse 1.0 / Sketchfab

opencc-byJun 2021View details →

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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.

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Last verified 2026-04-29Open record