五月 2026
quantiki.org
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跳出率
35.05%
每次访问页数
4.26
平均访问时长
00:01:01
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quantiki.org的 10 大竞争对手
在 五月 2026 与 quantiki.org 相似的前 10 名网站,按关键字流量、受众定位和市场重叠方面与 quantiki.org 的关联性排名
Q&A for engineers, scientists, programmers, and computing professionals interested in quantum computing
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64.24%
每次访问页数
1.68
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00:01:47
A system of non-tradable credits that flow between individuals like karma, hence proposed under that name, is a mechanism for repeated resource allocation that comes with attractive efficiency and fairness properties, in theory. In this study, we test karma in an online experiment in which human subjects repeatedly compete for a resource with time-varying and stochastic individual preferences or urgency to acquire the resource. We confirm that karma has significant and sustained welfare benefits even in a population with no prior training. We identify mechanism usage in contexts with sporadic high urgency, more so than with frequent moderate urgency, and implemented as a simple (binary) karma bidding scheme as particularly effective for welfare improvements: relatively larger aggregate efficiency gains are realized that are (almost) Pareto superior. These findings provide guidance for further testing and for future implementation plans of such mechanisms in the real world.
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跳出率
39.14%
每次访问页数
3.21
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00:04:22
相似度评分
92%authorea is the leading platform to write, cite, collaborate, host data, and publish.
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43.31%
每次访问页数
2.44
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00:00:53
ResearchHub is a collaborative community seeking to improve prioritization, collaboration, reproducibility, and funding of scientific research. Join us to discuss and discover academic research.
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72.17%
每次访问页数
1.49
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00:00:29
We congratulate Tony Metger on successfully passing his PhD defense with a thesis titled "Bounding entropies in general sequential quantum processes"! Tony is going to pursue a postdoc at Berkeley. We wish him the best of luck for his career!
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5.96
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00:08:48
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81%- 公司
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62.59%
每次访问页数
1.75
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00:01:37
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47.12%
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2.43
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00:01:08
Single atom catalysts have gained significant attention due to their promise of maximum atom utilization and uniform active sites. However, significant knowledge gaps remain regarding how coordination environments evolve under realistic operating conditions and how that affects their ability to participate in chemical and physical processes. This study used infrared spectroscopy to investigate the effect of thermal chemical preprocessing on the 13CO adsorption capacity of 0.034 wt.% Pd/CeO2 to yield monomeric palladium carbonyl complexes. While the (13CO) band frequency of the monomer was only slightly responsive to thermal chemical preprocessing, the monomer density spanned an order-of-magnitude. The breadth of the monomer density suggests that single-atom coordination environments are better described as a distribution that can be systematically manipulated to control chemical processes as opposed to static, uniform active sites. Changes in the Pd coordination ensemble, manifested as changes in the monomer density, represented distinct metastable states that were accessed through specific thermal chemical histories. The dependence of the coordination ensemble on thermal chemical history led to different monomer densities under identical experimental conditions. This observation revealed that thermal chemical preprocessing is non-deterministic and that the Pd coordination ensemble is kinetically controlled rather than thermodynamically determined. This work establishes a methodology that uses molecules as both sensitive diagnostics and synthetic tools to direct material properties. The ability to reversibly control coordination distributions opens new pathways for catalyst design and provides fundamental insights into the dynamic nature of atomically dispersed metals.
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44.29%
每次访问页数
2.24
平均访问时长
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authorea is the leading platform to write, cite, collaborate, host data, and publish.
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44.98%
每次访问页数
1.98
平均访问时长
00:00:33
quantiki.org在 五月 2026 的前五名竞争对手是:quantumcomputing.stackexchange.com、arxiv.org、techrxiv.org、osf.io等。
根据 Similarweb 的月访问量数据,quantiki.org 在 五月 2026 的头号竞争对手是 quantumcomputing.stackexchange.com。与 quantiki.org 相似度排名第二的网站是 arxiv.org,排名第三的是 techrxiv.org。
在 五月 2026,osf.io 被评为与 quantiki.org 相似度第四高的网站,researchhub.com 位居第五。
进入前十名榜单的其他五家竞争对手分别是 qit.ethz.ch、qi.uni-koeln.de、quantumdelta.nl、chemrxiv.org 和 authorea.com。
