神户大学的一项新研究深入探讨了蛇菰属(Balanophora)植物如何在缺乏绿色色素和有性生殖的情况下生存,从而为了解植物生命的定义提供了重要见解。蛇菰属植物表现出极端的质体减少,但仍依赖质体进行基本代谢。它们重复进化的无性种子生产帮助它们在分散的森林环境中茁壮成长。(图片来源:Shutterstock) 神户大学植物学家末次健司(Kenji Suetsugu)表示:“我长久以来的目标是重新思考植 ...
NANJING, Dec. 14 (Xinhua) -- The 15th Intelligent Vehicle Future Challenge concluded on Sunday in Changshu, east China's Jiangsu Province, with a team from the Hong Kong University of Science and ...
当地时间 2025 年 12 月 12 日,美国国家科学基金会(National Science Foundation,NSF)的技术、创新与合作伙伴关系局(Directorate for Technology, Innovation and ...
Kuaizhou-11 solid-fuel launch vehicle, developed by the China Aerospace Science and Industry Corporation Limited, has a one-tonne payload capacity to a 700 km sun-synchronous orbit. This mission ...
The 2025 HKUST–Keysight Microelectronics and IC Conference (HKMEIC), co-hosted by the Department of Electronic & Computer Engineering at The Hong Kong University of Science and Technology (HKUST) and ...
China’s first domestically developed 800-kilogram-class heavy-lift electric vertical takeoff and landing (eVTOL) aircraft, ...
目前,国际数字游民的一大优势是:基于区块链、智能合约和DAO等智能技术的新型组织、运作、治理体系与过程,大量地使用“数字人”,聚焦现金流,以车间化生产方式生成场景知识和场景智能,成为具身智能真正实际应用的“尖兵突击队”,有效解决了困扰传统组织的“实时协调、实时绩效”两大难题,实现“成本极低、效益极高”的“智能剪刀差效应”。这是他们能在短时间内形成如此大规模“经济体”的主要原因。
目前,国际数字游民的一大优势是:基于区块链、 智能合约 和DAO等智能技术的新型组织、运作、治理体系与过程,大量地使用“数字人”,聚焦现金流,以车间化生产方式生成场景知识和场景智能,成为 具身智能 真正实际应用的“尖兵突击队”,有效解决了困扰传统组织的“实时协调、实时绩效”两大难题,实现“成本极低、效益极高”的“智能剪刀差效应”。这是他们能在短时间内形成如此大规模“经济体”的主要原因。
(原标题:When Science Meets "Her Wisdom": Listening to the Gentle Power of Life Sciences) ...
The year 2025 marks the final year of China’s 14th Five-Year Plan. Over the past year, policies have continued to take effect ...
12月6日,大湾区大学在松山湖校区举行成立大会,标志着这所以理工科为主的新型研究型大学正式落地。The Greater Bay University (GBU) held its inauguration ceremony at its ...
BEIJING, Dec. 5 (Xinhua) -- Moore Threads Technology Co., Ltd., a leading Chinese graphics processing unit (GPU) developer, saw its share price surge more than 400 percent as it made its debut Friday ...