青青草a国产免费观看|91麻豆精品国产福利|国产av五无码一级毛片|亚洲爆乳精品无码一区二区|久久亚洲AV成人无码国产|91无码人妻一区二区三区|色婷婷av一区二区三区性色|国产制服91一区二区三区制服,女人书籍排行榜,盗墓笔记小说txt下载,玄幻小说排行榜完本

position: EnglishChannel  > InnovationChina> Leading Global Science with Breakthroughs

Leading Global Science with Breakthroughs

Source: 科技日報 | 2024-06-24 18:53:21 | Author: GONG Qian


The?experimental advanced superconducting tokamak (EAST), or the Chinese "artificial sun."?(PHOTO:?Xinhua)


Edited by GONG Qian

Since the National Conference on Science and Technology Innovation in 2016, China has attained a number of significant scientific and technological achievements, playing a leading role in the global sci-tech community.

At the forefront of critical research

Over the past eight years, Chinese scientists?have tackled cutting-edge scientific issues and completed a series?of crucial basic research tasks, consolidating basic research.

In fundamental physics, China has achieved international leadership in areas such as quantum communication, superconductivity and topology in?physics, and magnetic confinement long-pulse plasma.

In 2016, China launched the world's first quantum satellite “Micius”,?named after an ancient Chinese philosopher. “It’s a huge achievement for quantum entanglement and quantum science,”?physicist Thomas Jennewein of the University of Waterloo in Canada told Science News. “China is now clearly taking the world leadership in this area of quantum communication.”

Several years later, Chinese scientists set up the world's first integrated quantum communication network that combines 700 optical fibers on the ground with two ground-to-satellite links and realized quantum key distribution between more than 150 users over a combined distance of 4,600 km.

In November 2017, China successfully created?from somatic cells?the world’s first cloned?macaques, named Zhong Zhong and Hua Hua. With this success it became a pioneer in disease and brain science research, using cloned macaques as animal models.

China has?also?achieved significant?and historic?breakthroughs in deep space exploration.?For example,?the ascender of China's Chang'e-6 probe lifted off from the lunar surface on June 4, carrying samples from the moon's far side, an unprecedented feat in lunar exploration history. Other major?achievements include?Zhurong,?the?first?Mars?rover?landing?on?the?red?planet, and?completion?of?the?Tiangong?space?station.?Those?feats?have?greatly?contributed?to?the?exploration?of?the?mysteries?of?the?universe.

Mega projects for advanced research

China has achieved remarkable progress in both the quantity and quality of mega science projects, promoting?basic research and innovation.

In November 2020,?China's manned submersible Fendouzhe, which means “Striver”,?completed its 10,000-meter sea trial. During the expedition,?the submersible set a new national record by diving to a depth of 10,909 meters in the Mariana Trench. This marked China's entry into the top echelon of deep-sea scientific research.?The domestically developed Fendouzhe?has greatly improved the independent innovation level of China’s deep-sea equipment technology.

In August 2022, a hybrid magnet built by scientists of the Steady High Magnetic Field Facility in Hefei, east China, produced a steady field of 45.22 tesla, the highest steady magnetic field by a working magnet in the world. This broke the previous record of 45 tesla by U.S. researchers in 1999.

This achievement is a milestone in magnetic technology. Stronger magnetic fields help scientists see the internal structure of materials more clearly, leading to a better understanding of the world and the development of new technologies.

The experimental advanced superconducting tokamak (EAST), or the Chinese "artificial sun," achieved a steady-state high confinement plasma operation for 403 seconds on April 12, 2023. In the same year,?Chinese scientists unveiled a quantum computer prototype, known as “Jiuzhang 3.0”, with 255 detected photons. It could solve Gaussian boson sampling problems 10 quadrillion times faster than?the world's fastest supercomputers at that time.

As of April 2024, China’s Five-hundred-meter Aperture Spherical Radio Telescope (FAST) had identified more than 900 new pulsars?since its launch in 2016. Using?the world's largest single-dish radio telescope, Chinese scientists?have found evidence of the existence of nanohertz gravitational waves. The discovery is pivotal in understanding the structure of the universe and the behavior of supermassive black holes, paving the way for future exploration of gravitational waves.

With its commitment to innovation and research, China is poised to unlock new frontiers in various fields and?take its sci-tech strength to a higher level to support national development?and benefit the world.?

Editor:龔茜

抱歉,您使用的瀏覽器版本過低或開啟了瀏覽器兼容模式,這會影響您正常瀏覽本網(wǎng)頁

您可以進行以下操作:

1.將瀏覽器切換回極速模式

2.點擊下面圖標升級或更換您的瀏覽器

3.暫不升級,繼續(xù)瀏覽

繼續(xù)瀏覽
柏乡县| 丰台区| 伊吾县| 平泉县| 曲沃县| 南投市| 阳西县| 读书| 长丰县| 安远县| 靖西县| 沈阳市| 阿拉尔市| 无极县| 陵川县| 乌鲁木齐市| 阿瓦提县| 贡觉县| 无棣县| 扎鲁特旗| 凌源市| 九寨沟县| 惠州市| 扎鲁特旗| 垦利县| 夏邑县| 兴海县| 会昌县| 潢川县| 青阳县| 绥德县| 林周县| 隆尧县| 桃源县| 台中市| 江北区| 襄樊市| 卓尼县| 抚顺市| 文水县| 高碑店市|