Xue Qikun
Xue Qikun is an esteemed academic and researcher in the field of quantum materials and superconductivity. He has played a crucial role in leading a collaborative research team that successfully achieved high-temperature superconductivity in nickel oxide materials, marking a notable breakthrough in superconducting technology.
Born on Jan 01, 1960 (66 years old)
Global Media Ratings
Countries Mentioned
| Country | Mentions | Sentiment | Dominance | + Persistence | x Population | = Reach | x GDP (millions) | = Power |
|---|---|---|---|---|---|---|---|---|
| China | 3 | 9.00 | 0.20% | +0% | 1,402,112,000 | 2,830,643 | $14,000,000 | 28,264$ |
| Totals | 3 | 1,402,112,000 | 2,830,643 | $14,000,000 | 28,264$ |
Interactive World Map
Each country's color is based on "Mentions" from the table above.
Recent Mentions
China:
Xue Qikun discusses the pursuit of zero electrical resistance and advancements in quantum computing.
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China:
Xue Qikun is an academic who has received the National Supreme Science and Technology Award for his contributions to quantum technology.
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China:
Xue Qikun received the National Supreme Science and Technology Award for his contributions to quantum technology.
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China:
Academician Xue Qikun led a research team that achieved high-temperature superconductivity in nickel oxide materials.
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China:
Xue Qikun led a joint research team that achieved breakthroughs in high-temperature superconducting materials.
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China:
Xue Qikun, an academician and president of Southern University of Science and Technology, carried the first torch in the relay.
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China:
Xue Qikun is the President of Southern University of Science and Technology and was the first torchbearer.
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China:
Xue Qikun, president of Southern University of Science and Technology, received the National Supreme Science and Technology Award.
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China:
Xue Qikun's team faced numerous challenges in their experiments but emphasized the importance of exploring all paths in scientific research.
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China:
Academician Xue Qikun led the research team that developed the technology for achieving high-temperature superconductivity under normal pressure.
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