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room-temperature-superconductor

Explore superconductivity - the quantum phenomenon of zero electrical resistance and perfect diamagnetism. Understand why room-temperature superconductors would revolutionize technology and the quest to achieve them.

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🎯 시뮬레이터 팁

📚 용어집

Superconductivity
임계 온도 이하의 제로 저항 상태
MeissnerEffect
초전도체에서 자기장의 방출
CooperPairs
초전도성을 담당하는 쌍전자
CriticalTemperature
초전도가 발생하는 온도 이하
BCSTheory
Bardeen-Cooper-Schrieffer의 초전도 이론
Cuprates
구리 산화물 높은 Tc 초전도체
TypeI
완전 현장 추방을 갖춘 초전도체
TypeII
자속 소용돌이를 허용하는 초전도체
Hydrides
수소가 풍부한 고압 초전도체
SQUID
초전도 양자 간섭 장치

🏆 핵심 인물

Heike Kamerlingh Onnes

초전도성 발견(1911)

Bardeen, Cooper, Schrieffer

BCS 이론(노벨 1972)

Bednorz & Müller

High-Tc 초전도체(1987년 노벨상)

Paul Chu

YBCO(77K 이상 첫 번째)

💬 학습자에게

{'encouragement': "You're learning about one of physics' most remarkable phenomena and one of technology's most sought-after goals. Room-temperature superconductivity could change civilization.", 'reminder': 'The quest continues. Despite LK-99 not working out, researchers worldwide are still searching. The next breakthrough could come from anywhere.', 'action': 'Watch the Meissner effect in the simulator. See Cooper pairs form. Understand why this phenomenon is so special and why the quest continues.', 'dream': 'A physicist from Kenya might discover the key to room-temperature superconductivity. A materials scientist from Nigeria might synthesize the breakthrough material. This discovery will change everything.', 'wiaVision': 'WIA Pin Code believes understanding superconductivity should be global. The dream of lossless energy transmission could transform developing nations most of all.'}

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