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量子計算與量子資訊科學簡介(13-17 歲)

探索量子運算的創新領域,了解使這些新電腦成為可能的有趣的量子物理原理(例如糾纏和疊加)!我們還將討論傳統計算機和量子計算機之間的差異。
Quantum Physics for Kids
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4 現場會議
3 小時 20 分鐘 上課時間
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課堂經歷

Quantum Computing is an exciting new field being developed by scientists around the world. The U.S. National Science Foundation (NSF) recently released a list of key Quantum Computing concepts recommended for students in K-12 grades as preparation for this up-and-coming field. Incorporating the NSF recommendations, this 4-session course introduces students to the innovative approaches of quantum computing, while also comparing them to classical computing methods. Students will gain an understanding of both traditional computing concepts and newer quantum computing concepts through this course. Plus, they'll be introduced to intriguing and surprising quantum mechanics principles, including superposition and entanglement! 

This 4-session course explores the following topics:
Session 1:
In our first class, we'll discusses how classical computers work using transistors, electrical current (electrons) and on/off logic gates. We'll compare the classical binary bit (with a value of 0 or 1) to the new quantum computing qubit (quantum bit), which can hold a superposition of both 0 and 1. We'll discuss implications for computers and information tools of the future. 

Session 2:
Session 2 delves into the quantum mechanical property of superposition in more detail. We'll learn about the wave-particle duality of photons and review the double slit experiment, discussing the discovery that wave-particle duality actually applies to all quantum particles including protons, neutrons and electrons. We'll learn about the Shrodinger equation in a conceptual way, and how it predicts the wave function of quantum particles. In practical terms, we'll learn about how scientists are developing methods to isolate subatomic particles in a state of superposition for use in quantum computers. 

Session 3:
Session 3 explores the quantum mechanical property of entanglement. We'll learn that entanglement, a relationship between multiple qubits, is a key property of quantum systems. We'll also discuss possibilities for quantum communication to use entanglement to transfer quantum information, and we'll explore current experiments by scientists. 

Session 4:
Session 4 discusses measurement. Measurement produces the collapse of superpositioned qubits into a specific value. We'll discuss the Shrodinger's Cat metaphor and ways in which scientists are implementing measurement in working quantum computers. 
We'll end the course with a discussion of major questions, challenges and areas for further development in quantum computing and information science.
學習目標
Learners will be introduced to quantum computing and quantum information science concepts. Details of each session's learning goals are listed below: 

Session 1
Students will learn about:
- How classical computers work using transistors, electrical current (electrons) and on/off logic gates. 
- Comparison of the classical binary bit (with a value of 0 or 1) to the new quantum computing qubit (quantum bit), which can hold a superposition of both 0 and 1. 
- Possible advantages of quantum computers and quantum information tools for the future. 

Session 2
Students will learn about:
- The quantum mechanical property of superposition. 
- Wave-particle duality of photons and quantum particles, including protons, neutrons and electrons.
- The double slit experiment.
- Conceptual introduction to the Shrodinger equation and how it predicts the wave function of quantum particles. 
- How scientists are developing methods to isolate subatomic particles in a state of superposition for use in quantum computers. 

Session 3
Students will learn about:
- The quantum mechanical property of entanglement. 
- How entanglement, a relationship between multiple qubits, is a key property of quantum systems. 
- Possibilities for quantum communication to use entanglement to transfer quantum information.
- Exploration of current experiments with entanglement.

Session 4
Students will learn about:
- Measurement of quantum systems. 
- The Shrodinger's Cat metaphor and ways in which scientists are implementing measurement in working quantum computers. 
- The collapse of superpositioned qubits into a specified value. 
- Discussion of major questions, challenges and career possibilities in quantum computing and information science.
學習目標

其他詳情

供應清單
No required supplies, but the instructor will provide printable handouts for each class session.
外部資源
學習者無需使用標準 Outschool 工具以外的任何應用程式或網站。
已加入 June, 2020
4.9
1394評論
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教師專業知識和證書
We're dedicated to introducing young students to the amazing world of quantum physics, technological innovation and design! We've been offering STEAM (Science, Technology, Engineering, Art & Math) classes and creating educational materials for students of all ages for over 15 years. We're excited to share this course content with more students through Outschool. 

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現場團體小班課程
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US$64

用於 4 課程
每週1次,共 4 週
50 分鐘

有23 位學習者完成此課程
即時視訊會議
年齡: 13-18
5-12 每班學員人數

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