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所在平台: Udemy |
课程主页: https://www.udemy.com/course/robotic-space-exploration/
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课程名称:机器人太空探索 课程概述:本课程旨在探索人类太空探索的灵感来源,重点研究空间机器人如何去往人类无法到达的地方,并能更长时间地进行探索。我们在太阳系的众多发现,得益于机器人技术的发展。机器人以超出人类承受能力的速度旅行,不需要水、热量或食物,它们只需工作。本课程将探讨我们发送到太阳系的各种机器人使者以及它们为我们带来的意想不到的发现。 课程包含附加课程: 1. 什么是天文学? 2. 小课:日食 3. 小课:流星雨 4. 小课:极光 5. 阿尔忒弥斯计划:美国重返月球 主要内容包括: 1. 机器人工程的目标 2. 热身活动 3. 术语词汇表 4. 机器人探索的定义及特点 5. 机器人在社会和流行文化中的应用 6. 使用机器人进行太空探索的优缺点 7. 人类航天器与机器人航天器的比较 8. 人类飞行的危险与挑战 9. 探索的必要性 10. 当前在太阳系的机器人任务 11. 多级火箭 12. 航天飞机 13. 飞掠任务 14. 燃料节省 15. 中国的月球观测 16. 对彗星的研究 17. 确定轨道器 18. 火星的长期观察 19. 空气制动减速及第一运动定律 20. 太阳能的长期供电和储能 21. 大距离通信 22. 环土星的卡西尼轨道器 23. 着陆器及其挑战 24. 早期金星着陆 25. 月球着陆器 26. 彗星着陆:菲莱着陆器 27. 火星探测车的长途旅行 28. 自我维护及通信技术 29. 穿透器的功能 30. 天文台的作用 31. 通信工具的功能 32. 大气飞行器的功能及其研究 33. 水星、金星、火星的情况概述 34. 未来的火星、金星任务 35. 运用“引力助推”法进行太空旅行 36. 离开太阳系的任务:旅行者与先锋系列 结尾部分还包括测试题和跨学科活动等,旨在巩固学生对机器人太空探索的理解与应用。
We are inspired by human space exploration, but these space robots can go places humans could never go - and for longer periods of time. Much of the exploration we've accomplished in the solar system is because of our ability to make robots and send them to explore. They travel as speeds humans could not endure, they don't need water, heat or food and they don't need to be entertained - they just work. Explore the many different kinds of robot emissaries we've sent into the solar system and what unexpected discoveries they've made for us.This Course includes the following great BONUS LESSONS:What on Earth is Astronomy?Mini-Lesson: EclipsesMini-Lesson: Meteor ShowersMini-Lesson: AuroraProject Artemis: America Returns to the MoonRobotic Space Exploration1. Objective2. Warm-up activities3. Glossary of terms4. Definition and characteristics of robotic exploring5. Robots in society and popular culture6. Advantages and disadvantages of space exploration using robotic craft7. Comparing and contrasting human and robotic spacecraft and exploration8. The dangers and challenges of manned space flight9. Why we explore10. Current robotic missions throughout the Solar SystemTypes of robotic missions and their applications in the Solar System11. Multistage rockets12. The space shuttleFlyby13. Fuel savings14. Chinese Moon observations15. Studying cometsOrbiters16. Long-term observations of Mars, including the Reconnaissance Orbiter17. Deceleration using air breaking and the first law of motion18. Long-term power from the Sun and power storage19. Communicating over large distances20. Cassini orbiter around SaturnLanders21. Landing techniques and challenges using rockets, airbags and parachutes22. Early Venus landings by the Soviet's Venera23. Venus Express24. Early Moon landers: Luna and Ranger25. Landing on a comet: the Philae landerRovers26. Entry, decent and landing27. Landers delivering rovers28. Sojourner and Opportunity rovers on Mars29. Distance limits, self-maintenance, energy and communication techniques30. Escaping from the landers after deliveryPenetrators31. Penetrator form and function32. Moon penetrator LCROSS looking for water33. Martian penetratorsObservatories34. Earth and Sun orbiting craft, including the Hubble Space Telescope and Spitzer35. Advantages and disadvantages of observatories orbiting the Sun and EarthCommunication Craft36. Primary functions37. Deep-space communication systems and Solar System explorationAtmospheric Craft38. Function of atmospheric crafts39. Atmospheric studies done on Jupiter, Venus, Mars and Saturn's moon Titan40. Detailed explanation of Huygens probe on Titan41. Multiple-category crafts42. Terrestrial planetsMercury43. Brief description of Mercury44. History of crafts to Mercury, including Mariner series45. Current crafts studying the planet46. Future missions to Mercury, including BepiColomboVenus47. Brief description of Venus48. History of crafts to Venus, including Venera and Mariner series49. Future missions to VenusMars50. Brief description of Mars51. History of crafts to Mars52. Communication delays with robots on Mars53. Current crafts studying the planet and their durations54. Future missions to Mars55. Space travel using the "Gravity Assist" method - description of the physics and practical application56. Crafts leaving the Solar System: Voyager and Pioneer series57. Test questions58. Cross-curricular activities