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Immersive Virtual Learning Environments for Nano Science Education: A Paradigm Shift

机译:面向纳米科学教育的沉浸式虚拟学习环境:范式转变

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Advances in microscopy and optical lenses have opened a 'window to nature' that allows us to see how the building blocks of our world interact at the atomic level. This scale of science encompasses all the sciences and demands collaboration between physics, chemistry, biology, engineering and information technology, as wells as the talents of simulation and modeling software technicians. Career paths are expanding exponentially with each passing year of new discoveries but guidance counselors at the high school level are still uninformed about the nano scale of science. They need to be included in the teacher training sessions in order to advise students on the subjects required to enter a university and excel in the integrated fields of science and math. All future STEM careers will require an expanded knowledge base in the various applications of nanotechnology for manufacturing. Foreign students are much better prepared for entry into the university level of learning as they are required to master three mathematic and three science courses per year throughout the high school curriculum while United States National Standards only require one math and one science course per year throughout high school.
机译:显微镜和光学镜片的进步打开了一个“自然之窗”,使我们能够了解世界各个组成部分如何在原子水平上相互作用。这种科学规模涵盖了所有科学领域,需要物理学,化学,生物学,工程学和信息技术以及仿真和建模软件技术人才之间的协作。随着新发现的逐年增加,职业道路呈指数增长,但高中阶段的指导顾问仍未掌握纳米科学的知识。它们需要被包括在教师培训课程中,以便为学生提供入读大学所需的专业知识并在科学和数学的综合领域中脱颖而出。所有未来的STEM事业都将需要在制造纳米技术的各种应用中扩展知识基础。外国学生为进入大学学习做好了充分的准备,因为他们需要在整个高中课程中每年学习三门数学和三门科学课程,而美国国家标准在整个高中课程中每年只需要一门数学和一门科学课程学校。

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