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Nanoscience research modules for pre-service STEM teachers : core nanoscience concepts as a vehicle in STEM education / Clair T. Berube, Shawn T. Dash and Cindy Thomas-Charles.

EBSCOhost Academic eBook Collection (North America) Available online

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Format:
Book
Author/Creator:
Berube, Clair T., author.
Dash, Shawn T., 1980- author.
Thomas-Charles, Cindy, author.
Language:
English
Subjects (All):
Nanoscience--Study and teaching.
Nanoscience.
Science teachers--Training of.
Science teachers.
Physical Description:
1 online resource (78 pages)
Place of Publication:
Charlotte, North Crolina : Information Age Publishing Inc., [2019]
Summary:
STEM (science, technology, engineering and mathematics) is a fairly new concept in American education. As separate subjects, science and math have been around for a long time but have rarely been taught as a seamless unit of skills; rather as discreet content areas. This is not how the real world outside of the classroom functions however; in actual research laboratories scientists infuse their science with math, and their math with science, and along with technology and engineering they solve real life problems. In practice you cannot separate the various fields, as you need all of them in order to discover the underpinnings of the natural world, cure a disease, or solve a problem with the space rover. The American future depends on a scientifically literate workforce, armed with knowledge about the laws and theories of science, based on empirical facts instead of beliefs. In addition, there is a shortage of graduates in STEM related disciplines. Economic data show that 1 million additional STEM graduates will be needed over the next decade to fill America's economic demand. STEM based jobs are expected to grow 17% in the next 10 years, outpacing the overall job growth of 10%. If teachers across America were trained with fundamental and impending scientific concepts in their science-methods courses at the university level, scientific literacy can only dramatically improve. Nanoscience is one such concept; as it is multidisciplinary in nature and is regarded as the basis for innovated technologies in many fields. The authors of this book seek to provide pre-service and in-service science teachers with high-quality STEM modules, with which to create lesson plans and problem-based lessons to use in their future classrooms, both at the elementary and secondary level. Nanoscience was chosen since its applications reaches across virtually every scientific field; from biology to physics and for that matter all STEM domains.
Contents:
Foreword
Part 1. What is nanoscience?
Chapter 1. Need for stem
Chapter 2. Nanoscience: The unifying concept in stem
Chapter 3. Scope and purpose
Part 2. The background study
Chapter 4. Methodology
Chapter 5. Phase 1
Chapter 6. Phase 2
Chapter 7. Problem based learning (pbl) as a means to teach nanoscience to pre-service teachers
Chapter 8. Phase 1 timeline and date management
Part 3. The manual
Chapter 9. Nanoscience manual
Chapter 10. Phase 2
Part 4. Nanoscience in the classroom
Chapter 11. Introduction
Chapter 12. Module 1: Metric units and the nanoscale
Chapter 13. Module 2: Nanoscience and technology
Chapter 14. Module 3: Nanoproducts
Chapter 15. Module 4: Silver nanoparticles as an antimicrobial?
Chapter 16. Module 5: Zinc oxide,producing nanoparticles with an experiment on their use module
Chapter 17. Module 6: Nano-encapsulation
Chapter 18. Module 7: Nanoscience in nature: Build a beetle
Part 5. In the classroom
Chapter 19. Lesson planning
Chapter 20. Teaching to the objective
References
About the authors.
Notes:
Includes bibliographical references.
Print version record.
ISBN:
1-64113-554-9

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