Technology-Enabled Blended Learning Experiences for Chemistry Education and Outreach
Editat de Fun Man Fung, Christoph Zimmermannen Limba Engleză Paperback – 5 iul 2021
Case studies supplement the information presented, providing the reader with practicable examples and applications of covered theories and technologies. Drawing on the broad experiences and unique insights of a global team of authors from a whole host of different backgrounds, the book aims to stimulate readers’ creativity and inspire them to find their own novel applications of the techniques highlighted in this volume.
- Provides detailed information on the theoretical background of technology usage in chemistry education, including discussions of augmented and virtual reality
- Helps readers understand available options and make informed decisions on how to best utilize technology to enhance their chemistry teaching using concepts surrounding blended learning
- Presents examples of theory in practice through case studies that detail completed implementations from around the world
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Specificații
ISBN-13: 9780128228791
ISBN-10: 0128228792
Pagini: 212
Ilustrații: Approx. 100 illustrations
Dimensiuni: 191 x 235 x 16 mm
Greutate: 0.38 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0128228792
Pagini: 212
Ilustrații: Approx. 100 illustrations
Dimensiuni: 191 x 235 x 16 mm
Greutate: 0.38 kg
Editura: ELSEVIER SCIENCE
Cuprins
Section 1: Foundations in technology-enabled blended learning experiences 1. Theoretical background on technology-enabled learning from an instructional designer’s point of view 2. Utilizing the power of blended learning through varied presentation styles of lightboard videos
Section 2: Curriculum design, implementation, and evaluation, outreach 3. Using mobile phone applications to teach and learn organic chemistry 4. Interactive and innovative practices to stimulate learning processes in biochemistry 5. The design of blended learning experiences for clean data to allow proper observation of student participation 6. Adopting a flipped classroom to teach and learn SciFinder in an undergraduate chemistry laboratory course 7. Using an NMR software as an instructional tool in elucidating organic structures Section 3: Case Studies 8. Flipped chemistry in multisite IVC courses: A possible model for the future of virtual chemistry education 9. An accessible method of delivering timely personalized feedback to large student cohorts 10. Applying NuPOV to support students’ three-dimensional visualization skills 11. A review of immersive learning technologies featured at EDUCAUSE annual conferences: Evolution since 2016
Section 2: Curriculum design, implementation, and evaluation, outreach 3. Using mobile phone applications to teach and learn organic chemistry 4. Interactive and innovative practices to stimulate learning processes in biochemistry 5. The design of blended learning experiences for clean data to allow proper observation of student participation 6. Adopting a flipped classroom to teach and learn SciFinder in an undergraduate chemistry laboratory course 7. Using an NMR software as an instructional tool in elucidating organic structures Section 3: Case Studies 8. Flipped chemistry in multisite IVC courses: A possible model for the future of virtual chemistry education 9. An accessible method of delivering timely personalized feedback to large student cohorts 10. Applying NuPOV to support students’ three-dimensional visualization skills 11. A review of immersive learning technologies featured at EDUCAUSE annual conferences: Evolution since 2016