Lecture

ConcepTest design workshop, at Faculty of Agricultural Sciences, Pontificia Universidad Católica de Chile (Santiago, Chile), Thursday, January 14, 2016
In this workshop we will analyze the components of effective ConcepTest implementation and design. Participants will begin to design their own ConcepTests. At the end the workshop we will pilot a selected set of the newly designed ConcepTests with the participants.
Educating the Innovators of the 21st Century, at Education Summit 2016, Pontificia Universidad Católica de Chile (Santiago, Chile), Wednesday, January 13, 2016:
Can we teach innovation? Innovation requires whole-brain thinking — right-brain thinking for creativity and imagination, and left-brain thinking for planning and execution. Our current approach to education in science and technology, focuses on the transfer of information, developing mostly right-brain thinking by stressing copying and reproducing existing ideas rather than generating new ones. I will show how shifting the focus in lectures from delivering information to team work and creative thinking greatly improves the learning that takes place in the classroom and promotes independent... Read more about Educating the Innovators of the 21st Century
Confessions of a converted lecturer, at School of Medicine Pontificia Universidad Católica de Chile (Santiago, Chile), Wednesday, January 13, 2016:
I thought I was a good teacher until I discovered my students were just memorizing information rather than learning to understand the material. Who was to blame? The students? The material? I will explain how I came to the agonizing conclusion that the culprit was neither of these. It was my teaching that caused students to fail! I will show how I have adjusted my approach to teaching and how it has improved my students' performance significantly
Less is More: Extreme Optics with Zero Refractive Index, at Faculty of Physics Pontificia Universidad Católica de Chile (Santiago, Chile), Tuesday, January 12, 2016:
Nanotechnology has enabled the development of nanostructured composite materials (metamaterials) with exotic optical properties not found in nature. In the most extreme case, we can create materials which support light waves that propagate with infinite phase velocity, corresponding to a refractive index of zero. This zero index can only be achieved by simultaneously controlling the electric and magnetic resonances of the nanostructure. We present an in-plane metamaterial design consisting of silicon pillar arrays, embedded within a polymer matrix and sandwiched between gold layers. Using an... Read more about Less is More: Extreme Optics with Zero Refractive Index
The Tyranny of the Lecture, at Business School, Pontificia Universidad Católica de Chile (Santiago, Chile), Tuesday, January 12, 2016:
Most -- if not all -- of the important skills in our life are acquired outside the traditional classroom setting. Yet we continue to teach using lectures where students passively take down information. Instead, we should really focus on the assimilation of that information and shift the focus from teaching to helping students learn. Over the past 20 years, instructors world-wide have begun to adopt Peer Instruction to get students to think in class. With the advent of new technology the process can be significantly improved. A new data-analytics driven audience response system does away with... Read more about The Tyranny of the Lecture
Confessions of a converted lecturer, at Tucson Optics and Photonics Winter School, University of Arizona (Tucson, AZ), Friday, January 8, 2016:
I thought I was a good teacher until I discovered my students were just memorizing information rather than learning to understand the material. Who was to blame? The students? The material? I will explain how I came to the agonizing conclusion that the culprit was neither of these. It was my teaching that caused students to fail! I will show how I have adjusted my approach to teaching and how it has improved my students' performance significantly
Wrapping light around a hair, at Sichuan University (Chengdu, China), Tuesday, December 22, 2015:
Can light be guided by a fiber whose diameter is much smaller than the wavelength of the light? Can we mold the flow of light on the micrometer scale so it wraps, say, around a hair? Until recently the answer to these questions was "no". We developed a technique for drawing long, free-standing silica wires with diameters down to 50 nm that have a surface smoothness at the atomic level and a high uniformity of diameter. Light can be launched into these silica nanowires by optical evanescent coupling and the wires allow low-loss single-mode operation. They can be bent sharply, making it... Read more about Wrapping light around a hair
Assessment: The silent killer of learning, at Sichuan University (Chengdu, China), Monday, December 21, 2015:
Why is it that stellar students sometimes fail in the workplace while dropouts succeed? One reason is that most, if not all, of our current assessment practices are inauthentic. Just as the lecture focuses on the delivery of information to students, so does assessment often focus on having students regurgitate that same information back to the instructor. Consequently, assessment fails to focus on the skills that are relevant in life in the 21st century. Assessment has been called the "hidden curriculum" as it is an important driver of students' study habits. Unless we rethink our approach to... Read more about Assessment: The silent killer of learning
Less is More: Extreme Optics with Zero Refractive Index, at Sichuan University (Chengdu, China), Monday, December 21, 2015:
Nanotechnology has enabled the development of nanostructured composite materials (metamaterials) with exotic optical properties not found in nature. In the most extreme case, we can create materials which support light waves that propagate with infinite phase velocity, corresponding to a refractive index of zero. This zero index can only be achieved by simultaneously controlling the electric and magnetic resonances of the nanostructure. We present an in-plane metamaterial design consisting of silicon pillar arrays, embedded within a polymer matrix and sandwiched between gold layers. Using an... Read more about Less is More: Extreme Optics with Zero Refractive Index
On-chip zero-index metamaterialse, at Peking University (Beijing, China), Friday, December 18, 2015:
Nanotechnology has enabled the development of nanostructured composite materials (metamaterials) with exotic optical properties not found in nature. In the most extreme case, we can create materials which support light waves that propagate with infinite phase velocity, corresponding to a refractive index of zero. This zero index can only be achieved by simultaneously controlling the electric and magnetic resonances of the nanostructure. We present an in-plane metamaterial design consisting of silicon pillar arrays, embedded within a polymer matrix and sandwiched between gold layers. Using an... Read more about On-chip zero-index metamaterialse

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