Fabric samples are headed to the International Space Station for resiliency testing; possible applications include cosmic dust detectors or spacesuit smart skins. The course begins with the introduction of basic concepts in quantum mechanics needed to understand quantum computing. But, there is also substantial work that we can and should do beyond the Institute. Tiny microRNAs help destroy unwanted messenger RNAs in cells. Being taught by MIT researchers who are genuinely passionate about the quantum computing allowed me to also get super excited about technology, coding, and the future. MIT alumnus Amir Karamlou '18, MEng '18, who recently led the week-long summer camp, is currently a second-year graduate research fellow with EQuS at MIT. An overwhelming majority of the students indicated that attending this camp increased their interest in quantum computing, and that they want to learn more about quantum computing in the future. During the week, the students coded and executed over 1,000 quantum circuits on actual quantum hardware available through IBM Quantum’s cloud platform. The Coding School nonprofit is committed to empowering minorities in STEM (students of color, women, students with disabilities, and students from lower socioeconomic status). Francisca Vasconcelos graduated from MIT this year, with a bachelor's degree in electrical engineering and computer science and in physics, and will be studying statistical science at Oxford University this fall as a Rhodes scholar. “Teaching this camp challenged me to think about many of the concepts that I use on a daily basis from a whole new perspective, which helped me a lot as well,” says Karamlou. I thank Anand Srinivasan for suggesting quantum computing as a topic for a math enrichment course. August 10, 2020. MIT International Science & Technology Initiatives (MISTI), “As a Latin American student, I don’t have a lot of opportunities to learn topics like quantum computing or quantum mechanics. The technology has advanced considerably since my freshman year at MIT; learners now have access to real quantum processors through the cloud and can learn by running small-scale quantum programs in real-time.”, Francisca Vasconcelos of the Engineering Quantum Systems Group. An all-online format with live instruction by MIT researchers, the program is open to high school students around the United States and worldwide. MIT is among nine universities selected as part of a program sponsored by the DoE to support science-based modeling and simulation and exascale computing technologies. Sophomore year, she began volunteering for The Coding School, improving the “Intro to Python” curriculum. What's SSUP? Massachusetts Institute of Technology77 Massachusetts Avenue, Cambridge, MA, USA. I have felt a lot of times in my life like I wasn't good enough at STEM to pursue it in the future and this camp helped me to realize this is false. To achieve these ends, they have partnered with MIT’s Center for Quantum Engineering, which supports the development of a U.S. quantum workforce through a range of fellowship programs, educational curriculum development, and quantum-related research activities at MIT. Being taught by MIT researchers who are genuinely passionate about the quantum computing allowed me to also get super excited about technology, coding, and the future. That being said, it is challenging to make broadly accessible such interdisciplinary content, which most students would otherwise only see late in undergraduate or even graduate school. Our group developed a course, “Quantum Computing as a High School Module,” which is available on the open-access archive arXiv and also forms part of The Quantum Daily’s QC101 page. I vividly remember the excitement of learning about quantum computation from my freshman advisor, and would like to distill the same enthusiasm in the next generation of scientists and engineers. Vasconcelos has since been leading the development of the year-long “Intro to Quantum Computing” course for high schoolers, which will launch this fall. The camp had approximately 300 participants from 18 countries and 30 states, 70 percent of whom are from underrepresented backgrounds. The educational initiative is also sponsored by Google AI and IBM Quantum. The camp got me much more interested in quantum, and I hope to study it more intensively in the future.”. “Qubit by Qubit” introduces high school students to quantum computing through a week-long summer camp and a year-long course. Quantum computing has the potential to change the world as we know it, yet limited K-12 educational resources on quantum computing exist. This first-of-its-kind initiative, playfully named “Qubit by Qubit,” aims to introduce high school students to quantum computing through two programs: a week-long summer camp and a year-long course, led respectively by Amir Karamlou and Francisca Vasconcelos of the MIT Research Laboratory of Electronics (RLE)’s Engineering Quantum Systems (EQuS) research group. The Sample, Simulate, Update cognitive model developed by MIT researchers learns to use tools like humans do. Capturing and building on this enthusiasm is why that CQE wholeheartedly supported the EQuS students and The Coding School. "I still remember when I first heard about a quantum computer in high school, via a YouTube video, and was absolutely amazed. An all-online format with live instruction by MIT researchers, the program is open to high school students around the United States and worldwide. Instilling the highly nonintuitive concepts of quantum mechanics in young people will help motivate and prepare them for quantum-related education at university. High school students in the Los Angeles area and beyond will soon be able to study up on quantum computing thanks to a partnership between The Coding School and several physicists from the Massachusetts Institute of Technology. Previous image. “The most exciting part of teaching this camp is that we get to introduce quantum mechanics and quantum computing to many students for the first time!," Karamlou says. Capturing and building on this enthusiasm is why that CQE wholeheartedly supported the EQuS students and The Coding School. “Giant atoms” enable quantum processing and communication in one, Newly observed phenomenon could lead to new quantum devices, Five MIT students named 2020 Rhodes Scholars, Helping K-12 students overcome school closures, More about MIT News at Massachusetts Institute of Technology, Abdul Latif Jameel Poverty Action Lab (J-PAL), Picower Institute for Learning and Memory, School of Humanities, Arts, and Social Sciences, View all news coverage of MIT in the media, Department of Electrical Engineering and Computer Science, Electrical Engineering & Computer Science (eecs), 3 Questions: Using fabric to “listen” to space dust, How humans use objects in novel ways to solve problems, Second annual MIT Science Bowl Invitational takes virtual format, Center to advance predictive simulation research established at MIT Schwarzman College of Computing, Six MIT faculty elected 2020 AAAS Fellows, “As a Latin American student, I don’t have a lot of opportunities to learn topics like quantum computing or quantum mechanics.
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