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That isn't thinking about it very deeply. Boolean algebra was useful in either case. When people who are working in Quantum Computing are overwhelmingly motivat
by ziaddotcom 8y ago
That isn't thinking about it very deeply. Boolean algebra was useful in either case. When people who are working in Quantum Computing are overwhelmingly motivated by the speed increases only possible with real quantum computers, if one never materializes, not that many people are going to be excited about algorithims for pretend quantum computers that run no faster than classical machines.
Furthermore, the bifurcation of computer science and electrical engineering hasn't been all that successful as an academic practice. UC Berkeley recently decided to leave the ABET accreditation process for EECS because they felt they can innovate on a better synthesis of the fields for the fields and students.
- wybiral 8y agoThey're related, but computer science has nothing to do with how electrons interact in different materials. Not that it isn't useful for people to know how the lower level components actually work. For that matter, people building the lower level components will also be more useful knowing how they're used in the abstract level. And similarly, studying QC in the theoretical form can also lead to discovery and understanding of quantum properties. Even if we have no fully-featured quantum computers.