Then, you should probably take a class in the basics of quantum physics which will lay the foundation for you to understand quantum computing.
Ask HN: Resources to start learning about quantum computing?
31–40 of 55 posts
Re: Ask HN: Resources to start learning about quantum computing?
#32Re: Ask HN: Resources to start learning about quantum computing?
#33Re: Ask HN: Resources to start learning about quantum computing?
#34I really really loved Nielsen and Matushak's Quantum country. https://quantum.country There are two reasons I like it. There is no mumbo jumbo about polarising filters and "look how mysterious" it is. No. They concentrate on very simple linear algebra and work with it. Second, they make a convincing argument that when you memorise a bit of material, it makes it intuitive. So they incorporate spaced repetition to cont…
It's a good source if you know linear algebra. Beginners should know that there are no solutions to check your work.
Re: Ask HN: Resources to start learning about quantum computing?
#35if you're a comp-sci guy and just interested in understanding what it's all about Aaronson will be your favorite author: https://www.scottaaronson.com/barbados-2016.pdf
Re: Ask HN: Resources to start learning about quantum computing?
#36Re: Ask HN: Resources to start learning about quantum computing?
#37I'm a D-Wave employee, and our cloud service [1] is mature and available* today. You can sign up to get a free minute of QPU time (which turns out to be quite a lot; sampling a problem generally takes milliseconds of QPU time). Additional time is granted if you link your github account to your Leap account, and of course, you can pay for additional time. We've recently added an IDE [2], we've got tutorials [3] and Yo…
I did a research project on the competitive landscape on QC few years ago and at least then it was a huge topic.
What are your thoughts?
Re: Ask HN: Resources to start learning about quantum computing?
#38Re: Ask HN: Resources to start learning about quantum computing?
#39Re: Ask HN: Resources to start learning about quantum computing?
#40His quote: "90% of the understanding of the quantum circuit model is achieved by reviewing three purely 'classical' topics: classical Boolean circuits; reversible classical circuits; and randomized computation"