Since its inception in the 1980s and early proof of principle for hardware in the 2000s, quantum computing has made tremendous strides. Despite the fact that the technology is still in the process of being developed, there are a number of people who believe that machines known as Noisy Intermediate Scale Quantum (NISQ) could soon outperform conventional computers. This is the result of the rapid development of hardware connected to quantum computing as well as the significant financial expenditures that have been made in many countries all over the world. In this chapter, a deep review on various applications of quantum computing is conducted.

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Machine Learning and the Internet of Things for Industrial Process Improvement

  • Shailaja Salagrama,
  • Amit Garg,
  • J. Logeshwaran,
  • Satpal Singh Kushwaha,
  • Rajan Kumar

摘要

Since its inception in the 1980s and early proof of principle for hardware in the 2000s, quantum computing has made tremendous strides. Despite the fact that the technology is still in the process of being developed, there are a number of people who believe that machines known as Noisy Intermediate Scale Quantum (NISQ) could soon outperform conventional computers. This is the result of the rapid development of hardware connected to quantum computing as well as the significant financial expenditures that have been made in many countries all over the world. In this chapter, a deep review on various applications of quantum computing is conducted.