DPCM Capital Inc. (NYSE: XPOA) Gaining Recognition for Quantum Computing Products, Services [Video Edition]
The world may be on the cusp of a new generation of computing. Its name? Quantum computing. Much like its precursors, quantum computing doesn’t have a sole inventor or a single brand; it is the collective product of decades of work by many of the brightest minds in science and technology. The nascent industry is highly complex employing varied approaches to harness the power of quantum mechanics to solve challenges that classic computers simply cannot handle. A paradigm shift of computing may be coming, and it would have a far-reaching impact. Currently real, practical quantum computing applications are helping solve a myriad of business challenges. Hundreds of early quantum applications have been built attempting to address resource scheduling, mobility, logistics, drug-discovery, portfolio optimization and manufacturing processes. The world’s first commercial supplier of quantum computers, D-Wave Systems Inc. (“D-Wave”) is a leader in the development and delivery of quantum computing systems, software, and services and is the only company building both annealing quantum computers and gate-model quantum computers. D-Wave’s customers include more than two dozen of the Forbes Global 2000 companies, including Volkswagen, Accenture, NEC Corporation and Lockheed Martin. Of major interest is that D-Wave is working to complete a business combination transaction (Business Combination) with blank-check company DPCM Capital Inc. (NYSE: XPOA) (DPCM Capital Profile) to bring it public. In geekdom, D-Wave is already a household name, but as a public company, it is expected to gain even greater recognition for its products and services by helping to bring quantum computing into the mainstream. Other companies, such as Microsoft Corporation (NASDAQ: MSFT), Alphabet Inc. (NASDAQ: GOOGL), International Business Machines Corporation (NYSE: IBM) and Honeywell International Inc. (NASDAQ: HON), are also seeking to make significant contributions to quantum computing.
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