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#RSA’s demise from #quantum attacks is very much exaggerated, expert says.
Specifically, quantum #algorithms are created on conventional computers and tested on #quantum computers to ensure viability.
Among the current #applications of quantum cloud computing are those related to #quantum algorithm testing.
One #significant benefit is that it allows organizations to access the power of #quantum computing without purchasing their own machine and cooling systems.
For example, large-scale #quantum cloud computing platforms can be used to solve problems related to #optimization in logistics and scheduling of resources in a business context.
Physical quantum #computers are very complex, making cloud-based access an ideal setup for those needing to harness the power of #quantum computing without purchasing their own machine.
IBM’s Osprey #quantum computer, for example, features 433 qubits. The company #reportedly plans to scale up to 4,000 qubits by 2025.
It provides #quantum computers for users to access quantum-enabled services and #solutions through the cloud.
Quantum cloud #computing, on the other hand, derives from #quantum computing — a form of computing that uses quantum mechanics principles to solve complex problems.
This means that #quantum computing could enable an attack on a #blockchain network using cryptography.
Cloud-based #quantum computers function at greater speeds, with higher computing power than #conventional computers
#Borderless Capital backs cultural heritage platform #Quantum Temple
#UK's #quantum #computing sector is flourishing after the early #investment
Dead and alive at the same time: Black holes have quantum properties