Matches in Nanopublications for { ?s ?p ?o <https://w3id.org/np/RAyS9cLWE4ugfPEo0eqU-nYVAgQX7k--ix8DIIJtoQyPk/assertion>. }
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- Quantum%20linear%20regression%20algorithms%20can%20scale%20logarithmically%20with%20the%20number%20of%20observations%2C%20offering%20potential%20exponential%20speedup%20over%20classical%20methods. type AIDA-Sentence assertion.
- Quantum%20linear%20regression%20algorithms%20can%20scale%20logarithmically%20with%20the%20number%20of%20observations%2C%20offering%20potential%20exponential%20speedup%20over%20classical%20methods. isPartOf quantum-computing-applications-for-biodiversity-re assertion.
- Quantum%20linear%20regression%20algorithms%20can%20scale%20logarithmically%20with%20the%20number%20of%20observations%2C%20offering%20potential%20exponential%20speedup%20over%20classical%20methods. about Q10861030 assertion.
- Quantum%20linear%20regression%20algorithms%20can%20scale%20logarithmically%20with%20the%20number%20of%20observations%2C%20offering%20potential%20exponential%20speedup%20over%20classical%20methods. about Q17995793 assertion.
- Quantum%20linear%20regression%20algorithms%20can%20scale%20logarithmically%20with%20the%20number%20of%20observations%2C%20offering%20potential%20exponential%20speedup%20over%20classical%20methods. obtainsSupportFrom 2504.03866 assertion.