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Edité par Polaris Qci Publishing 3/14/2025, 2025
ISBN 10 : 1961880091 ISBN 13 : 9781961880092
Langue: anglais
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Ajouter au panierPaperback or Softback. Etat : New. Mathematical Foundations of Quantum Computing: A Scaffolding Approach. Book.
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Edité par Polaris Qci Publishing 3/14/2025, 2025
ISBN 10 : 1961880105 ISBN 13 : 9781961880108
Langue: anglais
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Ajouter au panierHardback or Cased Book. Etat : New. Mathematical Foundations of Quantum Computing: A Scaffolding Approach. Book.
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Ajouter au panierPaperback. Etat : Brand New. 572 pages. 7.00x1.29x10.00 inches. In Stock.
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Ajouter au panierPaperback. Etat : new. Paperback. Essential Mathematics for Quantum ComputingThis focused guide connects key mathematical principles with their specialized applications in quantum computing, equipping students with the essential tools to succeed in this transformative field. It is ideal for educators, students, and self-learners seeking a strong mathematical foundation to master quantum mechanics and quantum algorithms.FeaturesCovers key mathematical concepts, including matrix algebra, probability, and Dirac notation, tailored for quantum computing.Explains essential topics like tensor products, matrix decompositions, Hermitian and unitary matrices, and their roles in quantum transformations.Offers a streamlined introduction to foundational math topics for quantum computing, with an emphasis on accessibility and application.AuthorsDr. Peter Y. Lee (Ph.D., Princeton University) - Expert in quantum nanostructures with extensive experience in teaching and academic program leadership.James M. Yu (Ph.D., Rutgers University) - Expert in mathematical modeling, applied mathematics, and quantum computing, with extensive teaching experience.Dr. Ran Cheng (Ph.D., University of Texas at Austin) - Specialist in condensed matter theory and an award-winning physicist. This guide offers a clear pathway to mastering quantum computing, integrating fundamental concepts, gate operations, entanglement, and advanced algorithms with a practical, illustrative approach. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability.
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Ajouter au panierHardcover. Etat : Brand New. 574 pages. 7.00x1.25x10.00 inches. In Stock.
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Ajouter au panierPaperback. Etat : new. Paperback. Essential Mathematics for Quantum ComputingThis focused guide connects key mathematical principles with their specialized applications in quantum computing, equipping students with the essential tools to succeed in this transformative field. It is ideal for educators, students, and self-learners seeking a strong mathematical foundation to master quantum mechanics and quantum algorithms.FeaturesCovers key mathematical concepts, including matrix algebra, probability, and Dirac notation, tailored for quantum computing.Explains essential topics like tensor products, matrix decompositions, Hermitian and unitary matrices, and their roles in quantum transformations.Offers a streamlined introduction to foundational math topics for quantum computing, with an emphasis on accessibility and application.AuthorsDr. Peter Y. Lee (Ph.D., Princeton University) - Expert in quantum nanostructures with extensive experience in teaching and academic program leadership.James M. Yu (Ph.D., Rutgers University) - Expert in mathematical modeling, applied mathematics, and quantum computing, with extensive teaching experience.Dr. Ran Cheng (Ph.D., University of Texas at Austin) - Specialist in condensed matter theory and an award-winning physicist. This guide offers a clear pathway to mastering quantum computing, integrating fundamental concepts, gate operations, entanglement, and advanced algorithms with a practical, illustrative approach. This item is printed on demand. Shipping may be from multiple locations in the US or from the UK, depending on stock availability.
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Ajouter au panierHardcover. Etat : new. Hardcover. Essential Mathematics for Quantum ComputingThis focused guide connects key mathematical principles with their specialized applications in quantum computing, equipping students with the essential tools to succeed in this transformative field. It is ideal for educators, students, and self-learners seeking a strong mathematical foundation to master quantum mechanics and quantum algorithms.FeaturesCovers key mathematical concepts, including matrix algebra, probability, and Dirac notation, tailored for quantum computing.Explains essential topics like tensor products, matrix decompositions, Hermitian and unitary matrices, and their roles in quantum transformations.Offers a streamlined introduction to foundational math topics for quantum computing, with an emphasis on accessibility and application.AuthorsDr. Peter Y. Lee (Ph.D., Princeton University) - Expert in quantum nanostructures with extensive experience in teaching and academic program leadership.James M. Yu (Ph.D., Rutgers University) - Expert in mathematical modeling, applied mathematics, and quantum computing, with extensive teaching experience.Dr. Ran Cheng (Ph.D., University of Texas at Austin) - Specialist in condensed matter theory and an award-winning physicist. This guide offers a clear pathway to mastering quantum computing, integrating fundamental concepts, gate operations, entanglement, and advanced algorithms with a practical, illustrative approach. This item is printed on demand. Shipping may be from multiple locations in the US or from the UK, depending on stock availability.
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Ajouter au panierPAP. Etat : New. New Book. Shipped from UK. THIS BOOK IS PRINTED ON DEMAND. Established seller since 2000.
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Ajouter au panierPAP. Etat : New. New Book. Delivered from our UK warehouse in 4 to 14 business days. THIS BOOK IS PRINTED ON DEMAND. Established seller since 2000.
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Edité par Polaris Qci Publishing Mär 2025, 2025
ISBN 10 : 1961880091 ISBN 13 : 9781961880092
Langue: anglais
Vendeur : BuchWeltWeit Ludwig Meier e.K., Bergisch Gladbach, Allemagne
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Ajouter au panierTaschenbuch. Etat : Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Essential Mathematics for Quantum ComputingThis focused guide connects key mathematical principles with their specialized applications in quantum computing, equipping students with the essential tools to succeed in this transformative field. It is ideal for educators, students, and self-learners seeking a strong mathematical foundation to master quantum mechanics and quantum algorithms.FeaturesCovers key mathematical concepts, including matrix algebra, probability, and Dirac notation, tailored for quantum computing.Explains essential topics like tensor products, matrix decompositions, Hermitian and unitary matrices, and their roles in quantum transformations.Offers a streamlined introduction to foundational math topics for quantum computing, with an emphasis on accessibility and application.AuthorsDr. Peter Y. Lee (Ph.D., Princeton University) - Expert in quantum nanostructures with extensive experience in teaching and academic program leadership.James M. Yu (Ph.D., Rutgers University) - Expert in mathematical modeling, applied mathematics, and quantum computing, with extensive teaching experience.Dr. Ran Cheng (Ph.D., University of Texas at Austin) - Specialist in condensed matter theory and an award-winning physicist. 574 pp. Englisch.
Vendeur : THE SAINT BOOKSTORE, Southport, Royaume-Uni
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Ajouter au panierEtat : New. This item is printed on demand. New copy - Usually dispatched within 5-9 working days.
Edité par Polaris QCI Publishing Mär 2025, 2025
ISBN 10 : 1961880105 ISBN 13 : 9781961880108
Langue: anglais
Vendeur : BuchWeltWeit Ludwig Meier e.K., Bergisch Gladbach, Allemagne
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Ajouter au panierBuch. Etat : Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Essential Mathematics for Quantum ComputingThis focused guide connects key mathematical principles with their specialized applications in quantum computing, equipping students with the essential tools to succeed in this transformative field. It is ideal for educators, students, and self-learners seeking a strong mathematical foundation to master quantum mechanics and quantum algorithms.FeaturesCovers key mathematical concepts, including matrix algebra, probability, and Dirac notation, tailored for quantum computing.Explains essential topics like tensor products, matrix decompositions, Hermitian and unitary matrices, and their roles in quantum transformations.Offers a streamlined introduction to foundational math topics for quantum computing, with an emphasis on accessibility and application.AuthorsDr. Peter Y. Lee (Ph.D., Princeton University) - Expert in quantum nanostructures with extensive experience in teaching and academic program leadership.James M. Yu (Ph.D., Rutgers University) - Expert in mathematical modeling, applied mathematics, and quantum computing, with extensive teaching experience.Dr. Ran Cheng (Ph.D., University of Texas at Austin) - Specialist in condensed matter theory and an award-winning physicist. 570 pp. Englisch.
Vendeur : CitiRetail, Stevenage, Royaume-Uni
EUR 53,48
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Ajouter au panierPaperback. Etat : new. Paperback. Essential Mathematics for Quantum ComputingThis focused guide connects key mathematical principles with their specialized applications in quantum computing, equipping students with the essential tools to succeed in this transformative field. It is ideal for educators, students, and self-learners seeking a strong mathematical foundation to master quantum mechanics and quantum algorithms.FeaturesCovers key mathematical concepts, including matrix algebra, probability, and Dirac notation, tailored for quantum computing.Explains essential topics like tensor products, matrix decompositions, Hermitian and unitary matrices, and their roles in quantum transformations.Offers a streamlined introduction to foundational math topics for quantum computing, with an emphasis on accessibility and application.AuthorsDr. Peter Y. Lee (Ph.D., Princeton University) - Expert in quantum nanostructures with extensive experience in teaching and academic program leadership.James M. Yu (Ph.D., Rutgers University) - Expert in mathematical modeling, applied mathematics, and quantum computing, with extensive teaching experience.Dr. Ran Cheng (Ph.D., University of Texas at Austin) - Specialist in condensed matter theory and an award-winning physicist. This guide offers a clear pathway to mastering quantum computing, integrating fundamental concepts, gate operations, entanglement, and advanced algorithms with a practical, illustrative approach. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability.