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Linnaeus University (Kalmar Växjö)

Introduction to Quantum Computing

Classical computers are based on bits, which are either 0 or 1. Quantum computers, on the other hand, use qubits, which can be both 0 and 1 simultaneously, thanks to a phenomenon called superposition. This allows quantum computers to process much more information at once. Another unique feature is entanglement, wher…

  • Higher education
  • Information unavailable
  • 31 August 2026
  • Information unavailable
  • Information unavailable
  • 50 %

Overview

Classical computers are based on bits, which are either 0 or 1. Quantum computers, on the other hand, use qubits, which can be both 0 and 1 simultaneously, thanks to a phenomenon called superposition. This allows quantum computers to process much more information at once. Another unique feature is entanglement, where qubits affect each other regardless of distance, enabling faster problem solving. In quantum computers, quantum gates like the Hadamard and Pauli gates are used to manipulate qubits. Algorithms such as Shor's factoring algorithm and Grover's search algorithm demonstrate quantum computers' ability to solve problems faster than classical computers. In fields like quantum chemistry, quantum computers can simulate molecules and calculate energies with high precision. Quantum cryptography and quantum teleportation open new doors for secure communication. The development of physical qubits — from ion traps to superconducting circuits — is ongoing, though challenges like decoherence, where qubits lose their quantum information, require advanced error-correction techniques. Recent advancements have improved the performance of quantum computers, and although the technology is still young, it is expected to soon revolutionize both science and industry.

Admission scores

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Entry requirements

General entry requirements for second­cycle studies and specific entry requirements: A bachelor in physics or engineering physics; or: a bachelor in chemistry, mathematics, or computer science with a good knowledge of basic quantum mechanics or equivalent. English 6

The text is reproduced from the Susa source. Antagningsdata does not map GY11 and GY25 or assess personal eligibility.

Source, measure and data quality
Source
Skolverket Susa-navet
Period
2026-08-31
Measure
Entry-requirement text reproduced from the published Susa data; no personal eligibility assessment is made.
Population
Education offering e.uoh.lnu.4fy590.u6968.20262
Last checked
2026-09-23T10:38:15.020499+00:00
Limitation
Antagningsdata does not map GY11 and GY25. General and specific conditions are not separated without structured source data.

Programme content

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  2. Programme or course ends

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About the provider

Linnaeus University (Kalmar Växjö)

Provider for the published education offering.

Sources and data quality

Education facts for the selected offering come from Skolverket Susa-navet.

Retrieved . Published . Times are shown in Swedish local time.

Source identity and publication version
Publication version
8e217193-f5fa-4778-b085-a4521fd03e8d
Education identity in the source
i.uoh.lnu.4fy590.u6968.20262
Offering identity in the source
e.uoh.lnu.4fy590.u6968.20262
Education-form source code
HS
Education code in the source
4FY590
Change time according to the source
2026-01-22T09:09:48

The provider, education and education offering are separate identities. Application information should be checked on the official website. Supplementary statistics have not been obtained from this source.