Degree project
Thu 16 June
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Degree project
Thursday 2016-06-16, 10:00 - 11:00
Location: Room 32, House 5, Kräftriket, Department of Mathematics, Stockholm University
2016-06-16T10:00:00.000+02:00 2016-06-16T11:00:00.000+02:00 Erik Vesterlund: Security Aspects of Bitcoin (Degree project) Room 32, House 5, Kräftriket, Department of Mathematics, Stockholm University (KTH, Stockholm, Sweden)Erik Vesterlund: Security Aspects of Bitcoin (Degree project) -
Degree project
Thursday 2016-06-16, 11:00 - 12:00
Location: Room 32, House 5, Kräftriket, Department of Mathematics, Stockholm University
2016-06-16T11:00:00.000+02:00 2016-06-16T12:00:00.000+02:00 Amelie Schenström: The GGH Encryption Scheme - A Lattice-Based Cryptosystem (Degree project) Room 32, House 5, Kräftriket, Department of Mathematics, Stockholm University (KTH, Stockholm, Sweden)Amelie Schenström: The GGH Encryption Scheme - A Lattice-Based Cryptosystem (Degree project) -
Degree project
Thursday 2016-06-16, 13:00 - 14:00
Location: Room 32, House 5, Kräftriket, Department of Mathematics, Stockholm University
2016-06-16T13:00:00.000+02:00 2016-06-16T14:00:00.000+02:00 Anton Fahlgren: Wavelets on Z_n (Degree project) Room 32, House 5, Kräftriket, Department of Mathematics, Stockholm University (KTH, Stockholm, Sweden)Anton Fahlgren: Wavelets on Z_n (Degree project) -
Degree project
Thursday 2016-06-16, 14:00 - 15:00
Location: Room 32, House 5, Kräftriket, Department of Mathematics, Stockholm University
2016-06-16T14:00:00.000+02:00 2016-06-16T15:00:00.000+02:00 Jenny Arthur: Gaussiska primtal och andra prima faktorer (Degree project) Room 32, House 5, Kräftriket, Department of Mathematics, Stockholm University (KTH, Stockholm, Sweden)Jenny Arthur: Gaussiska primtal och andra prima faktorer (Degree project) -
Degree project
Thursday 2016-06-16, 15:00 - 16:00
Location: Room 32, House 5, Kräftriket, Department of Mathematics, Stockholm University
2016-06-16T15:00:00.000+02:00 2016-06-16T16:00:00.000+02:00 Åsa Olausson: Olika sätt att lösa den diofantiska ekvationen x^2−dy^2=1 , kallad Pells ekvation (Degree project) Room 32, House 5, Kräftriket, Department of Mathematics, Stockholm University (KTH, Stockholm, Sweden)Åsa Olausson: Olika sätt att lösa den diofantiska ekvationen x^2−dy^2=1 , kallad Pells ekvation (Degree project)