CCG140: Finding Bipartite Graphs Using Grover’s Quantum Search Algorithm

CCG140: Finding Bipartite Graphs Using Grover’s Quantum Search Algorithm

Finding Bipartite Graphs Using Grover’s Quantum Search Algorithm Narges Eghbali Computational Cosmology Group, Department of Physics, Shahid Beheshti University Tuesday, 30 May 2023, 16:30 IRDT Conference room, 3rd floor, Physics department, Shahid Beheshti Universityhttps://meet.google.com/qbh-icfn-dzf

CCG138: Classification of self-similar data according to Hurst exponent by classical and quantum machine learning

CCG138: Classification of self-similar data according to Hurst exponent by classical and quantum machine learning

Classification of self-similar data according to Hurst exponent by classical and quantum machine learning Anahid Kiani Computational Cosmology Group, Department of Physics, Shahid Beheshti University Tuesday, 19 May 2023, 16:30 IRDT Conference room, 3rd floor, Physics department, Shahid Beheshti Universityhttps://meet.google.com/ven-icfn-osd

CCG136: Data analysis with sinusoid of unknown amplitude in known Gaussian noise

CCG136: Data analysis with sinusoid of unknown amplitude in known Gaussian noise

Data analysis with sinusoid of unknown amplitude in known Gaussian noise Mohammad Al-Akhras Computational Cosmology Group, Department of Physics, Shahid Beheshti University Tuesday, 25 April 2023, 16:30 IRDT Conference room, 3rd floor, Physics department, Shahid Beheshti Universityhttps://meet.google.com/ven-avdb-boy

CCG134: Super Resolution and Deep Learning in Satellite Imaging

CCG134: Super Resolution and Deep Learning in Satellite Imaging

Super Resolution and Deep Learning in Satellite Imaging Omid Choopanian Computational Cosmology Group, Department of Physics, Shahid Beheshti University Tuesday, 4 April 2023, 16:30 IRDT Conference room, 3rd floor, Physics department, Shahid Beheshti Universityhttps://meet.google.com/ven-avdb-boy

CCG133: Accurate Characterization of the Stochastic Gravitational Wave Background With Pulsar Timing Arrays by Likelihood Reweighting

CCG133: Accurate Characterization of the Stochastic Gravitational Wave Background With Pulsar Timing Arrays by Likelihood Reweighting

Accurate Characterization of the Stochastic Gravitational Wave Background With Pulsar Timing Arrays by Likelihood Reweighting Mohammad Al-AkhrasComputational Cosmology Group, Department of Physics, Shahid Beheshti University Tuesday, 17 February 2023, 16:30 IRDT Conference room, 3rd floor, Physics department, Shahid Beheshti Universityhttps://meet.google.com/ven-avdb-boy