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Titlebook: Summability of Multi-Dimensional Fourier Series and Hardy Spaces; Ferenc Weisz Book 2002 Springer Science+Business Media B.V. 2002 Fourier

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楼主: 万灵药
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Summability of Multi-Dimensional Fourier Series and Hardy Spaces
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Summability of Multi-Dimensional Fourier Series and Hardy Spaces978-94-017-3183-6
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Multi-Dimensional Dyadic Hardy Spaces, martingale Hardy spaces are investigated in Garsia [83], Neveu [138], Dellacherie and Meyer [54, 55], Long [124] and Weisz [216]. With the help of the Brownian motion one can find a strong connection between these two types of Hardy spaces (see Durrett [60] and Bass [4]).
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unctions. On the basis of Burkholder‘s scientific achievements the mar­ tingale theory can perfectly well be applied in complex analysis and in the theory of classical Hardy spaces. This connection is the main point of Durrett‘s book [60]. The martingale theory can also be well applied in stochastic
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Book 2002On the basis of Burkholder‘s scientific achievements the mar­ tingale theory can perfectly well be applied in complex analysis and in the theory of classical Hardy spaces. This connection is the main point of Durrett‘s book [60]. The martingale theory can also be well applied in stochastics and math
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Multi-Dimensional Classical Hardy Spaces,pter 1, the various characterizations of the Hardy spaces are not proved. For these characterizations see the very nice and good books and papers of Duren [59], Stein [193, 194], Stein and Weiss [192], Lu [125], Uchiyama [205], Fefferman and Stein [67], Chang and Fefferman [33, 31, 71, 73] as well a
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Spline and Ciesielski Systems,vAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn% hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr% 4rNCHbWexLMBbXgBd9gzLbvyNv2CaeHbl7mZLdGeaGqiVu0Je9sqqr% pepC0xbbL8F4rqqrFfpeea0xe9Lq-Jc9vqaqpepm0xbba9pwe9Q8fs% 0-yqaqpepae9pg0FirpepeKkFr0xfr-xfr-xb9adbaqaaeGaciGaai% aabeqaamaabaabauaakeaacaWGObWaa0baaSqa
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autonomous sailboat robot is a boat that only uses the wind on its sail as propelling force, without remote control or human assistance to achieve its mission. This involves autonomy in energy (using batteries, solar panels, turbines...), sensor data processing (compass, GPS, wind sensor...), actua
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Ferenc Weiszystem for robotic applications. This combines both, the robustness of CAN and the accessibility of Arduino software. The architecture is developed here to improve a Navigational Assistance System, which was initially created for disabled people. The system is composed of Arduino compatible boards, w
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