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1 Early Work in Gibbs Differentiation in China |
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1 | (64) |
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1.1 Research in Butzer-Gibbs Calculus in China - A glance of p-type calculus |
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2 | (3) |
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3 | (2) |
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1.2 The Generalized Logical Derivative and Its Applications |
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5 | (10) |
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5 | (2) |
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1.2.2 The p-adic Logical Derivatives |
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7 | (4) |
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1.2.3 Bernstein Type Inequality and Bernstein Type Theorem |
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11 | (3) |
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14 | (1) |
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1.3 The Generalized Walsh Transform and An Extremum Problem |
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15 | (18) |
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15 | (1) |
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1.3.2 Properties of WN-type functions |
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16 | (2) |
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1.3.3 The Descent Order of WN-type Functions |
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18 | (5) |
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1.3.4 p-adic Logic Derivatives |
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23 | (1) |
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24 | (1) |
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1.3.6 Adjoint logic derivative |
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25 | (2) |
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1.3.7 A Class of Extremum Problems |
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27 | (5) |
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32 | (1) |
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1.4 The Logical Derivatives and Integrals-Zheng Weixing, Su Weiyi |
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33 | (16) |
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33 | (1) |
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1.4.2 Notation and important results |
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34 | (2) |
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1.4.3 p-adic derivatives and integrals of functions in LqG, 1 ≤ q ≤ 2 |
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36 | (12) |
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48 | (1) |
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1.5 The Logical Derivatives and Integrals Second Part |
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49 | (16) |
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2 Gibbs-Butzer Calculus and Pseudo-differential Operators on Local Fields |
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65 | (28) |
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65 | (1) |
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66 | (1) |
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2.3 G-B type derivative and G-B type integrals |
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67 | (8) |
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2.4 Function Spaces on Local Fields |
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75 | (4) |
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2.5 A Comparison of Newton calculus with G-B calculus |
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79 | (3) |
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2.6 Applications of Gibbs-Butzer-type Calculus |
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82 | (11) |
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2.6.1 Application to Approximation Theory on Local Fields |
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82 | (1) |
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2.6.2 Application to determine function space for which a function belongs to it |
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83 | (1) |
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2.6.3 Application to partial differential equations with fractal boundaries |
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84 | (5) |
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2.6.4 Application to medical science |
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89 | (1) |
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90 | (3) |
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3 Early Work in Dyadic Differentiation in Soviet Union - SSSR |
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93 | (32) |
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3.1 Interest in Dyadic Differentiation in Soviet Union |
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93 | (32) |
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4 Research in Dyadic Differentiation in Russia |
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125 | (6) |
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128 | (3) |
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5 Generalized Derivatives and Integrals on Vilenkin Groups |
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131 | (14) |
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5.1 A. The case of compact groups |
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131 | (6) |
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5.2 B. The case of locally compact groups |
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137 | (8) |
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141 | (4) |
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6 Calculus on Walsh and Vilenkin Groups |
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145 | (12) |
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145 | (3) |
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6.2 Results related to Vilenkin systems |
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148 | (3) |
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6.3 Results related to representative product systems |
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151 | (1) |
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6.4 Results related to Walsh-Kaczmarz systems |
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152 | (1) |
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6.5 Results related to two-dimensional Walsh-Paley systems |
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153 | (4) |
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155 | (2) |
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7 Gibbs Derivatives on Groups |
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157 | (12) |
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157 | (2) |
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159 | (2) |
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7.3 Gibbs Derivatives on Finite Non-Abelian Groups |
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161 | (4) |
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7.4 Summary and Recent Work |
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165 | (4) |
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166 | (3) |
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8 My Research in Gibbs Derivatives on Finite Groups |
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169 | (42) |
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171 | (40) |
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9 Efficient Computation of Gibbs Derivatives on Finite Abelian Groups |
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211 | (66) |
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211 | (1) |
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9.2 Definitions of Gibbs Derivatives on Finite Abelian Groups |
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212 | (2) |
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214 | (1) |
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9.4 Fast Fourier Transform on Finite Abelian Groups |
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215 | (2) |
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9.5 Gibbs Derivatives on Finite Abelian Groups |
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217 | (2) |
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9.6 Computing the Gibbs Derivatives on Finite Abelian Groups |
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219 | (1) |
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9.6.1 Convolution-like algorithm |
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219 | (1) |
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9.6.2 Computing in terms of partial Gibbs derivatives |
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219 | (1) |
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9.7 GPGPU Computing Platform |
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220 | (2) |
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9.8 Mapping the Algorithms to GPGPU Architecture |
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222 | (1) |
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223 | (54) |
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227 | (50) |
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10 Gibbs Derivative and Walsh Harmonizable DSP |
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277 | (20) |
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277 | (1) |
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10.2 Q-loop and dyadic time |
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277 | (2) |
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10.3 Gibbs derivative and Walsh functions |
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279 | (2) |
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279 | (1) |
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280 | (1) |
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10.4 Dyadic system and dyadic flow |
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281 | (1) |
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10.5 Dyadic stationary process |
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282 | (4) |
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10.5.1 DSP in strict sense |
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282 | (1) |
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10.5.2 DSP in wide sense and its W-harmonizability |
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283 | (1) |
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10.5.3 Walsh harmonizability of DSP |
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284 | (1) |
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285 | (1) |
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10.5.5 Walsh Series and Approximation of DSP |
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286 | (1) |
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10.6 Gibbs Differentiation of DSP |
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286 | (2) |
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10.6.1 Gibbs Differentiability Conditions |
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287 | (1) |
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10.6.2 A Linear Gibbs Differential Equation |
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287 | (1) |
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10.7 Extensions and Comments |
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288 | (9) |
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10.7.1 Chrestenson functions |
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289 | (3) |
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10.7.2 A p-adic SP and C-harmonaizability |
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292 | (1) |
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10.7.3 W-Harmonizable and C-Harmonizable DSPs |
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293 | (1) |
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293 | (1) |
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294 | (3) |
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11 My Involvement in Gibbs Derivatives and Walsh Harmonizable Processes |
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297 | (28) |
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297 | (1) |
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11.0.2 Walsh Harmonizable DSP |
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298 | (1) |
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298 | (1) |
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11.0.4 Walsh Series and Approximation of DSP |
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299 | (1) |
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11.0.5 Gibbs Differentiability of DSP |
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300 | (1) |
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11.0.6 A Linear Gibbs Differential Equation |
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301 | (1) |
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11.0.7 Extensions and Comments |
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302 | (1) |
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302 | (23) |
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12 Open Problems in Theory and Applications of Dyadic Derivatives |
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325 | (8) |
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326 | (1) |
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327 | (1) |
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328 | (1) |
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329 | (1) |
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12.2 The one-dimensional dyadic derivative |
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330 | (3) |
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332 | (1) |
List of Publications on Dyadic Differentiation by the Authors of the Book |
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333 | (14) |
Index |
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347 | (4) |
Biographies of Authors |
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351 | |