proposition 17.10 Smoothness and coefficient decay

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proposition 17.10: Smoothness and coefficient decay17.10definition 17.1: Fourier coefficients and Fourier series17.1equation 7.28: eq:ana-parts7.28lemma 17.7: Riemann–Lebesgue17.7corollary 17.11: Uniform convergence for C^1 functions17.11proof : ch:15-fourier-integral-transforms@proof-8proofdefinition 17.25: Multiple Fourier series17.25lemma 17.6: Dirichlet kernel17.6lemma 17.2: Orthogonality of the harmonics17.2lemma 17.15: A polynomial whose partial sum spikes at the origin17.15proposition 17.4: Least squares and Bessel's inequality17.4proposition 17.86: The DFT is exact for a band-limited periodic signal17.86proposition 17.16: An explicit continuous function with a divergent Fourier series17.16theorem 17.3: Euler–Fourier coefficient formulas17.3theorem 17.47: Poisson summation17.47theorem 17.80: Sampling theorem17.80lemma A.193: A cosine integralA.193lemma A.172: DirichletA.172proposition 17.73: Initial- and final-value theorems17.73proposition 17.74: Derivative rule17.74proposition 17.30: Elementary properties17.30proposition 10.84: Consistency10.84theorem 17.66: Half-plane of convergence17.66definition 7.39: Darboux sums and the definite integral7.39corollary 17.8: Localisation17.8theorem 17.9: Dirichlet17.9proof : ch:15-fourier-integral-transforms@proof-5proofproof : ch:15-fourier-integral-transforms@proof-9proof

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typedirectionnode provenancewhere
depends_on Fourier coefficients and Fourier series declared parts/02-mathematical-methods/15-fourier-integral-transforms.tex:472
depends_on eq:ana-parts declared parts/02-mathematical-methods/15-fourier-integral-transforms.tex:472
depends_on Riemann–Lebesgue declared parts/02-mathematical-methods/15-fourier-integral-transforms.tex:472
depends_on Uniform convergence for $C^{1}$ functions declared parts/02-mathematical-methods/15-fourier-integral-transforms.tex:502
proves ch:15-fourier-integral-transforms@proof-8 declared parts/02-mathematical-methods/15-fourier-integral-transforms.tex:475