proposition A.246 Bounded Borel functional calculus

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proposition A.246: Bounded Borel functional calculusA.246proposition A.243: Continuous functional calculusA.243proposition A.245: The measures μ_x,yA.245theorem 12.46: Riesz representation12.46proposition A.262: Spectral theorem for an unbounded self-adjoint operatorA.262proposition A.261: Spectral theorem for a unitary operatorA.261proof : app:A-long-proofs@proof-150proofproposition A.241: The polynomial calculus is isometricA.241proposition 12.61: Uniqueness of the continuous functional calculus12.61theorem A.242: Stone–Weierstrass; quotedA.242definition A.248: Cyclic vector and cyclic subspaceA.248proof : app:A-long-proofs@proof-148prooftheorem A.244: Riesz–Markov; quotedA.244lemma A.249: The cyclic caseA.249proof : app:A-long-proofs@proof-149proofdefinition 12.45: Continuous linear functional; the dual12.45theorem 12.18: Projection theorem12.18corollary 12.47: H is its own dual, antilinearly12.47lemma A.247: Integration against a projection-valued measureA.247theorem 12.38: Existence and uniqueness of the adjoint12.38proof : ch:10-hilbert-spaces@proof-24prooflemma A.260: Cayley transform of a self-adjoint operatorA.260proposition A.280: Direct-integral form of the spectral theoremA.280proof : app:A-long-proofs@proof-165proofproposition 12.52: Neumann series; the spectrum is bounded12.52theorem A.238: Spectral theorem, both formsA.238proof : app:A-long-proofs@proof-164proof

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typedirectionnode provenancewhere
depends_on Continuous functional calculus declared appendices/A-long-proofs.tex:12237
depends_on The measures $\mu_{x,y}$ declared appendices/A-long-proofs.tex:12237
depends_on Riesz representation declared appendices/A-long-proofs.tex:12237
depends_on Spectral theorem for an unbounded self-adjoint operator declared appendices/A-long-proofs.tex:13036
depends_on Spectral theorem for a unitary operator declared appendices/A-long-proofs.tex:12972
proves app:A-long-proofs@proof-150 declared appendices/A-long-proofs.tex:12241