Theorems · Theorem · real analysis
aemeasurable_lineDeriv_uncurry
∀ {𝕜 : Type u_1} [inst : NontriviallyNormedField 𝕜] [LocallyCompactSpace 𝕜] {E : Type u_2}
[inst_2 : NormedAddCommGroup E] [inst_3 : NormedSpace 𝕜 E] [inst_4 : MeasurableSpace E] [OpensMeasurableSpace E]
{F : Type u_3} [inst_6 : NormedAddCommGroup F] [inst_7 : NormedSpace 𝕜 F] [CompleteSpace F] {f : E → F}
[SecondCountableTopology E] [inst_10 : MeasurableSpace F] [BorelSpace F],
Continuous f → ∀ (μ : MeasureTheory.Measure (E × E)), AEMeasurable (fun p => lineDeriv 𝕜 f p.1 p.2) μ- Cited by
- 0 results in Mathlib
- Foundations
- Depth 188 from the axioms · uses propext, Classical.choice, Quot.sound
Around this declaration
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Cites15
Mathlib declarations this one mentions in its statement or cites explicitly in its proof. Plumbing is filtered out.
- NormedAddCommGroupstatement and proof · cited by 15,752
- MeasurableSpacestatement and proof · cited by 13,106
- NormedSpacestatement and proof · cited by 12,499
- MeasureTheory.Measurestatement and proof · cited by 10,939
- NontriviallyNormedFieldstatement and proof · cited by 8,742
- Continuousstatement and proof · cited by 2,592
- CompleteSpacestatement and proof · cited by 2,532
- BorelSpacestatement and proof · cited by 1,602
- AEMeasurablestatement · cited by 840
- SecondCountableTopologystatement and proof · cited by 750
- OpensMeasurableSpacestatement and proof · cited by 636
- LocallyCompactSpacestatement and proof · cited by 324
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