Theorems · Theorem · measure theory
MeasureTheory.VectorMeasure.setIntegral_map_equiv
∀ {X : Type u_2} {E : Type u_3} {F : Type u_4} {G : Type u_5} {mX : MeasurableSpace X} [inst : NormedAddCommGroup E]
[inst_1 : NormedAddCommGroup F] [inst_2 : NormedAddCommGroup G] {μ : MeasureTheory.VectorMeasure X F}
[inst_3 : NormedSpace ℝ E] [inst_4 : NormedSpace ℝ F] [inst_5 : NormedSpace ℝ G] {B : E →L[ℝ] F →L[ℝ] G}
{β : Type u_7} [inst_6 : MeasurableSpace β] {e : X ≃ᵐ β} {f : β → E} {s : Set β},
MeasurableSet s → ∫ᵛ (y : β) in s, f y ∂[B; μ.map ⇑e] = ∫ᵛ (x : X) in ⇑e ⁻¹' s, f (e x) ∂[B; μ]- Cited by
- 0 results in Mathlib
- Foundations
- Depth 252 from the axioms · uses propext, Classical.choice, Quot.sound
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Cites17
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- Setstatement and proof · cited by 53,352
- Realstatement and proof · cited by 25,697
- RingHom.idstatement and proof · cited by 18,349
- NormedAddCommGroupstatement and proof · cited by 15,752
- MeasurableSpacestatement and proof · cited by 13,106
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- ContinuousLinearMapstatement and proof · cited by 5,352
- Set.preimagestatement · cited by 4,946
- MeasurableSetstatement and proof · cited by 3,075
- MeasureTheory.VectorMeasurestatement and proof · cited by 451
- MeasurableEquivstatement and proof · cited by 269
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