Media Summary: Error at 32:14*** I mistakenly claimed the Lindelöf Hypothesis implies "almost all zeros are on the critical line", but this is false! Error at 43:46** I said we can use Kronecker's theorem with some complication of linear independence, but this is misleading.

Zeta Explained 57 The Duality - Detailed Analysis & Overview

Error at 32:14*** I mistakenly claimed the Lindelöf Hypothesis implies "almost all zeros are on the critical line", but this is false! Error at 43:46** I said we can use Kronecker's theorem with some complication of linear independence, but this is misleading.

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Zeta Explained #57: The Duality of Primes and Zeta Zeros
Zeta Explained #86: Prime Progressions and L-Functions (Part 1)
Zeta Explained #87: Prime Progressions and L-Functions (Part 2)
Zeta Explained #25: The Lindelöf Hypothesis
Zeta Explained #55: S(T) and the Accuracy of the Riemann–von Mangoldt Formula
Zeta Explained #11: The Laurent Series of the Zeta Function at s=1
Zeta Explained #37: Zeta Can Get Close to Zero in Re(s) ≥ 1
Zeta Explained #47: The Truncated Explicit Formula for ψ(x)
Zeta Explained #35: Diophantine Approximation
Zeta Explained #85: Landau's Theorem on Dirichlet Series
Zeta Explained #07: Intro to Analytic Continuation
Zeta Explained #53: Zeta Gaps (Are ≤12)
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Zeta Explained #57: The Duality of Primes and Zeta Zeros

Zeta Explained #57: The Duality of Primes and Zeta Zeros

This is the

Zeta Explained #86: Prime Progressions and L-Functions (Part 1)

Zeta Explained #86: Prime Progressions and L-Functions (Part 1)

This is the 86th video in a series

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Zeta Explained #87: Prime Progressions and L-Functions (Part 2)

Zeta Explained #87: Prime Progressions and L-Functions (Part 2)

This is the 87th video in a series

Zeta Explained #25: The Lindelöf Hypothesis

Zeta Explained #25: The Lindelöf Hypothesis

Error at 32:14*** I mistakenly claimed the Lindelöf Hypothesis implies "almost all zeros are on the critical line", but this is false!

Zeta Explained #55: S(T) and the Accuracy of the Riemann–von Mangoldt Formula

Zeta Explained #55: S(T) and the Accuracy of the Riemann–von Mangoldt Formula

This is the 55th video in a series

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Zeta Explained #11: The Laurent Series of the Zeta Function at s=1

Zeta Explained #11: The Laurent Series of the Zeta Function at s=1

This is the 11th video in a series

Zeta Explained #37: Zeta Can Get Close to Zero in Re(s) ≥ 1

Zeta Explained #37: Zeta Can Get Close to Zero in Re(s) ≥ 1

This is the 37th video in a series

Zeta Explained #47: The Truncated Explicit Formula for ψ(x)

Zeta Explained #47: The Truncated Explicit Formula for ψ(x)

This is the 47th video in a series

Zeta Explained #35: Diophantine Approximation

Zeta Explained #35: Diophantine Approximation

Error at 43:46** I said we can use Kronecker's theorem with some complication of linear independence, but this is misleading.

Zeta Explained #85: Landau's Theorem on Dirichlet Series

Zeta Explained #85: Landau's Theorem on Dirichlet Series

This is the 85th video in a series

Zeta Explained #07: Intro to Analytic Continuation

Zeta Explained #07: Intro to Analytic Continuation

This is the seventh video in a series

Zeta Explained #53: Zeta Gaps (Are ≤12)

Zeta Explained #53: Zeta Gaps (Are ≤12)

This is the 53rd video in a series

Zeta Explained #46: Zeta at Zero

Zeta Explained #46: Zeta at Zero

This is the 46th video in a series