File:Polynomial time hierarchy.svg: Difference between revisions
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Nonfiction: | Nonfiction: Commutative diagram equivalent to the [[Polynomial hierarchy (nonfiction)|polynomial time hierarchy]]. The arrows denote inclusion. | ||
== In the News == | |||
<gallery> | |||
</gallery> | |||
== Fiction cross-reference == | |||
* [[Crimes against mathematical constants]] | |||
* [[Gnomon algorithm]] | |||
* [[Gnomon Chronicles]] | |||
* [[Mathematician]] | |||
* [[Mathematics]] | |||
== Nonfiction cross-reference == | |||
* [[Analytical hierarchy (nonfiction)]] | |||
* [[Arithmetical hierarchy (nonfiction)]] | |||
* [[Complexity class (nonfiction)]] | |||
* [[Computation (nonfiction)]] | |||
* [[Computational complexity (nonfiction)]] | |||
* [[co-NP (nonfiction)]] | |||
* [[Exponential hierarchy (nonfiction)]] | |||
* [[EXPTIME (nonfiction)]] | |||
* [[Hierarchy (mathematics) (nonfiction)]] | |||
* [[Mathematical logic (nonfiction)]] | |||
* [[Mathematician (nonfiction)]] | |||
* [[Mathematics (nonfiction)]] | |||
* [[NP (complexity) (nonfiction)]] | |||
* [[Oracle machine (nonfiction)]] | |||
* [[P (complexity) (nonfiction)]] | |||
* [[Polynomial hierarchy (nonfiction)]] | |||
* [[Turing machine (nonfiction)]] | |||
External links: | |||
* [https://en.wikipedia.org/wiki/Polynomial_hierarchy Polynomial hierarchy] @ Wikipedia | |||
Attribution: By Self - Created in LaTeX by the following code: \documentclass{article}\thispagestyle{empty}\usepackage{amsmath}\usepackage{tikz}\usetikzlibrary{arrows}\begin{document}\begin{tikzpicture}[->, node distance=2cm, semithick]\node (P) {$\Delta_0^\text{P} =\Sigma_0^\text{P}$ = P = $\Pi_0^\text{P} = \Delta_1^\text{P}$};\node (Sigma1) [above left of=P] {NP = $\Sigma_1^\text{P}$ \hspace*{0.9cm}};\node (Pi1) [above right of=P] {\hspace*{1.2cm} $\Pi_1^\text{P}$ = coNP};\node (Delta2) [above left of=Pi1] {$\text{P}^\text{NP} = \Delta_2^\text{P}$};\node (Sigma2) [above left of=Delta2] {$\Sigma_2^\text{P}$};\node (Pi2) [above right of=Delta2] {$\Pi_2^\text{P}$};\node (Delta3) [above left of=Pi2] {$\Delta_3^\text{P}$};\node (Sigma3) [above left of=Delta3] {$\Sigma_3^\text{P}$};\node (Pi3) [above right of=Delta3] {$\Pi_3^\text{P}$};\node (dots) [above of=Delta3] {\vdots};\draw (P) -> (Sigma1);\draw (P) -> (Pi1);\draw (Sigma1) -> (Sigma2);\draw (Sigma1) -> (Delta2);\draw (Pi1) -> (Pi2);\draw (Pi1) -> (Delta2);\draw (Delta2) -> (Sigma2);\draw (Delta2) -> (Pi2);\draw (Sigma2) -> (Sigma3);\draw (Sigma2) -> (Delta3);\draw (Pi2) -> (Pi3);\draw (Pi2) -> (Delta3);\draw (Delta3) -> (Sigma3);\draw (Delta3) -> (Pi3);\end{tikzpicture}\end{document}, CC BY-SA 3.0, https://commons.wikimedia.org/w/index.php?curid=14535539 | |||
[[Category:Nonfiction (nonfiction)]] | |||
[[Category:Computation (nonfiction)]] | |||
[[Category:Computational complexity (nonfiction)]] | |||
[[Category:Computer science (nonfiction)]] | |||
[[Category:Mathematics (nonfiction)]] |
Latest revision as of 13:22, 1 September 2018
Nonfiction: Commutative diagram equivalent to the polynomial time hierarchy. The arrows denote inclusion.
In the News
Fiction cross-reference
Nonfiction cross-reference
- Analytical hierarchy (nonfiction)
- Arithmetical hierarchy (nonfiction)
- Complexity class (nonfiction)
- Computation (nonfiction)
- Computational complexity (nonfiction)
- co-NP (nonfiction)
- Exponential hierarchy (nonfiction)
- EXPTIME (nonfiction)
- Hierarchy (mathematics) (nonfiction)
- Mathematical logic (nonfiction)
- Mathematician (nonfiction)
- Mathematics (nonfiction)
- NP (complexity) (nonfiction)
- Oracle machine (nonfiction)
- P (complexity) (nonfiction)
- Polynomial hierarchy (nonfiction)
- Turing machine (nonfiction)
External links:
- Polynomial hierarchy @ Wikipedia
Attribution: By Self - Created in LaTeX by the following code: \documentclass{article}\thispagestyle{empty}\usepackage{amsmath}\usepackage{tikz}\usetikzlibrary{arrows}\begin{document}\begin{tikzpicture}[->, node distance=2cm, semithick]\node (P) {$\Delta_0^\text{P} =\Sigma_0^\text{P}$ = P = $\Pi_0^\text{P} = \Delta_1^\text{P}$};\node (Sigma1) [above left of=P] {NP = $\Sigma_1^\text{P}$ \hspace*{0.9cm}};\node (Pi1) [above right of=P] {\hspace*{1.2cm} $\Pi_1^\text{P}$ = coNP};\node (Delta2) [above left of=Pi1] {$\text{P}^\text{NP} = \Delta_2^\text{P}$};\node (Sigma2) [above left of=Delta2] {$\Sigma_2^\text{P}$};\node (Pi2) [above right of=Delta2] {$\Pi_2^\text{P}$};\node (Delta3) [above left of=Pi2] {$\Delta_3^\text{P}$};\node (Sigma3) [above left of=Delta3] {$\Sigma_3^\text{P}$};\node (Pi3) [above right of=Delta3] {$\Pi_3^\text{P}$};\node (dots) [above of=Delta3] {\vdots};\draw (P) -> (Sigma1);\draw (P) -> (Pi1);\draw (Sigma1) -> (Sigma2);\draw (Sigma1) -> (Delta2);\draw (Pi1) -> (Pi2);\draw (Pi1) -> (Delta2);\draw (Delta2) -> (Sigma2);\draw (Delta2) -> (Pi2);\draw (Sigma2) -> (Sigma3);\draw (Sigma2) -> (Delta3);\draw (Pi2) -> (Pi3);\draw (Pi2) -> (Delta3);\draw (Delta3) -> (Sigma3);\draw (Delta3) -> (Pi3);\end{tikzpicture}\end{document}, CC BY-SA 3.0, https://commons.wikimedia.org/w/index.php?curid=14535539
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