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Sam Sanders
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2020 – today
- 2025
- [j28]Dag Normann, Sam Sanders:
On the logical and computational properties of the Vitali covering theorem. Ann. Pure Appl. Log. 176(1): 103505 (2025) - 2024
- [j27]Sam Sanders:
Exploring the abyss in Kleene's computability theory. Comput. 13(2): 113-134 (2024) - [j26]Dag Normann, Sam Sanders:
On robust theorems due to Bolzano, Weierstrass, Jordan, and Cantor. J. Symb. Log. 89(3): 1077-1127 (2024) - [c17]Sam Sanders:
On the Computational Properties of Weak Continuity Notions. CiE 2024: 113-125 - [i9]Dag Normann, Sam Sanders:
On some computational properties of open sets. CoRR abs/2401.09053 (2024) - 2023
- [c16]Sam Sanders:
The Non-normal Abyss in Kleene's Computability Theory. CiE 2023: 37-49 - [i8]Sam Sanders:
The non-normal abyss in Kleene's computability theory. CoRR abs/2302.07066 (2023) - [i7]Sam Sanders:
Exploring the abyss in Kleene's computability theory. CoRR abs/2308.07438 (2023) - 2022
- [j25]Sam Sanders:
Countable sets versus sets that are countable in reverse mathematics. Comput. 11(1): 9-39 (2022) - [j24]Sam Sanders:
Lifting proofs from countable to uncountable mathematics. Inf. Comput. 287: 104762 (2022) - [j23]Dag Normann, Sam Sanders:
On the Uncountability of ℝ R. J. Symb. Log. 87(4): 1474-1521 (2022) - [j22]Dag Normann, Sam Sanders:
On the computational properties of basic mathematical notions. J. Log. Comput. 32(8): 1747-1795 (2022) - [c15]Sam Sanders:
Reverse Mathematics of the Uncountability of ℝ. CiE 2022: 272-286 - [c14]Dag Normann, Sam Sanders:
Betwixt Turing and Kleene. LFCS 2022: 236-252 - [c13]Sam Sanders:
Between Turing and Kleene. LFCS 2022: 281-300 - [c12]Sam Sanders:
On the Computational Properties of the Uncountability of the Real Numbers. WoLLIC 2022: 362-377 - [i6]Dag Normann, Sam Sanders:
On the computational properties of basic mathematical notions. CoRR abs/2203.05250 (2022) - [i5]Sam Sanders:
On the computational properties of the uncountability of the real numbers. CoRR abs/2206.12721 (2022) - 2021
- [j21]Sam Sanders:
Nets and reverse mathematics. Comput. 10(1): 31-62 (2021) - [j20]Dag Normann, Sam Sanders:
The Axiom of Choice in computability theory and Reverse Mathematics with a cameo for the Continuum Hypothesis. J. Log. Comput. 31(1): 297-325 (2021) - [c11]Sam Sanders:
Splittings and Robustness for the Heine-Borel Theorem. CiE 2021: 395-406 - [i4]Dag Normann, Sam Sanders:
Betwixt Turing and Kleene. CoRR abs/2109.01352 (2021) - 2020
- [j19]Dag Normann, Sam Sanders:
Pincherle's theorem in reverse mathematics and computability theory. Ann. Pure Appl. Log. 171(5): 102788 (2020) - [j18]Sam Sanders:
The unreasonable effectiveness of Nonstandard Analysis. J. Log. Comput. 30(1): 459-524 (2020) - [j17]Dag Normann, Sam Sanders:
Open sets in computability theory and reverse mathematics. J. Log. Comput. 30(8): 1639-1679 (2020) - [j16]Sam Sanders:
Splittings and Disjunctions in Reverse Mathematics. Notre Dame J. Formal Log. 61(1): 51-74 (2020) - [j15]Sam Sanders:
Reverse formalism 16. Synth. 197(2): 497-544 (2020) - [c10]Sam Sanders:
Lifting Recursive Counterexamples to Higher-Order Arithmetic. LFCS 2020: 249-267
2010 – 2019
- 2019
- [j14]Benno van den Berg, Sam Sanders:
Reverse Mathematics and parameter-free Transfer. Ann. Pure Appl. Log. 170(3): 273-296 (2019) - [j13]Sam Sanders:
A note on non-classical nonstandard arithmetic. Ann. Pure Appl. Log. 170(4): 427-445 (2019) - [j12]Dag Normann, Sam Sanders:
The strength of compactness in Computability Theory and Nonstandard Analysis. Ann. Pure Appl. Log. 170(11) (2019) - [j11]Dag Normann, Sam Sanders:
On the mathematical and foundational significance of the uncountable. J. Math. Log. 19(1): 1950001:1-1950001:40 (2019) - [j10]Dag Normann, Sam Sanders:
Computability Theory, Nonstandard Analysis, and their Connections. J. Symb. Log. 84(4): 1422-1465 (2019) - [c9]Sam Sanders:
Nets and Reverse Mathematics - Some Initial Results. CiE 2019: 253-264 - [c8]Sam Sanders:
Reverse Mathematics and Computability Theory of Domain Theory. WoLLIC 2019: 550-568 - [i3]Sam Sanders:
Nets and Reverse Mathematics, a pilot study. CoRR abs/1905.04058 (2019) - [i2]Sam Sanders:
Lifting recursive counterexamples to higher-order arithmetic. CoRR abs/1908.05677 (2019) - 2018
- [j9]Sam Sanders:
The Gandy-Hyland functional and a computational aspect of Nonstandard Analysis. Comput. 7(1): 7-43 (2018) - [j8]Sam Sanders:
Refining the Taming of the Reverse Mathematics Zoo. Notre Dame J. Formal Log. 59(4): 579-597 (2018) - [c7]Sam Sanders:
Some Nonstandard Equivalences in Reverse Mathematics. CiE 2018: 365-375 - [c6]Sam Sanders:
Metastability and Higher-Order Computability. LFCS 2018: 309-330 - 2017
- [j7]Sam Sanders:
Grilliot's trick in Nonstandard Analysis. Log. Methods Comput. Sci. 13(4) (2017) - [c5]Sam Sanders, Chris Barrick, Frederick W. Maier, Khaled Rasheed:
Solar Radiation Prediction Improvement Using Weather Forecasts. ICMLA 2017: 499-504 - [c4]Sam Sanders:
From Nonstandard Analysis to Various Flavours of Computability Theory. TAMC 2017: 556-570 - [i1]Sam Sanders:
Grilliot's trick in Nonstandard Analysis. CoRR abs/1706.06663 (2017) - 2016
- [c3]Kristina Liefke, Sam Sanders:
A Computable Solution to Partee's Temperature Puzzle. LACL 2016: 175-190 - [c2]Sam Sanders:
The computational content of Nonstandard Analysis. CL&C 2016: 24-40 - 2013
- [j6]Sam Sanders:
Reverse-engineering Reverse Mathematics. Ann. Pure Appl. Log. 164(5): 528-541 (2013) - 2012
- [j5]Sam Sanders, Keita Yokoyama:
The Dirac delta function in two settings of Reverse Mathematics. Arch. Math. Log. 51(1-2): 99-121 (2012) - [c1]Sam Sanders:
Algorithm and proof as Ω-invariance and transfer: A new model of computation in nonstandard analysis. DCM 2012: 97-109 - 2011
- [j4]Sam Sanders:
ERNA and Friedman's Reverse Mathematics. J. Symb. Log. 76(2): 637-664 (2011) - 2010
- [j3]Sam Sanders:
More infinity for a better finitism. Ann. Pure Appl. Log. 161(12): 1525-1540 (2010) - [j2]Sam Sanders:
Relative arithmetic. Math. Log. Q. 56(6): 564-572 (2010)
2000 – 2009
- 2008
- [j1]Chris Impens, Sam Sanders:
Transfer and a supremum principle for ERNA. J. Symb. Log. 73(2): 689-710 (2008)
Coauthor Index
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