Radin Dardashti
Biographic Data
| ID | 1290897 |
|---|---|
| NAME | Radin Dardashti |
| GIVEN NAMES | Radin |
| FAMILY NAME | Dardashti |
| SIGNATURE | DARDASHTI R |
| AFFILIATIONS | University of Wuppertal |
| ORCID | 0000-0002-7205-6893 |
| VERIFIED | Yes |
| TOTAL WORKS | 4 |
| TOTAL CITATIONS | 22 |
| AUTHOR COUNT | 4 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2017 |
| LATEST PUBLICATION YEAR | 2025 |
| H-INDEX | 2 |
The life cycle of scientific principles—a template for characterizing physical principles
Scientific principles can undergo various developments. While philosophers of science have acknowledged that such changes occur, there is no systematic account of the development of scientific principles. Here we propose a template for analyzing the development of scientific principles called the ‘life cycle’ of principles. It includes a series of processes that principles can go through: prehistory, elevation, formalization, generalization, and …
No-go theorems: What are they good for
Hawking radiation and analogue experiments: A Bayesian analysis
Confirmation via Analogue Simulation: What Dumb Holes Could Tell Us about Gravity
In this article we argue for the existence of ‘analogue simulation’ as a novel form of scientific inference with the potential to be confirmatory. This notion is distinct from the modes of analogical reasoning detailed in the literature, and draws inspiration from fluid dynamical ‘dumb hole’ analogues to gravitational black holes. For that case, which is considered in detail, we defend the claim that the phenomena of gravitational Hawking radiati…
Confirmation via Analogue Simulation: What Dumb Holes Could Tell Us about Gravity
In this article we argue for the existence of ‘analogue simulation’ as a novel form of scientific inference with the potential to be confirmatory. This notion is distinct from the modes of analogical reasoning detailed in the literature, and draws inspiration from fluid dynamical ‘dumb hole’ analogues to gravitational black holes. For that case, which is considered in detail, we defend the claim that the phenomena of gravitational Hawking radiati…
No-go theorems: What are they good for
Confirmation via Analogue Simulation: What Dumb Holes Could Tell Us about Gravity
In this article we argue for the existence of ‘analogue simulation’ as a novel form of scientific inference with the potential to be confirmatory. This notion is distinct from the modes of analogical reasoning detailed in the literature, and draws inspiration from fluid dynamical ‘dumb hole’ analogues to gravitational black holes. For that case, which is considered in detail, we defend the claim that the phenomena of gravitational Hawking radiati…
Hawking radiation and analogue experiments: A Bayesian analysis
No-go theorems: What are they good for
The life cycle of scientific principles—a template for characterizing physical principles
Scientific principles can undergo various developments. While philosophers of science have acknowledged that such changes occur, there is no systematic account of the development of scientific principles. Here we propose a template for analyzing the development of scientific principles called the ‘life cycle’ of principles. It includes a series of processes that principles can go through: prehistory, elevation, formalization, generalization, and …
Quantum Mechanics and Applications (4 works) · Epistemology (3 works) · Philosophy (3 works) · Physics (3 works) · Cosmology and Gravitation Theories (2 works) · Philosophy of science (2 works) · Quantum Electrodynamics and Casimir Effect (2 works) · Quantum mechanics (2 works) · Relativity and Gravitational Theory (2 works) · Theoretical physics (2 works)