Coincidence Is No Coincidence - A Thoughtful Science
Coincidence Is No Coincidence - A Thoughtful Science
Price subject to change. Tap below for current.
Couldn't load pickup availability
In this review of Coincidence Is No Coincidence the reviewer finds a book that bridges speculative parapsychology and mainstream physics for curious readers. It is best for people who want a quasi-scientific exploration of why coincidences feel meaningful and how they might relate to broader psi phenomena; the single biggest reason to read it is its effort to connect observable synchronicities to concepts from Quantum Mechanics and information fields in plain, readable prose. The author guides readers toward considering an atemporal informational substrate without demanding specialized training.
Key Features
- Parapsychological Framework: The book frames coincidences as manifestations of a larger psi paradigm, helping readers reinterpret surprising events as part of a coherent model.
- Interdisciplinary Links: It links ideas from quantum theory, relativity and chaos to propose a single informational field that underlies events.
- Accessible Analysis: The text presents a quasi-scientific analysis that aims to be approachable for nonexperts interested in the science behind strange events.
- Conceptual Model: Introduces the UltimaNet concept, an atemporal, aspacial informational energy field that stores details of occurrences across time.
- Focus on Sensitivity: Discusses how a sensitive individual in an altered state might tap into this field, offering a human-scale angle to the theory.
Who It's For
This book is well suited to readers interested in the overlap between fringe psychology and hard science, especially those who enjoy speculative connections between informational fields and physical theory. Philosophers of science, curious lay readers and students of anomalistic psychology will find thought-provoking ideas and a clear invitation to reframe coincidences.
It is less suitable for readers seeking rigorous empirical proofs, step-by-step experiments, or a textbook-level treatment of physics; those audiences should look to primary physics texts or peer-reviewed studies for exhaustive mathematical detail.
Pros & Cons
Pros
- Offers a coherent conceptual bridge between coincidences and established scientific theories, making complex ideas approachable.
- Presents the UltimaNet and psi ideas in language accessible to non-specialists, encouraging further inquiry.
- Stimulates interdisciplinary thinking by connecting relativity, chaos and superstring concepts to human experience.
Cons
- Not a substitute for formal scientific proof; the analysis is quasi-scientific and speculative rather than experimentally conclusive.
Specifications
| Title | Coincidence Is No Coincidence |
| Author | D.W. Zandee |
| Subject | Parapsychology and theoretical physics connections |
| Key Concepts | Coincidence, psi, UltimaNet, quantum mechanics, chaos, relativity, superstrings |
| Approach | Quasi-scientific analysis and conceptual synthesis |
| Intended Audience | Curious readers and interdisciplinary thinkers |
Our Verdict
Coincidence Is No Coincidence is a stimulating read for those who want to explore how synchronicities might fit into a larger informational framework; it offers good value for readers seeking ideas that bridge psi phenomena and modern physics without requiring specialist background.
Frequently Asked Questions
Does the book present scientific proof?
The book offers a quasi-scientific theoretical model rather than definitive experimental proof.
Who will enjoy this book most?
Readers interested in parapsychology, philosophy of science and interdisciplinary connections will find it most engaging.
Is prior physics knowledge required?
No, the author writes for nonexperts and introduces physics ideas in an accessible way.
Editor's Take
Coincidence Is No Coincidence is a stimulating, accessible exploration that connects coincidences and psi to quantum and informational theories; ideal for curious readers seeking interdisciplinary ideas rather than formal proof.

Recently viewed
Recently viewed products will appear here as customers browse the store.