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Models for Physics of the Very Small and Very Large (2016)

Models for Physics of the Very Small and Very Large

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"Models for Physics of the Very Small and Very Large" by Thomas J. Buckholtz is a mathematics book and learning resource focused on Deep Sky & Solar System. Best for teachers, students, and readers looking for stronger mathematical understanding.

This monograph tackles three challenges. First, show a mathematics-based meta-model that matches known elementary particles. Second, apply models, based on the meta-model, to match other known physics data. Third, predict future physics data. The math features solutions to isotropic pairs of isotropic quantum harmonic oscillators. This monograph matches some solutions to known elementary particles. Matched properties include spin, types of interactions in which the particles partake, and (for elementary bosons) approximate masses. Other solutions point to possible elementary particles. This monograph applies the models and the extended particle list. Results narrow gaps between physics data and theory. Results pertain to elementary particles, astrophysics, and cosmology. For example, this monograph predicts properties for beyond-the-Standard-Model elementary particles, proposes descriptions of dark matter and dark energy, provides new relationships between known physics constants (including masses of some elementary particles), includes theory that dovetails with the ratio of dark matter to ordinary matter, includes math that dovetails with the number of elementary-fermion generations, suggests forces that govern the rate of expansion of the universe, and suggests additions to and details for the cosmology timeline.

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Best For: Researchers and students in physics and cosmology interested in mathematical modeling of fundamental particles and phenomena.
Focus: Developing and applying a mathematics-based meta-model to describe elementary particles and predict physics data.
Covers: Mathematical solutions involving isotropic pairs of isotropic quantum harmonic oscillators and their relation to particle properties such as spin and interaction types.
Why It Matters: Provides a structured mathematical approach to unify descriptions of very small particles and very large physical phenomena, aiding in prediction and understanding of physics data.

"Models for Physics of the Very Small and Very Large" by Thomas J. Buckholtz is a mathematics book and learning resource focused on Deep Sky & Solar System. Best for teachers, students, and readers looking for stronger mathematical understanding.

Topic: Deep Sky & Solar System

Author: Thomas J. Buckholtz

Who this is for:

  • Teachers and classroom instructors
  • Students building subject mastery
  • Readers looking for practical learning support

Why this book matters: It stands out as a practical math resource that helps explain concepts, strengthen problem-solving, and support classroom or independent learning.

This monograph tackles three challenges. First, show a mathematics-based meta-model that matches known elementary particles. Second, apply models, based on the meta-model, to match other known physics data. Third, predict future physics data. The math features solutions to isotropic pairs of isotropic quantum harmonic oscillators. This monograph matches some solutions to known elementary particles. Matched properties include spin, types of interactions in which the particles partake, and (for elementary bosons) approximate masses. Other solutions point to possible elementary particles. This monograph applies the models and the extended particle list. Results narrow gaps between physics data and theory. Results pertain to elementary particles, astrophysics, and cosmology. For example, this monograph predicts properties for beyond-the-Standard-Model elementary particles, proposes descriptions of dark matter and dark energy, provides new relationships between known physics constants (including masses of some elementary particles), includes theory that dovetails with the ratio of dark matter to ordinary matter, includes math that dovetails with the number of elementary-fermion generations, suggests forces that govern the rate of expansion of the universe, and suggests additions to and details for the cosmology timeline.

AuthorThomas J. Buckholtz
PublisherAtlantis Press
Published2016-05-27
ISBN-139789462391659
BindingHardcover
LanguageEnglish
SubjectsScience
TopicDeep Sky & Solar System
SeriesAtlantis Studies in Mathematics for Engineering and Science

Format: Hardcover

Language: English

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