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Physics is concerned with the interactions of energy, matter, space, and time, in order to discover the underlying mechanisms that underpin all phenomena. The word "physics" comes from the Greek word "phúsis", which means nature. Physics seeks to comprehend the natural world around us at its most fundamental level. It emphasizes the use of quantitative laws to do this, which could be valuable in other fields that want to push the performance boundaries of present technologies.

Physics knowledge is vital, not only in scientific careers, but in everyday settings too. For instance, physics can help us understand how microwave ovens work, and why they might affect pacemakers. Many disciplines rely on physics, and it contributes directly to several more. For example, chemistry deals with the interactions of atoms and molecules, and so it has close ties to atomic and molecular physics. Similarly, most branches of engineering are concerned with designing new technologies, processes, or structures within the constraints set by the laws of physics.

It is not necessary to formally learn all applications of physics. Knowing the fundamental rules and having the analytical skills to apply them is the most valuable thing you can do. Physics can also help you enhance your problem-solving abilities. Furthermore, because physics preserves the most fundamental components of science, it is used by all sciences.

This text is adapted from Openstax, University Physics Volume 1, Chapter 1: Units and Measurements.

Tags
PhysicsEnergyMatterSpaceTimeNatureQuantitative LawsMicrowave OvensPacemakersChemistryEngineeringFundamental RulesProblem solvingScience

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1.1 : The Scope of Physics

Units, Dimensions, and Measurements

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1.2 : Größenordnungen

Units, Dimensions, and Measurements

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1.3 : Modelle, Theorien und Gesetze

Units, Dimensions, and Measurements

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1.4 : Maßeinheiten und -standards

Units, Dimensions, and Measurements

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1.5 : Schätzung der physikalischen Größen

Units, Dimensions, and Measurements

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1.6 : Basisgrößen und abgeleitete Größen

Units, Dimensions, and Measurements

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1.7 : Umrechnung von Einheiten

Units, Dimensions, and Measurements

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1.8 : Genauigkeit und Präzision

Units, Dimensions, and Measurements

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1.9 : Zufällige und systematische Fehler

Units, Dimensions, and Measurements

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1.10 : Regeln für signifikante Zahlen

Units, Dimensions, and Measurements

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1.11 : Signifikante Zahlen in Berechnungen

Units, Dimensions, and Measurements

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1.12 : Dimensionale Analyse

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1.13 : Problemlösung: Dimensionsanalyse

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1.14 : Lösen von Problemen in der Physik

Units, Dimensions, and Measurements

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