Conservation Laws

Conservation laws are scientific principles stating that certain physical quantities remain constant in an isolated system, even as matter or energy changes form. In chemistry, reactions rearrange atoms and redistribute electrons, but they conserve the number of atoms of each element and total electric charge; balancing an equation applies these constraints to reactants and products. Conservation of mass and energy provides a framework for stoichiometric calculations, reaction analysis, and evaluating whether proposed chemical transformations are feasible, while these principles connect molecular events to broader models of thermodynamics and chemical systems.

Conservation Laws - Related Videos

Education

JoVE Science Education - Physics

Conservation of Momentum

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2023

Source: Nicholas Timmons, Asantha Cooray, PhD, Department of Physics & Astronomy, School of Physical Sciences, University of California, Irvine, CA The goal of this experiment is to test the concept of the conservation of momentum. By setting up a surface with very little friction, collisions between moving objects can be studied, including their initial and final momenta. The conservation of momentum is one of the most important laws in physics. When something is conserved in physics, the...

Scientific Laws and Theories

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2020

Scientific Laws In science, a law is defined as a concise, verbal or mathematical, statement that summarizes a vast number of experimental observations. It describes or predicts some facets of the natural world that always remain the same under the same conditions. Scientific Theory A scientific theory is a unifying principle that provides a well-substantiated and testable explanation of aspects of nature and provides the reason for why things happen. Well-established theories are the...

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JoVE Core - Chemistry
Free Sample

First Law of Thermodynamics

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2020

Energy Conservation Energy can be converted from one form into another, but all of the energy present before a change occurs always exists in some form after the change is completed. This observation is expressed in the law of conservation of energy: during a chemical or physical change, energy can be neither created nor destroyed, although it can be changed in form. According to the law of conservation of matter, there is no detectable change in the total amount of matter during a chemical...

Second Law of Thermodynamics

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2020

In the quest to identify a property that may reliably predict the spontaneity of a process, a promising candidate has been identified: entropy. Processes that involve an increase in entropy of the system (ΔS > 0) are very often spontaneous; however, examples to the contrary are plentiful. By expanding consideration of entropy changes to include the surroundings, a significant conclusion regarding the relation between this property and spontaneity may be reached. In thermodynamic models, the...

Ideal Gas Law - Concepts

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2020

Derivation of the Ideal Gas Law Gases are a fundamental state of matter. A gas is a collection of molecules that have a significant distance between their molecules. Due to this distance, colorless gases are invisible to the human eye and are studied using four measurable parameters: pressure (P), volume (V), number of moles (n), and temperature (T). The ideal gas law is a mathematical equation that relates all of these parameters. It is a combination of several different laws that describe the...

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