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Chemical Formulas02:52

Chemical Formulas

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A chemical formula presents information about the proportions of atoms constituting a particular chemical compound or molecule, mainly using symbols of elements and numbers. At times other symbols, such as dashes, parentheses, brackets, commas, plus, and minus signs, are also used. A chemical formula can be one of three types – molecular, empirical, and structural.
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Chemical Equations03:10

Chemical Equations

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Chemical equations represent the identities and relative quantities of substances involved in a chemical reaction. The substances undergoing reaction are called reactants, and their formulas are placed on the left side of the equation. The substances generated by the reaction are called products, and their formulas are placed on the right side of the equation. Plus signs (+) separate individual reactant and product formulas, and an arrow (→) separates the reactant and product (left and right)...
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Chemical Reactions01:19

Chemical Reactions

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A chemical reaction is a process by which the bonds in the atoms of substances are rearranged to generate new substances. Matter cannot be created or destroyed in a chemical reaction—the same type and number of atoms that make up the reactants are still present in the products. Merely, the rearrangement of chemical bonds produces new compounds.
Chemical Reactions Rearrange Atoms into New Substances
A chemical reaction takes starting materials—the reactants—and changes them...
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Chemical Reactions02:26

Chemical Reactions

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A balanced chemical equation provides the information of chemical formulas of the reactants and products involved in the chemical change. A reaction’s stoichiometry helps predict how much of the reactant is needed to produce the desired amount of product, or in some cases, how much product will be formed from a specific amount of the reactant.
The relative amounts of reactants and products represented in a balanced chemical equation are often referred to as stoichiometric amounts. However, in...
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Experimental Determination of Chemical Formula02:37

Experimental Determination of Chemical Formula

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The elemental makeup of a compound defines its chemical identity, and chemical formulas are the most concise way of representing this elemental makeup. When a compound’s formula is unknown, measuring the mass of its constituent elements is often the first step in determining the formula experimentally.
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Types of Chemical Bonds02:37

Types of Chemical Bonds

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Chemical bonding theories were pioneered by American chemist Gilbert N. Lewis. He developed a model called the Lewis model to explain the type and formation of different bonds. Chemical bonding is central to chemistry; it explains how atoms or ions bond together to form molecules. It explains why some bonds are strong and others are weak, or why one carbon bonds with two oxygens and not three; why water is H2O and not H4O. 
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Updated: Jan 31, 2026

Free Radicals in Chemical Biology: from Chemical Behavior to Biomarker Development
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Multiple Chemical Sensitivity in Chemical Laboratory Workers.

Juan Pérez-Crespo1, Rafael Lobato-Cañón2, Ángel Solanes-Puchol3

  • 1Health & Safety Office, Miguel Hernández University, Elche, Spain.

Safety and Health at Work
|December 19, 2018
PubMed
Summary

The prevalence of Multiple Chemical Sensitivity (MCS) among university researchers in chemical labs was not linked to inhaling multiple low-concentration chemicals. This challenges the hypothesis that prolonged exposure to such agents causes MCS.

Keywords:
Chemical intoleranceChemical laboratoryLaboratory workerMultiple chemical sensitivity

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Area of Science:

  • Environmental Health
  • Occupational Medicine
  • Toxicology

Background:

  • Multiple Chemical Sensitivity (MCS) is an acquired condition with unknown causes, characterized by sensitivity to chemicals.
  • Hypotheses often link MCS to prior exposure to volatile chemicals.
  • University researchers in chemical labs experience prolonged, irregular exposure to various chemical agents.

Purpose of the Study:

  • To investigate the prevalence of MCS in university researchers working in chemical laboratories.
  • To assess the relationship between occupational chemical exposure and MCS in this population.

Main Methods:

  • A study group of university researchers in chemical labs was compared to a control group of administrative personnel.
  • The Quick Environmental Exposure and Sensitivity Inventory (QEESI) was utilized, with reported sensitivity of 92% and specificity of 95%.

Main Results:

  • The study found no correlation between the prevalence of MCS in university researchers and inhalation exposure to multiple low-concentration chemical agents.
  • Results indicate that occupational exposure to chemicals in this setting does not explain MCS development.

Conclusions:

  • The findings contradict the hypothesis that prolonged exposure to low concentrations of chemicals is a primary cause of MCS.
  • This suggests alternative etiological factors for Multiple Chemical Sensitivity may need to be explored.