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Categorize each of the following as an element, a compound, or a mixture. (a) air (c) brass (b) fluorite (d) 18 -carat gold

Short Answer

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(a) Mixture, (c) Mixture, (b) Compound, (d) Mixture.

Step by step solution

01

Understanding Elements, Compounds, and Mixtures

First, let's clarify the definitions. An element is a substance that consists of only one type of atom. A compound is a substance formed when two or more chemical elements are chemically bonded together. A mixture contains two or more substances that are not chemically bonded together and can be separated by physical means.
02

Analyzing Air

Air is a mixture because it contains various gases such as nitrogen, oxygen, carbon dioxide, and others that are not chemically bonded and can be separated by physical processes like distillation.
03

Analyzing Brass

Brass is a mixture, specifically a homogeneous mixture known as an alloy. It is made of copper and zinc mixed together but not chemically bonded, which means its components can be physically separated.
04

Analyzing Fluorite

Fluorite is a compound, specifically known as calcium fluoride (CaF2). It consists of calcium and fluoride ions chemically bonded together, forming a crystalline solid that cannot be separated by physical means.
05

Analyzing 18-Carat Gold

18-carat gold is a mixture, specifically an alloy consisting of gold mixed with other metals like silver or copper. The metals are not chemically bonded but mixed, allowing for physical separation.

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Key Concepts

These are the key concepts you need to understand to accurately answer the question.

Elements
Elements are the simplest forms of matter. They consist of only one type of atom and cannot be broken down into simpler substances through chemical reactions. Each element is unique and has its own specific set of properties, such as atomic weight and electron configuration.
For example, oxygen is an element because it consists entirely of oxygen atoms. The periodic table is a systematic arrangement of elements based on their atomic numbers, and it is a valuable tool for understanding element properties and relationships. Elements play crucial roles in various chemical reactions and are considered the building blocks of all substances in the universe.
Compounds
Compounds are substances made up of two or more different elements that are chemically bonded together. These elements combine in fixed ratios to form new substances with properties distinct from the elements they are made from.
When elements form compounds, they do so through chemical bonds, such as covalent or ionic bonds. This process often involves sharing or transferring electrons between atoms. For instance, water is a compound made from hydrogen and oxygen in a 2:1 ratio, resulting in the chemical formula Hâ‚‚O.
Compounds have unique characteristics and cannot be separated into their component elements through physical means; they require chemical reactions to break the bonds.
Mixtures
Mixtures consist of two or more substances mixed together without any chemical bonding. These substances retain their individual properties and can be separated by simple physical methods like filtration, distillation, or chromatography.
There are two main types of mixtures: homogeneous and heterogeneous.
  • Homogeneous mixtures have a uniform composition throughout, like salt dissolved in water.
  • Heterogeneous mixtures have visibly different parts or phases, such as a salad.
Understanding mixtures involves recognizing that while no chemical reaction takes place to form them, methods like evaporation or magnetic separation can be used to isolate the original substances.
Alloys
Alloys are special types of mixtures where at least one element is a metal. They are created by melting and mixing two or more elements, typically metals, to forge a new material with enhanced properties.
Alloys are primarily used to improve the strength, durability, and other characteristics of the base metal. For example, brass is an alloy of copper and zinc, and 18-carat gold is an alloy consisting mostly of gold mixed with other metals like silver or copper. The metals involved in forming alloys do not chemically combine but blend at a molecular level, retaining their original properties.
  • Alloys are instrumental in industries for making products that require specific durability, conductivity, and resistance to corrosion.
  • They are often more practical than pure metals for many applications, as seen in their widespread use in construction, manufacturing, and jewelry.
This unique blending helps customize materials to meet specific engineering requirements or aesthetic needs.

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Most popular questions from this chapter

A sample of the compound magnesium oxide is synthesized as follows. 60. g of magnesium is burned and produces \(100 .\) g of magnesium oxide, indicating that the magnesium combined with 40\. g of oxygen in the air. If \(30 .\) g of magnesium had been used, what mass of oxygen would have combined with it? What law of chemistry is used in solving this problem?

Which part of the description of a compound or element refers to its physical properties and which to its chemical properties? (a) The colorless liquid ethanol burns in air. (b) The shiny metal aluminum reacts readily with orange-red bromine.

A copper-colored metal is found to conduct an electric current. Can you say with certainty that it is copper? Why or why not? Suggest additional information that could provide unequivocal confirmation that it is copper.

Three liquids of different densities are mixed. Because they are not miscible (do not form a homogeneous solution with one another), they form discrete layers, one on top of the other. Sketch the result of mixing carbon tetrachloride \(\left(\mathrm{CCl}_{4}, d=\right.\) \(\left.1.58 \mathrm{g} / \mathrm{cm}^{3}\right),\) mercury \(\left(d=13.546 \mathrm{g} / \mathrm{cm}^{3}\right),\) and water \(\left(d=1.00 \mathrm{g} / \mathrm{cm}^{3}\right)\)

Carbon tetrachloride, \(\mathrm{CCl}_{4}\), a common liquid compound, has a density of \(1.58 \mathrm{g} / \mathrm{cm}^{3} .\) If you place a piece of a plastic soda bottle \(\left(d=1.37 \mathrm{g} / \mathrm{cm}^{3}\right)\) and a piece of aluminum \(\left(d=2.70 \mathrm{g} / \mathrm{cm}^{3}\right)\) in liquid \(\mathrm{CCl}_{4},\) will the plastic and aluminum float or sink?

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