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Matter is identified by the the study of physical and chemical properties.
properties. These properties include mass, volume, density, and physical and chemical properties that help identify and distinguish different types of matter.
Properties used to describe matter include physical properties (such as color, shape, and state) and chemical properties (such as reactivity, flammability, and toxicity). These properties help us classify and identify different types of matter based on their characteristics and behavior.
Matter has chemical properties (ex.: chemical reactivity) or physical properties (ex.: thermal conductivity).
All types of matter have physical properties.
Scientists use physical properties such as mass, volume, density, color, texture, and conductivity to describe matter. These properties help scientists classify and identify different substances based on how they behave and respond to various conditions.
Physical and chemical properties of matter are useful because they can help you identify that substance. For example paper burns very easily and aluminum doesn't, this is how they can be described individually.
Physical properties such as color, shape, size, density, and state of matter can be observed without changing the chemical composition of the substance. These observations help identify the substance based on its characteristics.
Correct characterization of matter chemical properties is possible by experimental studies; but theoretical methods exist for the approximate calculation the values for some chemical and physical properties.
physical or chemical changes
The properties of matter are divided into two sub categories. Those categories are the physical properties of matter and the chemical properties of matter.
Two categories used to classify properties of matter are physical properties, which describe the characteristics that can be observed without changing the substance's chemical composition, and chemical properties, which describe how a substance interacts with other substances to form new substances.