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CHM135 Chemistry Physical Principles Assignment Answer Utoronto Canada
CHM135 is an introductory course in Chemistry that explores the physical principles underlying the behavior of matter. In CHM135 Assignment Answer, you will learn about the structure of atoms and molecules, the laws of motion and thermodynamics, and the properties of solids, liquids, and gases. You will also be introduced to the concept of chemical reactions and the principles of chemical kinetics and equilibrium. By the end of CHM135 Assessment Sample, you should have a firm understanding of the basic principles of Chemistry and be able to apply them to solve problems.
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Assignment Activity 1: Describe macroscopic properties of molecules and explain how atomic or molecular behavior accounts for those properties, including in everyday situations.
Macroscopic properties of molecules include their size, shape, and mass. Additionally, the behavior of molecules in bulk can be described by their vapor pressure, boiling point, and melting point. In general, the higher the vapor pressure or boiling point of a substance, the less soluble it is in water. The lower the melting point of a substance, the easier it is to melt.
The size of a molecule is determined by the number of atoms that make it up. The shape of a molecule is determined by the arrangement of those atoms. The mass of a molecule is determined by the number and type of atoms that make it up.
Atomic and molecular behavior account for the various properties of materials, including their evaporation rates. In everyday situations, this means that the rate at which a liquid evaporates is largely dependent on the type of molecules that make up the liquid.
For example, liquids with small, light molecules like water evaporate more quickly than liquids with large, heavy molecules like oil. This is because smaller molecules have higher kinetic energy and are therefore more likely to move away from the surface of the liquid and into the surrounding air. Larger molecules have less kinetic energy and are therefore less likely to escape from the liquid.
Assignment Activity 2: solve quantitative chemical problems and interpret the solutions in consideration of molecular behavior.
To solve a quantitative chemical problem, you need to be able to identify and use the appropriate mathematical equation. For example, the Ideal Gas Law is an equation that can be used to calculate the pressure, volume, or temperature of a gas. This equation is only valid for ideal gases, which are made up of non-interacting molecules that are in constant motion.
In order to use the Ideal Gas Law, you need to know the value of at least two of the three variables (pressure, volume, or temperature). The units of pressure must be in atmospheres (atm), the units of volume must be in liters (L), and the units of temperature must be in Kelvin (K).
Once you have the values of two variables, you can plug them into the equation and solve for the third variable. For example, if you know that the pressure of a gas is 2 atm and the volume is 4 L, you can solve for the temperature by using the following equation:
T = 2 atm * 4 L / 1 atm
T = 8 L / 1 atm
T = 8 Kelvin
This equation can be used to solve problems in which you are given the pressure and volume of a gas and need to calculate the temperature or vice versa.
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Assignment Activity 3: Appreciate the interdisciplinary nature of chemistry and relate chemical concepts to problems in other disciplines.
Chemistry is a branch of science that deals with the composition, structure, and properties of matter. The study of chemistry is essential for understanding the world around us. Chemistry is involved in all aspects of our lives, from the food we eat to the air we breathe.
Because chemistry is such a broad field, it intersects with many other disciplines. For example, a chemist may study the chemical properties of food in order to understand how to improve its taste or nutrition. A chemist may also study the chemicals in the environment in order to understand how they affect our health.
In addition to its applications in other disciplines, chemistry also has its own unique set of problems. For example, chemists are constantly working to develop new and improved materials, such as stronger metals or more durable plastics. They are also working to find new ways to produce energy, such as solar power or nuclear fusion.
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