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Ideal conditions refer to the assumption that all reactants are completely consumed in a reaction according to the stoichiometry of the balanced equation. This assumption allows for precise calculations of the amounts of reactants needed and products produced. However, in reality, reactions may not always proceed under ideal conditions due to side reactions, impurities, or incomplete mixing.

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What is meant by 'ideal conditions' relative to stoichiometric calculations?

STP Standard Temperature and Pressure 0 degrees C and 101.3 kPa pressure


Distinguish between ideal and real stoichiometric calculations?

The theoretical yield of a reaction is the amount of some product, usually given in mass units of grams, that you would expect to get if the reaction based on a stoichiometric calculation not actually "running" the reaction in the laboratory. The actual yield is just that,it is the actual amount of product, in grams you actually produced after really running the experiment in the lab.Actual yield data comes from experimentally determined results. You can not "calculate" it.


Are all stoichiometry calculations are based on standard atmospheric pressure conditions?

No, stoichiometry calculations can be performed at any pressure conditions as long as the ideal gas law can be applied. Standard atmospheric pressure conditions are commonly used in stoichiometry calculations for ease of comparison and consistency, but other pressure conditions can also be used.


What functions do ideal stoichiometric calculations serve?

Ideal Stoichiometric calculations give the theoretical yield of the products of the reaction


What restriction applies to the use of the volume ratios in solving stoichiometry problems?

The volume ratios in stoichiometry calculations are only valid for gases under the same conditions of temperature and pressure. This restriction is due to the ideal gas law, which assumes ideal behavior and uniform conditions for gases. It is important to ensure that the gases in the reaction are measured at the same temperature and pressure to use volume ratios accurately in such calculations.


What are the assumptions of Bernoulli's equation and how do they affect the accuracy of fluid flow calculations?

Bernoulli's equation assumes that the fluid is incompressible, non-viscous, and flows along a streamline. These assumptions can affect the accuracy of fluid flow calculations because real-world fluids may not always meet these ideal conditions, leading to potential errors in the calculations.


What happens to a population under ideal conditions?

Under ideal conditions, population increases.


What are the assumptions of the Bernoulli equation and how do they impact the accuracy of fluid flow calculations?

The Bernoulli equation assumes that the fluid is incompressible, non-viscous, and flows steadily along a streamline. These assumptions can impact the accuracy of fluid flow calculations because real-world fluids may not always meet these ideal conditions, leading to potential errors in the calculations.


What are the standard conditions when working with gasses?

Standard conditions for working with gases, often referred to as Standard Temperature and Pressure (STP), typically involve a temperature of 0 degrees Celsius (273.15 K) and a pressure of 1 atmosphere (101.3 kPa). Under these conditions, one mole of an ideal gas occupies a volume of 22.4 liters. These standards are commonly used in gas calculations to ensure consistency and comparability in scientific experiments and calculations.


What should the ideal setting be for a basement dehumidifier?

The ideal setting for a basement dehumidifier is typically around 50 relative humidity. This level helps prevent mold growth and maintains a comfortable environment. Adjust the settings as needed based on the specific conditions in your basement.


When may you drive at the posted speed limits in Mississippi?

remember that the posted speeds are intended only for the most ideal conditions


What is the significance of ideal gas equation?

The ideal gas equation, PV = nRT, is significant because it describes the relationship between pressure, volume, temperature, and the amount of gas in a system. It helps predict how gases will behave under varying conditions and is fundamental in various applications such as in chemistry, physics, and engineering. Additionally, the ideal gas equation serves as a useful tool in calculations involving gases.