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- Rate of Chemical Reaction Vs. Chemical Equilibrium
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Rate of Chemical Reaction vs Chemical Equilibrium Uso & Estadísticas
“Rate of Chemical Reaction” is an interactive app for students to learn the rate of chemical reaction, rate of reaction formula, chemical kinetics, factors affecting rate of reaction in an easy and engrossing way by visualizing the colorful images. It is one of the best educational applications which is designed to help students learn the rate of chemical reaction, rate of reaction formula, chemical kinetics, factors affecting rate of reaction in an innovative learning method. This app is for students in the age group of 11 - 15 years and is optimized for use in both phones & tablets. “Rate of Chemical Reaction” app is students friendly and easy to use. Download the app NOW and assist your children to learn rate of chemical reaction, rate of reaction formula, chemical kinetics, factors affecting rate of reaction easily.
“Rate of Chemical Reaction” app helps the students to learn about the chemical kinetics, rate of chemical reactions in an innovative learning method. This app explains the rate of chemical reaction, rate of reaction formula, chemical kinetics, factors affecting rate of reaction in an easy and simple way with interesting Do it Yourself activities. The interactive approach of the app makes it a more immersive experience for the students. The app is based on the concept of the chemical kinetics, rate of chemical reactions. Students can explore and practice the interactive activities and view the colorful images for better understanding. The colorful colorful images and interactive activities will help the students to learn the rate of chemical reaction, rate of reaction formula, chemical kinetics, factors affecting rate of reaction in an easy and engrossing way.
Features:
Learn - Learn the concept chemical kinetics, rate of chemical reactions in the easiest possible way
Practice - Get an opportunity to try for yourself the interactive activities
Quiz - Take a challenging quiz section to assess your learning
The Learn section will be enabled by default. The Practice and Quiz sections will be enabled one by one as and when the students complete the previous section.
This educational application helps students understand and learn the rate of chemical reaction, rate of reaction formula, chemical kinetics, factors affecting rate of reaction in an easy and engrossing way.
Download “Rate of Chemical Reaction” app and other educational apps published by Ajax Media Tech. With the interactive education model, students will be able to absorb and learn the fundamentals and basics with minimal efforts and maximum retention.
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Chemical Equilibrium is a tool for accurate estimation of concentrations and pressures of the chemical reaction reactants and products at equilibrium. The application derives final, equilibrium parameters based on equilibrium constants (Kc and Kp), initial concentrations and stoichiometric coefficients. Additionally, app calculates reaction quotient for any given concentrations and stoichiometry.
For a general chemical reaction:
aA + bB = cC + dD,
the Reaction Quotient (Q) is defined by:
Q= (C^c * D^d) / (A^a * B^b)
where A, B, C, D – are compounds’ concentrations or pressures and a, b, c, d are stoichiometric coefficient*. Sum of powers determines the reaction order.
*Importantly, real system powers may differ from reaction coefficients, due to overall reaction mechanism complexity.
If Q is not equal to reaction equilibrium constant K (Kc for concentrations and Kp for pressures), then reaction is not at equilibrium and it will proceed (due to difference in forward and reverse reaction speeds) to the direction defined by Q.
If Q is less than K reaction will move towards products (C and D), in opposite case – reverse reaction will prevail.
Example:
For given reaction: 2A + 1B = 3D + 2E , initial reaction concentrations are Ao=0.1M, Bo=0.2M, Do=0.3M and Eo=0.4M and Kc=1 M^2.
the Reaction Quotient (Q) is defined by:
Q= (D^3 * E^2) / (A^2 * B)
Loading the data to “Chemical Equilibrium” app, Reaction Quotient is immediately calculated, giving Q= 2.16 M^2. Apparently Q>K, suggesting that reaction is too close to the products side and reverse reaction will prevail to bring the reaction back to the equilibrium.
The new equilibrium concentrations of reaction components can be derived from the equation:
Apparently, solving this equation is rather demanding task, that turns to be unnecessary, since “Chemical Equilibrium” app immediately returns the answer: Aeq= 118.5 mM, Beq= 209.2 mM, Deq= 272.3 mM and Eeq= 381.5 mM.
The application features:
•To start calculation user is required to fill in stoichiometric coefficients, initial concentrations (pressures) of available components, and equilibrium constant Kc (Kp).
•Reaction coefficients are actually representing powers and therefore define reaction order.
•If certain compound do not contribute to equilibrium calculations, like water in aqueous solution, then to exclude the compound it is required to long press on its name field. To signal about the change, the background colour of the non contributing field is altering. To revert compound to the normal state it is required to long press again the appropriate field. See the screenshot.
•To start calculation initially or after updating the concentration or coefficient fields, user is requested to tap Run button!
•Significant attention should be paid to concentration, pressure and equilibrium constant units. App automatically changes the set of available units as per order of reaction!
•The power of equilibrium constant units depicted as “x” is defined as (c+d-a-b), where a, b, c and d are the stoichiometric coefficients of the reaction.
•The basic conversions are as follows:
1 M= (1e3) mM
1 atm=101325 Pa
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Rate of Chemical Reaction frente a Chemical Equilibrium: comparación de la clasificación
Comparar la tendencia de clasificación de Rate of Chemical Reaction en los últimos 28 días con Chemical Equilibrium
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Comparación de las clasificaciones Rate of Chemical Reaction frente a Chemical Equilibrium por países
Comparar la tendencia de clasificación de Rate of Chemical Reaction en los últimos 28 días con Chemical Equilibrium
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Rate of Chemical Reaction VS.
Chemical Equilibrium
enero 1, 2025