Stoichiometry Pro 4+

Roman Volinsky

iPad용으로 디자인됨

    • ₩5,500

스크린샷

설명

Stoichiometry Pro targets common stoichiometric tasks: balancing chemical reactions of unlimited number of components, finding molar masses, moles and masses of reactants and products and defining the limiting reagent, based on chemical formulas, stoichiometric coefficients, and any quantitative data provided.

The app analyses chemical reaction typed in “Reaction” field, balances it (if possible), finds molar masses and builds table with list of compounds (reagents and products coloured differently), for quantitative data input. All that triggered by pressing the = button.
Example 1: How many moles of H3PO4 are needed in order to obtain 2.0 g of NH4NO3, in the reaction:

H3PO4 + (NH4)2MoO4 + HNO3 = (NH4)3PO4(MoO3)12 + NH4NO3 + H2O

Solution: The first step is balancing chemical reaction and finding molar masses, since moles-mass conversion is needed. Reaction is balanced and all molar masses are calculated automatically by pressing the “=” button.

H3PO4 + 12(NH4)2MoO4 + 21HNO3 = (NH4)3PO4(MoO3)12 +21NH4NO3 + 12H2O,

The next step is to find the moles of NH4NO3 from the mass (2.0 g), and then convert them to moles of H3PO4 based on 1:21 ratio obtained from the balanced reaction. Stoichiometry application provides data table that comprised of masses and mole rows for data available before reaction initiated and obtained or left after the reaction is accomplished. When calculate button that pointing towards products, ▶▶ is pressed, the final masses and moles are calculated from the initially provided amounts of reactant and products. On the opposite, when the calculate button pointing left,◀◀, is pressed, then initial reactant and product amounts that would be required to achieve the provided final state are calculated. The later is exactly matches our situation, as we need to find the initial amount of H3PO4 from the final, known NH4NO3 mass. So we set the NH4NO3 mass (2.0 g) to the final mass field and press calculate button ◀◀ to automatically fill the table with all masses and moles for all components. Apparently, 1.19 mmoles of H3PO4 are required to get 2.0 g of NH4NO3.

Important Points:

Either moles or masses can be filled in, but if both are provided and they don’t match, then the moles value will have a preference.
For balancing redox reactions please refer to Electrochemistry application.

새로운 기능

버전 2.0

Compatibility update.

앱이 수집하는 개인정보

Roman Volinsky 개발자가 아래 설명된 데이터 처리 방식이 앱의 개인정보 처리방침에 포함되어 있을 수 있다고 표시했습니다. 자세한 내용은 개발자의 개인정보 처리방침을 참조하십시오.

데이터가 수집되지 않음

개발자가 이 앱에서 데이터를 수집하지 않습니다.

개인정보 처리방침은 사용하는 기능이나 사용자의 나이 등에 따라 달라질 수 있습니다. 더 알아보기

지원

  • 가족 공유

    가족 공유를 활성화하면 최대 6명의 가족 구성원이 이 앱을 사용할 수 있습니다.

이 개발자의 앱 더 보기

Liposome Calculator
교육
Stoichiometry
교육
Chemical Solution Simple
교육
Binary Float Converter
교육
General Chemistry
교육
Stoichiometry Gas Phase
교육

좋아할 만한 다른 항목

Chemistry - Stoichiometry
교육
DrPhos' Stoichiometry
교육
ODYSSEY Electron Sharing
교육
ODYSSEY Resonance
교육
Chemical-Equation-Balance Pro
교육
ODYSSEY Functional Groups
교육