The mass of the precipitate, BaSO 4 , formed after the reaction between Ba ( OH ) 2 and Na 2 SO 4 , under the given composition, is to be determined. Concept introduction: Aredox reaction involves the transfer of electrons between two species. Hence, these reactions are divided into two parts, oxidation and reduction. In oxidation, the species loses electrons and in reduction the species gainselectrons. From a balanced chemical equation, the mass of products formed and mass of reactants consumed can be determined. The number of moles of reactants consumed is equal to the number of moles of products formed (law of conservation of mass). The number of moles of a compound is calculated by the expression as follows: M = m V Here, M is concentration of reactants, m is number of moles of reactants, and V is the volume of reactants.
The mass of the precipitate, BaSO 4 , formed after the reaction between Ba ( OH ) 2 and Na 2 SO 4 , under the given composition, is to be determined. Concept introduction: Aredox reaction involves the transfer of electrons between two species. Hence, these reactions are divided into two parts, oxidation and reduction. In oxidation, the species loses electrons and in reduction the species gainselectrons. From a balanced chemical equation, the mass of products formed and mass of reactants consumed can be determined. The number of moles of reactants consumed is equal to the number of moles of products formed (law of conservation of mass). The number of moles of a compound is calculated by the expression as follows: M = m V Here, M is concentration of reactants, m is number of moles of reactants, and V is the volume of reactants.
Solution Summary: The author explains that the mass of the precipitate, BaSO_4, is determined by a balanced chemical equation.
The mass of the precipitate, BaSO4, formed after the reaction between Ba(OH)2 and Na2SO4, under the given composition, is to be determined.
Concept introduction:
Aredox reaction involves the transfer of electrons between two species. Hence, these reactions are divided into two parts, oxidation and reduction. In oxidation, the species loses electrons and in reduction the species gainselectrons.
From a balanced chemical equation, the mass of products formed and mass of reactants consumed can be determined. The number of moles of reactants consumed is equal to the number of moles of products formed (law of conservation of mass).
The number of moles of a compound is calculated by the expression as follows:
M=mV
Here, M is concentration of reactants, m is number of moles of reactants, and V is the volume of reactants.
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Gramicidin A can adopt more than one structure; NMR spectroscopy has revealed an “end-to-end” dimer form, and x-ray crystallography has revealed an “anti-parallel double- helical” form. Briefly outline and describe an experimentalapproach/strategy to investigate WHICH configuration (“end-to-end dimer” vs “anti-paralleldouble helical”) gramicidin adopts in an actual lipid bilayer.
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Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell
Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell