Consider the reaction between TiO 2 and C: TiO 2 ( s ) + 2 C ( s ) → Ti ( s ) + 2 CO ( g ) A reaction vessel initially contains 10.0 g of each of the reactants. Calculate the masses of TiO 2 , C, Ti and CO that will be in the reaction vessel after the reactants have reacted as much as possible. Assume 100% yield. Hint : The limiting reactant is completely consumed. but the reactant in excess is not. Use the amount of limiting reactant to determine the amount of products the form and the amount of the rectant in excess that remains after complete reaction.
Consider the reaction between TiO 2 and C: TiO 2 ( s ) + 2 C ( s ) → Ti ( s ) + 2 CO ( g ) A reaction vessel initially contains 10.0 g of each of the reactants. Calculate the masses of TiO 2 , C, Ti and CO that will be in the reaction vessel after the reactants have reacted as much as possible. Assume 100% yield. Hint : The limiting reactant is completely consumed. but the reactant in excess is not. Use the amount of limiting reactant to determine the amount of products the form and the amount of the rectant in excess that remains after complete reaction.
Solution Summary: The author explains that the molar mass of a compound is equal to one mole of compound. The amount of product formed is also called theoretical yield.
A reaction vessel initially contains 10.0 g of each of the reactants. Calculate the masses of TiO2, C, Ti and CO that will be in the reaction vessel after the reactants have reacted as much as possible. Assume 100% yield. Hint: The limiting reactant is completely consumed. but the reactant in excess is not. Use the amount of limiting reactant to determine the amount of products the form and the amount of the rectant in excess that remains after complete reaction.
personality of each of them in terms of nucleophile vs. electrophile (some can be considered
acids/bases but we are not looking at that here). Note you may have to use your growing intuition to
figure out the personality of one of the molecules below but I believe in you! Rationalize it out
based on what we have called strong versus weak electrophiles in past mechanisms. Consider using
the memes below to help guide your understanding!
A
OH
O
B
CH3
C
Molecule A: [Select]
Molecule B: [Select]
Molecule C: [Select]
Molecule D: [Select]
>
H
D
OH
4) Which oxygen atom in the structure below is most basic / nucleophilic? Please explain by
discussing the electron density around each oxygen atom. Show at least three resonance
structures for the compound.
оого
Can you show me this problem. Turn them into lewis dot structures for me please and then answer the question because I cant seem to comprehend it/ The diagrams on the picture look too small I guess.
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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