Concept explainers
(a)
Interpretation:
The empirical formula of the chloride of silicon is to be determined.
Concept introduction:
An empirical formula gives the simplest whole number ratio of atoms of each element present in a molecule.
Following are the steps to determine the empirical formula of a compound when the percentage of each element is given,
Step 1: Subtract the given percent of an element from 100 to calculate the percentage of another element. Assume
Step 2: Divide mass of each element by its molar mass to convert the mass of the element to moles. The formula to calculate moles from the mass is as follows:
Step 3: The number of moles of the elements is the fractional amounts, thus, write the calculated amount
Step 4: Convert the moles of each element to the whole number subscripts. The steps for this math conversion are as follows:
(a) Each subscript is divided by the smallest subscript.
(b) If the whole number is not obtained after division, multiply the obtained subscripts by the smallest integer. This gives the empirical formula of the compound.
(b)
Interpretation:
The molecular formula of chloride of silicon is to be determined.
Concept introduction:
An empirical formula gives the simplest whole number ratio of atoms of each element present in a molecule. The molecular formula tells the exact number of atoms of each element present in a molecule.
Following are the steps to determine the molecular formula of a compound when the percentage of each element is given,
Step 1: Assume
Step 2: Divide mass of each element by its molar mass to convert the mass of the element to moles. The formula to calculate moles from the mass is as follows:
Step 3: The number of moles of the elements is the fractional amounts, thus, write the calculated amount
Step 4: Convert the moles of each element to the whole number subscripts. The steps for this math conversion are as follows:
(a) Each subscript is divided by the smallest subscript.
(b) If the whole number is not obtained after division, multiply the obtained subscripts by the smallest integer. This gives the empirical formula of the compound.
Step 5: Add the molar mass of each element multiplied by its number of atoms present in the empirical formula to obtain the empirical formula mass for the compound.
Step 6: Divide the molar mass of the compound by its empirical formula mass to obtain the whole number. The formula to calculate the whole number multiple is as follows:
Step 7: Multiply the whole number with the subscript of each element present in the empirical formula. This gives the molecular formula of the compound.
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Chapter 3 Solutions
MCGRAW: CHEMISTRY THE MOLECULAR NATURE
- Draw the major products of the following reaction: HCIarrow_forwardFor each molecule, assign each stereocenter as R or S. Circle the meso compounds. Label each compound as chiral or achiral.arrow_forwardBlackboard app.aktiv.com X Organic Chemistry II Lecture (mx Aktiv Learning App Curved arrows are used to illustrate the flow of electrons. Using the provided starting and product structures, draw the curved electron-pushing arrows for the following reaction or mechanistic step(s). Be sure to account for all bond-breaking and bond-making steps. Problem 25 of 35 Select to Edit Arrows CH3CH2OK, CH3CH2OH L Gemini M 31 0:0 :0: 5x Undo Reset Done :0: Harrow_forward
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- I have some reactions here for which I need to predict the products. Can you help me solve them and rewrite the equations, as well as identify the type of reaction? Please explain it to me.I have some reactions here for which I need to predict the products. Can you help me solve them and rewrite the equations, as well as identify the type of reaction? Please explain it to marrow_forwardDon't used hand raiting and don't used Ai solutionarrow_forwardCould you explain and label how this was determined for the functional groups? Please highlight the areas and show me as well.arrow_forward
- I want to know how to do it , please helparrow_forwardHelp me i dont know how to do itarrow_forwardCan you explain how to draw a molecular orbital diagram for the given molecule? It is quite difficult to understand. Additionally, could you provide a clearer illustration? Furthermore, please explain how to draw molecular orbital diagrams for any other given molecule or compound as well.arrow_forward
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