28. Consider the unbalanced equation for the neutralization of acetic acid: HC,H;O2(aq) + Ca(OH)2(aq) H,O(I) + Ca(C,H;O,)½(aq) Balance the equation and determine how many moles of Ca(OH)2 are required to completely neutralize 1.07 mol of HC,H;O2.
Lipids
The heterogeneous classes of organic compounds that are not water-soluble but are dissolved in organic solvents that are non-polar in nature are termed lipids. They are a long chain of fatty acids and esters of alcohols. Lipids are generally seen in several plants, microorganisms, and animals. They are utilized as insulation, components of the cell membrane, hormones, and molecules for the storage of energy.
Glycerophospholipid
Glycerophospholipid is the most abundantly occuring phospholipids found in the biological membranes. Lipids include a group of organic compounds like fats, hormones, oils, waxes, vitamins etc. They are non-polar molecules and are insoluble in water. Lipids play an important role in biological systems. They are the building blocks of our cell membranes, store energy and are involved in signaling.
Structure Of Camphor
A terpene with the molecular formula of C10H16O is a waxy, white color solid known as camphor. It is flammable. It also possesses a very pungent taste and a strong odor. There are various sources for extracting camphor from natural products such as the wood of the tree of camphor laurel. Sublimation of wood and steam distillation are some of the methods involved in obtaining camphor.
Glycolipid In Organic Chemistry
Glycolipids are lipids that are an important class of organic compounds in chemistry that have simple to complex applications. They contain carbohydrates, fatty acids, sphingolipids or a glycerol group. In other words, they are the modifications of lipids like acylglycerols, prenols and ceramides. They are all part of a wider group of compounds known as glycoconjugates.
Diterpenoid
The terpenoid class includes diterpenoids, which are chemical compounds with 20 carbon atoms. They are made up of four isoprene units and are derived from geranylgeraniol, a C20 precursor. They have a C20H32 basic structure. These characteristics distinguish diterpenoids from simple terpenes, which have just 10 carbon atoms.
![**Table: Stoichiometric Values**
- The table presents stoichiometric data with four columns for mol SiO₂, mol C, mol SiC, and mol CO.
- mol C: Values are 6, 9.5
- mol CO: Value is 10
- mol SiO₂: Values are 3, 3.2
- mol SiC: No specific values given for some cells.
**Chemical Reactions:**
**28. Neutralization of Acetic Acid**
- Unbalanced equation:
\[
\text{HC}_2\text{H}_3\text{O}_2\text{(aq)} + \text{Ca(OH)}_2\text{(aq)} \rightarrow \text{H}_2\text{O(l)} + \text{Ca(C}_2\text{H}_3\text{O}_2\text{)}_2\text{(aq)}
\]
- Task:
- Balance the equation.
- Determine how many moles of Ca(OH)₂ are required to completely neutralize 1.07 mol of HC₂H₃O₂.
**30. Reaction of Aluminum with Sulfuric Acid**
- Unbalanced equation:
\[
\text{Al(s)} + \text{H}_2\text{SO}_4\text{(aq)} \rightarrow \text{Al}_2\text{(SO}_4\text{)}_3\text{(aq)} + \text{H}_2\text{(g)}
\]
- Tasks:
- (a) Balance the equation.
- (b) Calculate how many moles of H₂SO₄ are required to completely react with 8.3 mol of Al.
- (c) Determine how many moles of H₂ are formed by the complete reaction of 0.341 mol of Al.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F04750898-40b6-4507-9bb8-e18bccce9e61%2F1496907d-34bb-4b23-8b3e-85906f0606c6%2Fw45kry_processed.jpeg&w=3840&q=75)

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