How Are Simple And Complex Related

How Are Simple And Complex Related – Complex sentences are different from simple sentences, but they have some similarities with compound sentences. Does it look complicated? Don’t worry; easy to use once you understand how they work, which we’ll explain in full below. We talk about simple and compound sentences and independent and dependent sentences and give many examples of complex sentences.

A complex sentence is a sentence that has one independent clause and at least one dependent clause. It works best when you need to provide more information to explain or change the main point of your sentence. Complex sentences are easy to recognize because they often use dependent conjunctions such as because, since, or until to join sentences.

How Are Simple And Complex Related

Compound sentences are one of the four types of sentences according to their structure (simple, complex, compound and compound-complex). The difference is that they contain a dependent clause; they only have compound clauses and compound clauses.

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A dependent clause, also known as a subordinate clause, is a sentence that cannot stand alone as a complete sentence. Without an independent clause, a dependent clause is just a part of a sentence.

One of the most common types of complex sentences are conditional sentences that deal with imaginary situations, often using an if-then structure. In conditional sentences, a sentence is true only if both sentences are true.

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The key to using complex sentences is to understand the difference between independent and dependent clauses. Independent clauses are basically complete sentences, but not dependent clauses. However, both types of sentences contain a subject and a verb, so why is one a complete sentence and the other not?

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The short answer is that dependent clauses always start with secondary conjunctions. In a way, these dependent conjunctions turn independent clauses into dependent clauses.

You’re probably already familiar with some common auxiliary conjunctions such as, since, when, when, when, though, in case, while, now this, and certain uses of prepositions before and after. There are also some less common conjunctions, so we recommend reviewing the list in our post helpful conjunctions until you’re familiar with them.

With the subordinate conjunction, one sentence becomes the description of another sentence. This way dependent clauses change the meaning of independent clauses. Let’s take the example of this independent clause:

Sounds scary! This stand-alone clause means that you must stay in school forever. Now to make things even clearer, let’s add a dependent clause to make a complex sentence:

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It is easier to explain the difference between simple and complex sentences. A simple sentence is any sentence that has only one independent clause. Any sentence containing more than one sentence, including a complex sentence, cannot be a simple sentence.

Interestingly, if two sentences are logically related and you add an auxiliary conjunction, you can sometimes combine two simple sentences into one complex sentence.

Complex sentences often have fairly easy grammatical rules, although conditional sentences can get more complex. You only have to worry about commas in complex sentences if you use the correct dependent conjunction.

Here are some examples of complex sentences from famous authors to help you understand how they work. In each, we emphasized the secondary conjunction.

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“It is an ironic habit of human beings to run faster when they are lost.” – Rollo May

Once you understand the conjunctions and dependent clauses, complex sentences will not seem so complicated. You can compose them and improve them later with our tips on how to write better sentences.

If you still need help, you can always download it to make sure what you wrote is correct. It offers features that not only highlight errors, but also suggest better word choices and suggest phrases to improve clarity. Get one today and see your spelling improve. Definition: Any of a group of polymeric carbohydrates consisting of long chains of repeating units linked together by glycosidic bonds

Biological Definition: A polysaccharide is a carbohydrate consisting of long chains of repeating units linked together by glycosidic bonds. History

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. Carbohydrate refers to the unit structure of carbohydrates. Thus, a polysaccharide is a carbohydrate composed of many carbohydrates, particularly more than ten (mono)saccharide units.

Carbohydrates are organic compounds composed of carbon, hydrogen, and oxygen, usually in a 1:2:1 ratio. It is one of the main classes of biomolecules. They are an important source of energy. They also serve as structural elements. As nutrients, they can be divided into two main groups:

Simple carbohydrates, sometimes simply called sugars, are carbohydrates that are easily digested and act as a quick source of energy. Complex carbohydrates (such as cellulose, starch, chitin, and glycogen) are carbohydrates that take longer to digest and metabolize. They’re generally high in fiber and less likely to cause spikes in blood sugar, unlike simple carbohydrates.

Polysaccharides, like other forms of carbohydrates, are composed of hydrogen, carbon, and oxygen. The ratio of hydrogen atoms to oxygen atoms is usually 2:1, so they are also defined as:

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. Due to the presence of carbon and C-C and C-H covalent bonds, they are considered organic compounds similar to other carbohydrates.

Polysaccharides differ from oligosaccharides and disaccharides in how many monosaccharide units are present. Disaccharides consist of only two monosaccharides. Oligosaccharides contain more than two monosaccharides. The term oligosaccharide is often used to describe relatively shorter chains of polysaccharides. Polysaccharides are a type of biological macromolecule composed of multiple monosaccharide units.

Polysaccharides have different forms. Their structures range from simple linear forms to more complex, highly branched forms. Many

Because it causes the release of water as a by-product. One method of polysaccharide synthesis is the combination of subunits and more

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Hydrolysis is the process of converting polysaccharides into simple monosaccharide components. A condensation reaction involves removing water while hydrolysis uses water molecules. The process of converting polysaccharides to monosaccharides is called saccharification.

. Salivary amylase acts on starch and breaks it down into maltose. The next place of carbohydrate digestion will be the small intestine. Since gastric juice inhibits salivary amylase activity, the stomach does not take part in the digestion of carbohydrates. Therefore, the next stage of carbohydrate digestion will be the small intestine.

. This enzyme acts by breaking down partially digested carbohydrates into simple sugars. It releases digestive enzymes like the brush border of the small intestine.

Isomaltase cleaves polysaccharides at alpha 1-6 linkages and converts alpha-limit dextrin to maltose. Maltase breaks down maltose (a disaccharide) into two glucose units. Sucrose and lactase break down sucrose and lactose into monosaccharide components. Epithelial cells in the brush lining of the small intestine absorb monosaccharides. Glucose and galactose are taken up into intestinal cells (enterocytes) by active transport by glucose transporters (GluT). Fructose is also taken up by GluT, but the mode of transport (active or passive transport) is not yet clear. Enterocytes release monosaccharides into capillaries via passive transport (mainly facilitated diffusion). Simple sugars are then transported from the bloodstream to the cells of other tissues, especially the liver. Glucose in the blood can be used by the body to produce ATP. Otherwise, it is transported to the liver along with galactose and fructose (largely converted to glucose) to be stored as glycogen.

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The remaining carbohydrates that are not absorbed by the small intestine enter the large intestine. The intestinal flora in the large intestine metabolizes them anaerobically (eg, fermentation). This leads to gas production (eg hydrogen, CO

And methane) and fatty acids such as acetate and butyrate, which are readily metabolized in the body. The gases are exhaled, burping (

Glycogenesis is the metabolic process of making glycogen from glucose for storage. This process occurs mainly in liver and muscle cells in response to high glucose levels in the bloodstream. Especially short glucose polymers

Glucose is converted into long polymers for storage within cells. When the body needs metabolic energy, glycogen is broken down into glucose subunits in a process.

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Glycogenolysis is the process of breaking down stored glycogen in the liver so that glucose can be produced for use in energy metabolism. Glycogen stored in liver cells is broken down into glucose precursors. A single glucose molecule is cut from glycogen and converted to glucose 1-phosphate, which is converted to glucose 6-phosphate, which can undergo glycolysis.

In certain glycoconjugates. However, oligosaccharides are more of a carbohydrate component than polysaccharides. Glycosylation is the process of enzymatically attaching a glycan to a protein, lipid, or other organic molecule. The sequential glycosylation processes differ depending on the type of glycosylation. For example,

Associated glycosylation is the attachment of a glycan to the nitrogen atom of an aspartic or arginine residue of a protein. On the contrary,

Bound glycans, serine, threonine, tyrosine, bind to the hydroxyl oxygen of hydroxylysine,

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