The number of white blood cells decreases when fighting infection.
True
False

Answers

Answer 1
Answer:

TRUE

Does the white blood cell count decrease when fighting an infection?

This is because your body releases more of these cells to fight the infection. However, if you have certain illnesses such as HIV or cancer, your white blood cell count can drop to very low levels. Taking medicines that weaken your immune system may reduce your WBC.

it produces antibodies to fight bacteria, viruses, and other potentially harmful invaders. Neutrophils. They kill and digest bacteria and fungi. They are the most type of white blood cells and are the first line of defense in the event of an infection.

Adults have a low white blood cell count of less than 4,000 cells per microliter of blood. Low white blood cell counts can be an indicator of certain medical conditions, including lupus, rheumatoid arthritis, vitamin deficiency, or side effects of cancer treatment.

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Answer 2
Answer: false
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Explain a condensation and a hydrolysis reaction.

Answers

Answer:

Explanation:

Condensation Reaction:

A condensation reaction, also known as a dehydration synthesis reaction, is a chemical process in which two molecules combine to form a larger molecule, while a smaller molecule, such as water, is produced as a byproduct. In a condensation reaction, two functional groups, often one containing an -OH group (hydroxyl group) and the other containing an -H group (hydrogen atom), react with each other.

The reaction typically involves the removal of a water molecule (-H2O) to form a covalent bond between the two molecules. This process is commonly seen in the formation of complex organic molecules, such as the synthesis of proteins and the formation of carbohydrates like disaccharides. For example, in the formation of a disaccharide like sucrose (table sugar), a condensation reaction combines a glucose molecule with a fructose molecule, and a water molecule is eliminated in the process.

Hydrolysis Reaction:

A hydrolysis reaction is the reverse of a condensation reaction. In a hydrolysis reaction, a covalent bond in a large molecule is broken by the addition of a water molecule. This process results in the breakdown of the larger molecule into two or more smaller molecules. In essence, the water molecule is used to cleave the bond between the two subunits of the larger molecule.

Hydrolysis reactions are common in the digestion of complex molecules in living organisms. For example, when you eat carbohydrates (like starch) or proteins, the body uses hydrolysis reactions to break down these complex molecules into their constituent monomers (glucose for carbohydrates and amino acids for proteins). Enzymes in the digestive system facilitate hydrolysis reactions, making these large molecules more easily absorbed and utilized by the body.

In summary, a condensation reaction joins molecules together by removing a water molecule, while a hydrolysis reaction breaks down molecules by adding a water molecule to split the bond between their subunits. These processes play critical roles in various biochemical and synthetic pathways in living organisms and chemistry.

Final answer:

Condensation or dehydration synthesis is a reaction where two molecules bond, releasing a water molecule. Hydrolysis involves a water molecule breaking down a compound's bonds. These reactions often occur during the formation or breakdown of larger molecular structures.

Explanation:

A condensation reaction, also known as dehydration synthesis, involves the bonding of two reactants where one gives up a hydrogen atom, and the other gives up a hydroxyl group (OH). These form a covalent bond, and a molecule of water is released as a byproduct.

On the other hand, hydrolysis involves the breaking of a compound's bonds by a water molecule, which is split into H and OH. This results in one portion of the split compound bonding with the hydrogen atom, and the other with the hydroxyl group.

As an analogy, in the formation of macromolecules, individual smaller units called monomers (like beads in a necklace) can join together to form a polymer (the completed necklace). During this process, a water molecule is released - this is condensation or dehydration synthesis. When the necklace is taken apart, a water molecule is consumed - this is hydrolysis.

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The kinetic molecular theory helps explain relationships between

Answers

gases, energy, temperature, phases.

It explains the relationships between molecules of gases, liquids and solids.

Using less water is one way to practice watera. filtration.
b. distribution.
c. conservation.
d. irrigation.

Answers

Answer: Option (c) is the correct answer.

Explanation:

When we avoid wastage of water or overuse of then then it is known as conservation of water.

For example, turning off tap when bucket placed below it is filled with water means avoiding wastage of water.

Whereas over flow of water from the bucket is wastage of water.

Thus, we can conclude that using less water is one way to practice water conservation.

Using less water is one way to practice c. conservation. That would come in handy for a drought :D. Hope this helps and have a good day!

The _______ receives digested food components and stores the glucose to be released into the blood stream for future use.A. liver
B. stomach
C. small intestine
D. large intestine

Answers

its actualy liver! i got small intestine wrong:/

You are studying the equilibirum between S8 and S2 gases at 0 celcius, you place a smaple of s2 in an otherwise empty, rigid container at an initial pressure of 3.-0 atm. wher eit reactsto form S8. at equilimrium, the partial pressure of s2 is 2.07 atm. calculate kp and kc.

Answers

Answer:

Kp and Kc are 0.01266 and 145.17, respectively.

Explanation:

Please check document attached.

What is Atomic Radius

Answers

Answer:

Atomic Radius can be simply defined as the distance between the last shell of electrons and the nucleus of an atom.

Answer: The atomic radius of a chemical element is a measure of the size of its atoms, usually the mean or typical distance from the center of the nucleus to the boundary of the surrounding shells of electrons. Illustrated Glossary of Organic Chemistry - Atomic radius. Atomic radius: The radius of an atom. This distance between an atom's nucleus and outer electron shell. ... Atomic radius differs with the bonding state of an atom (for example a nonbonded atom of an element versus the same element within a covalent bond). Atomic radius is determined as the distance between the nuclei of two identical atoms bonded together. The atomic radius of atoms generally decreases from left to right across a period. The atomic radius of atoms generally increases from top to bottom within a group.

hope this helps..... Stay safe and have a great weekend!!!! :D