The reaction between an organic acid and an alcohol produces(1) an aldehyde (3) an ether
(2) a ketone (4) an ester

Answers

Answer 1
Answer:

Answer : The correct option is, (4) an ester.

Explanation :

As we know that an organic acid is an organic compound that has the properties of an acid. For example : Acetic acid.

And the alcohol is an organic compound that contains one or more hydroxyl groups attached to a carbon atom. Fro example : Ethanol.

When an organic acid react with an alcohol the it produces an ester.

For example : when an organic acid (acetic acid) react with an alcohol (ethanol) to gives an ester (methoxyethane).

The balanced chemical reaction will be,

CH_3COOH+CH_3OH\rightarrow CH_3C-O-O-CH_3+H_2O

Hence, the reaction between an organic acid and an alcohol produces an ester.

Answer 2
Answer: The reaction between an organic acid and an alcohol produces an Ether.

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Which of the following is a nonmetal?a. iron
b. silver
c. oxygen
d. copper

Answers

Iron, Silver and Copper are all metal. Only Oxygen in this specific choices is not metal. Oxygen is known to be the 3rd most abundant element in the Universe but the 1st most abundant element on earth by mass. And we all know that Oxygen is a very essential part in our daily living in this world, actually not only humans who need Oxygen but also some creatures like animals. Oxygen is represented as O in the periodic table and its atomic number is 8. 

A lahar is a type of mudflow that occurs?A. after a volcanic eruption
B. before a hurricane make landfall.
C. after a severe thunderstorm
D. during a tornado

Answers

A lahar is a type of mudflow that occurs after a volcanic eruption. It is a sort of mudflow or trash stream made out of a slurry of pyroclastic material, rough flotsam and jetsam, and water. The material streams down from a fountain of liquid magma, normally along a waterway valley. Lahar is the most deadly by-products of the eruption because of the speed they can travel.

A lahar is a type of mud flow that occurs?  The answer is, A. after a volcanic eruption.

What properties of an element are affected by electron distribution?=Define malleability.

Define ductility.

State one reason gold is used in jewelry.

Why is mercury no longer used in many devices?

What are the properties of nonmetals?

List the states of matter in which nonmetals can exist and give one example of each state.

What are the physical properties and uses of sulfur?

What are the physical properties and uses of bromine?

What are the physical properties and uses of helium?


Define “metalloid.”

Why would it be difficult to decide whether or not an element was a metalloid based on its properties?

Why is silicon used extensively in electronics?

What are borosilicates used for?

Why is the use of arsenic as an insecticide decreasing?

What is a main application of antimony?

Answers

Answer:

Capable of being hammered out thin

Explanation:

, as certain metals; malleable. capable of being drawn out into wire or threads, as gold. able to undergo change of form without breaking.

Balance this equation please.

Answers

2K + 2H2O = 2KOH + H2
2K + 2H2O = 2KOH + H2  Actually Really what That other guy said

A rock can be broken down into different kinds of substances by physical processes. No chemical reactions are needed to separate different parts of a rock into pure substances. This is because a rock is a(n) .

Answers

This is because a rock is an aggregate of different minerals. This means that it is a physical mixture rather than a chemical one. While a rock is a combination of different minerals, minerals are substances with uniform composition, represented by a chemical formula.

Answer:

the awnser is minerals :)

Explanation:

just took the test on edg.

Show the calculation of the molar mass (molecular weight) of a solute if a solution of 5.8 grams of the solute in 100 grams of water has a freezing point of 1.20oC. Kf for water is 1.86

Answers

Answer : The molar mass of solute is, 89.9 g/mol

Explanation : Given,

Mass of solute = 5.8 g

Mass of solvent (water) = 100 g

Formula used :  

\Delta T_f=K_f* m\n\nT_f^o-T_f=T_f*\frac{\text{Mass of solute}* 1000}{\text{Molar mass of solute}* \text{Mass of water}}

where,

\Delta T_f = change in freezing point

T_f^o = temperature of pure solvent (water) = 0^oC

T_f = temperature of solution = 1.20^oC

K_f = freezing point constant of water = 1.86^oC/m

m = molality

Now put all the given values in this formula, we get

(0^oC)-(1.20^oC)=1.86^oC/m* \frac{5.8g* 1000}{\text{Molar mass of solute}* 100g}

\text{Molar mass of solute}=89.9g/mol

Therefore, the molar mass of solute is, 89.9 g/mol