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sesenic [268]
3 years ago
5

Which of the following molecules can form hydrogen bonds like it

Chemistry
1 answer:
mario62 [17]3 years ago
7 0
It would be (A) NH3 thats is the correct answer
You might be interested in
How many copper atoms are in a pure copper statue with a mass of 132 kg
Gnom [1K]
There are 6.022 x 10^23 copper atoms in a mole.
4 0
3 years ago
I need help ASAP!
MaRussiya [10]
Calcium reacts gently with water to give hydrogen and calcium hydroxide, which is only slightly soluble, thus slows down the reaction.

It will be assumed that hydrochloric acid used is a dilute aqueous solution.

However, calcium reacts with hydrochloric acid to give calcium chloride which is readily soluble in water, and hydrogen, being a typical reaction of relatively active metals with acids.
Ca(s) + 2HCl(aq)  -> CaCl2(aq) +H2(g) ↑ + heat

The clues that it is a chemical reaction could be:
- formation of a new substance, gaseous hydrogen
- disappearance of a metallic solid in the solution
- heat formed during the vigorous reaction.

As silver is below hydrogen in the electrochemical series, it will not be expected to react with dilute hydrocloric acid. (however, it dissolves in oxidizing acid such as nitric acid, but not displacing hydrogen as a product).

8 0
3 years ago
(Help would be greatly appreciated, chemistry is not my strong suit) How many moles of NaCl are present in a solution with a mol
tatyana61 [14]

Molarity is a unit of concentration defined as the number of moles of solute (the substance being dissolved) per volume of solution (the solvent in which all the solute is dissolved). Mathematically, molarity is expressed as

M = \frac{\text{ mol solute}}{\text{ L solution}}.

In this question, we are given the molarity and the volume of a solution of NaCl. We can use this information to calculate the number of moles of NaCl present in the solution. Rearranging the equation to solve for moles of solute, we multiply the molarity by the volume of the solution (the units for volume must be in liters, so 125 mL is expressed as the equivalent 0.125 L):

(8.59 \text{ M})(0.125 \text{ L}) = 1.07 \text{ moles of NaCl}.

The question asks for the number of moles of NaCl in this solution, so number 3 would be correct.

8 0
3 years ago
13. why do sodium and chloride ions in the extracellular fluid and potassium ions in the intracellular fluid behave as though th
Whitepunk [10]

NaCl is the primary nonpenetrating solute of the ECF. Its ions carry a charge, making it difficult for them to freely pass through the phospholipid bilayer of the cell membrane. While some Na+ does leak into cells, Na+-K+-ATPases pump Na+ out at roughly the same rate, making this solute functionally impermeable

Osmolarity is a measure of the concentration of osmotically active particles in a solution. It is sometimes called a “colligative” property of the solution by chemists because it depends on the number of particles in the volume of the solution rather than the identity of the particles.

One mole of any substance has Avogadro’s number (6.02 × 1023) of particles.

Molarity (M) of a solution is an expression of concentration, with one mole of solute per liter of solution.

the molarity of a solution is not always the same as the solution’s osmolarity. This is because some solutes, such as ionic compounds like NaCl, dissociate into separate particles (e.g., Na+ and Cl−) when dissolved in water.

The formula for osmolarity is:

osmolarity = molarity * dissociation factor

The dissociation factor for an ideal solution of NaCl is 2, given that the compound is made up of 2 ions.

Solutes that enter a cell by any means are said to be “penetrating” solutes. Solutes that do not enter the cell are said to be “nonpenetrating” solutes.

NaCl is the primary nonpenetrating solute of the ECF. Its ions carry a charge, making it difficult for them to freely pass through the phospholipid bilayer of the cell membrane. While some Na+ does leak into cells, Na+-K+-ATPases pump Na+ out at roughly the same rate, making this solute functionally impermeable.

For more information on osmosis click on the link below:

brainly.com/question/11534932

#SPJ4

4 0
2 years ago
A student needs 500 mL of a 1.5 M solution of NaCl for an experiment. How many moles of NaCl should she use?
masha68 [24]

Answer:

She should use 0.75 mol.

Explanation:

By definition, molarity (M) is the <u>number of moles of solute per liter of solution</u>. One liter of solution is equal to 1000 mL.

Therefore,

1000 mL -------- 1.5 moles of NaCl

500 mL --------- x= 0.75 moles of NaCl

The moles contained in 500 mL of a 1.5 M NaCl solution are 0.75.

5 0
3 years ago
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