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s344n2d4d5 [400]
1 year ago
12

Which ion in each pair has greater charge density? Explain. (h) NO₃⁻ or CO₃²⁻

Chemistry
1 answer:
Semenov [28]1 year ago
4 0

CO₃²⁻ has greater charge density than NO₃⁻.

The charge density is a measurement of the amount of electric charge present per unit of surface area, body volume, or field. How much charge is held in a specific field is determined by the charge density. It is possible to calculate charge density in terms of length, area, or volume.

Charge per length is represented by linear charge density. Charge per area is represented by surface charge density, and charge per volume is represented by volume charge density. Charge densities are constant for homogenous charge distributions.

"CO₃²⁻  has the greater charge density because it has both a smaller volume and a larger ionic charge." charge density can be used to describe the charge distribution of a particle's volume, such as that of a molecule, an atom, or an ion. A lithium cation will therefore have a higher charge density than a sodium cation despite having more electrons than lithium because of its lower ionic radius.

To know more about charge density refer to:  brainly.com/question/12968377

#SPJ4

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30 POINTS!!!<br> NEED ASAL
nata0808 [166]

Answer:

ITS THE LAST ONE AND THE SECOND ONE

Explanation:

4 0
3 years ago
How many milliliters of 4.00 m hcl(aq) are required to react with 2.75 g of zn(s)?
Anna007 [38]
25 milliliters are required
7 0
3 years ago
A solution of hydrocloric acid has a molarity of 2.25 M HCl. If a reaction requires 5.80 g of HCI, what
Natali [406]

Answer:

0.071L

Explanation:

From the question given, we obtained the following data:

Molarity of HCl = 2.25 M

Mass of HCl = 5.80g

Molar Mass of HCl = 36.45g/mol

Number of mole of HCl =?

Number of mole = Mass /Molar Mass

Number of mole of HCl = 5.8/36.45 = 0.159mole

Now, we can obtain the volume required as follows:

Molarity = mole /Volume

Volume = mole /Molarity

Volume = 0.159mole/ 2.25

Volume = 0.071L

4 0
4 years ago
How can you efficiently determine the number of atoms in a sample of an element?
nata0808 [166]

Answer:

b. First determine the mass of the sample and then convert it to the number of atoms using Avogadro's number and the molar mass of the element.

Explanation:

a. First determine the mass of the sample and then convert it to the number of atoms using the molar mass of the element.  <em>FALSE. </em>As the mass is in grams and molar mass is in g/mol. This result in the moles of each element, not its number of atoms.

b. First determine the mass of the sample and then convert it to the number of atoms using Avogadro's number and the molar mass of the element.  <em>TRUE. </em>Mass and molar mass will result in moles of element. These moles could be converted in number of atoms using Avogadro's number that is in # atoms per mole.

c.Use atomic microscope to determine Avogadro's number, then determine the mass of the sample and convert it to the number of atoms.  <em>FALSE. </em>An atomic microscope is not used to determine Avogadro's number.

d.Use atomic microscope to count each atom. <em>FALSE. </em>There is not possible to count every single atom in an element. There are more atoms in a drop of water than stars in the sky.

I hope it helps!

3 0
3 years ago
A large glycogen molecule is converted into may smaller glucose molecules.what type of chemical reaction is this
likoan [24]
Answer is: catabolism.

Missing question:
Synthesis.
Catabolism.
Rearrangement.
Anabolism.
Catabolism (<span>the set of </span>metabolic<span> pathways)</span> breaks down large molecules (in this example glycogen, a polysaccharide) into smaller units (in this example glucose, a monosaccharide).
Glycogen is <span>the main storage form of glucose in the body.</span>
5 0
3 years ago
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