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Rudiy27
3 years ago
11

5. Which particles in an atom are in the nucleus? protonsa​

Chemistry
1 answer:
Vikentia [17]3 years ago
8 0

Answer:

Atomic Particles

Atoms consist of three basic particles: protons, electrons, and neutrons. The nucleus (center) of the atom contains the protons (positively charged) and the neutrons (no charge).

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PLSSSS HELP WILL GIVE BRAINLIEST!!!!!!!!!
docker41 [41]

Answer:

72.2 moles of water is spilled

Explanation:

as moles=mass/mr

so mr of water is 16+2=18

13000/18=72.2

for the second one you can work out the moles of o2

by using moles= number of particles /6.02*10^23

so 4.65*10^26/6.02*10^23

so i got 772.4 on my calculator  to work out the amount of mass

u use the equation mass=moles*mr

so 777.2*16=12435g of oxygen gas

hope it helps :)

8 0
3 years ago
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Which is an example of a chemical change?
nlexa [21]
<span>Some are burning wood, souring milk, mixing acid and base, digesting food, cooking an egg, heating sugar to form caramel, baking a cake, and <span>rusting of iron.</span></span>
3 0
4 years ago
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Near a volcano you would find?
Genrish500 [490]

Answer: Could you be more specific?

5 0
3 years ago
For each of the following pairs of substances, determine which has the larger molar entropy at 298 K: (A) Br₂(l) or (B) Cl₂(g) (
irakobra [83]

Explanation:

Entropy is defined as the degree of randomness present in a substance. Therefore, more is the irregularity present in a compound more will be its molar entropy.

Hence, decreasing order to molar entropy in state of matter is as follows.

                     Gases > Liquids > Solids

  • In the first pair, we are given Br_{2}(l) or Cl_{2}(g). Since, molar entropy of liquids is less than the molar entropy of gases.

Hence, Cl_{2}(g) will have larger molar entropy as compared to Br_{2}(l).

  • In the second pair, we are given Fe(s) or Ni(s). More is the molar mass of a compound more will its molar entropy. Molar mass of Fe is 55.84 g/mol and molar mass of Ni is 58.69 g/mol.

Hence, molar entropy of Ni(s) is more than the molar entropy of Fe(s).

  • In the third pair, we are given C_{2}H_{6}(g) or C_{2}H_{4}(g). As both the given species are gaseous in nature. So, more is the molar mass of specie more will be its molar entropy.

Molar mass of C_{2}H_{6}(g) is 30.07 g/mol and molar mass of C_{2}H_{4}(g) is 28.05 g/mol. Therefore, molar entropy of C_{2}H_{6}(g) is more than the molar entropy of C_{2}H_{4}(g).

  • In the fourth pair, we are given CCl_{4}(g) or CH_{4}(g). Molar mass of CCl_{4}(g) is 153.82 g/mol and molar mass of CH_{4}(g) is 16.04 g/mol.

Therefore, molar entropy of CCl_{4}(g) is more than the molar entropy of CH_{4}(g).

  • In the fifth pair, we are given HgO(s) or MgO(s). Molar mass of HgO is 216.59 g/mol and molar mass of MgO is 40.30 g/mol.

Hence, molar entropy of HgO(s) is more than the molar entropy of MgO.

  • In the fifth pair, we are given NaCl(aq) or MgCl_{2}(aq). Molar mass of NaCl 58.44 g/mol and molar mass of MgCl_{2}(aq) is 95.21 g/mol.

Hence, the molar entropy of MgCl_{2}(aq) is more than the molar entropy of NaCl(aq).

5 0
3 years ago
Match the formula for the following compound:<br> iron (III) sulfate
SIZIF [17.4K]

Answer:

Explanation:

Its chemical formula is Fe2(SO4)3

3 0
4 years ago
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