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andreyandreev [35.5K]
3 years ago
11

How much pressure (in atm) would be found in 5.8 moles of an ideal gas at 358 K and volume of 3.9 L?​

Chemistry
2 answers:
wlad13 [49]3 years ago
8 0

Answer:

4426.70 atm

Explanation:

pv = nrt

p = nrt/v

p = (5.8 * 8.3144598 * 358) / 3.9

p = 4426.70 atm

KatRina [158]3 years ago
4 0

Answer: 3.984 L

Explanation:

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You exert the same force on two objects of different masses. Which object will have the greater acceleration? Explain your answe
Shalnov [3]

The one with the smaller mass because they have the same force but one is lighter

5 0
3 years ago
Aluminum and oxygen react according to the following equation: 4Al(s) 3O2(g) --> 2Al2O3(s) What mass of Al2O3, in grams, can
algol [13]

Answer:

8.66 g of Al₂O₃ will be produced

Explanation:

4Al (s) + 3O₂ (g)  → 2Al₂O₃ (s)

This is the reaction.

Problem statement says, that the O₂ is in excess, so the limiting reactant is the Al. Let's determine the moles we used.

4.6 g / 26.98 g/mol = 0.170 moles

Ratio is 4:2.

4 moles of aluminum can produce 2 moles of Al₂O₃

0.170 moles of Al, may produce (0.170  .2)/ 4 = 0.085 moles

Let's convert the moles of Al₂O₃ to mass.

0.085 mol . 101.96 g/mol = 8.66 g

3 0
3 years ago
Read 2 more answers
1.2 What type of bonding occurs when hydrogen form a diatomic molecule?​
Irina-Kira [14]

Answer:

I think it is covalent bonding...

Explanation:

The bonding is covalent in homonuclear diatomic molecules. Each atom in the molecule has the same electronegativity, which means electrons are shared equally between the two. The electronegativity of the atoms in heteronuclear diatomic molecules varies, and these molecules have polar covalent bonds. A dipole is formed when a molecule interacts with another molecule. (i think it's covalent bonding but i might be wrong)

hope this helps...

8 0
3 years ago
Read 2 more answers
Calculate the volume of 1 M NaOH needed to prepare 10.0 ml of a 0.10 M solution.
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Answer is: <span>volume of 1 M NaOH is 1 ml.
</span>c₁(NaOH) = 1 M.
V₂(NaOH) = 10 ml.
c₂(NaOH) = 0,1 M.
V₁(NaOH) = ?
c₁ - original concentration of the solution, before it gets diluted.
c₂ - final concentration of the solution, after dilution.
V₁ - <span>volume to be diluted.
V</span>₂ - <span>final volume after dilution.
c</span>₁ · V₁ = c₂ · V₂.
V₁(NaOH) = c₂ · V₂ ÷ c₁.
V₁(NaOH) = 0,1 M · 10 ml ÷ 1 M.
V₁(NaOH) = 1 ml.
7 0
3 years ago
Nitric oxide is unique because it:
musickatia [10]
I believe ur answer is b. Is not stored in vesicles but is made on demand.
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8 0
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