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kifflom [539]
3 years ago
13

True or false:

Chemistry
1 answer:
RSB [31]3 years ago
6 0

Answer:

True.

Explanation:

According to Dalton law of partial pressure,

The total pressure exerted by mixture of gas is equal to the sum of the partial pressure of individual gases.

Mathematical expression:

P(total) = P₁ + P₂ + .............P(n)

P₁= Partial pressure of one gas

P₂ = Partial pressure of second gas

Pn = Partial pressure of number of gases

For example:

A gaseous mixture consist of He and Ne gas . The pressure exerted by He is 2 atm while neon exerted 4 atm. The total pressure will be:

P(total) = P(He) + P(Ne)

P(total) = 2 atm + 4 atm

P(total) =  6 atm

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The relative mass is 1
3 0
3 years ago
If the unknown elements on the periodic table are "unknown" how did they end up in the periodic table in the first place? *think
mezya [45]

Answer:

The periodic table is a marvel of organization, with each column and each row showing all ... Scientists identified the rest of them in the first half of the 20th century. ... They created in their lab a synthetic, previously unknown element. ... The Berkeley scientists did this for weeks on end, and produced a tiny amount of curium.

Explanation:

8 0
4 years ago
Group 1 elements have an average electronegativity of 0.84 (not
sergey [27]

A) The bond that will be formed by these elements is : <u>Ionic Bond </u>

B) Group 1 elements Gives up its electron to Group 17 elements

<h3><u /></h3><h3><u>Electronegativity values </u></h3>

From the electronegativity values given in the question group 17 elements with an electronegativity value of 2.99 are more electronegative than group 1 elements with a value of 0.84. Therefore they accept electron transfer from group 1 elements.

The acceptance of electrons from group 17 elements leads to formation of an ionic bond between group 1 and group 17.

Hence we can conclude that the bond that will be formed by these elements is Ionic bond  and Group 1 elements gives up its electron to group 17 elements.

Learn more about Ionic bonds : brainly.com/question/13526463

7 0
2 years ago
7. Give the electron configurations for Sc3+
PolarNik [594]
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4 0
4 years ago
First: Calculate the number of moles of Kool-Aid powder needed to make 100mL of a 0.1M solution.
morpeh [17]
For this question, we can use the molarity formula, which is as follows:

Molarity= \frac{moles}{Liters}

We know that we want a 0.1M solution in 100 mL, so we can plug those into the equation to find the number of moles required:

0.1M= \frac{moles}{0.1L}
moles=0.01

So now we know that the number of moles of the Kool-Aid powder is 0.01. We also know that the chemical formula for this powder is C_{12}  H_{22}  O_{11}.

We can find the molar weight of this powder by taking the atomic weight from the periodic table and multiply it by the number of atoms in the compound. Let's find the molar weight of the powder:

Find the atomic weight of carbon:

C=12.01 g

There are 12 C's, so we multiply by 12:

12.01g*12=144.12g

Then we have 22 H's, each having an atomic weight of 1.008g:

1.008g*22=22.18g

And finally there are 11 O's, each with an atomic weight of 15.99g:

15.99g*11=175.89g

Then we add up all of the weights:

144.12g+22.18g+175.89g=342.19g  -> So we know that the molar weight of the Kool-Aid powder is 342.19g.

Now we can find the amount of grams that we need for the desired solution as follows:

\frac{342.19g}{1mol}* \frac{0.01mol}{1}=3.42g

So now we know that we need 0.01 moles of the powder, and we need 3.42g of the powder to make the desired solution.
7 0
3 years ago
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