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astra-53 [7]
3 years ago
7

Which of the following elements are in this chemical reaction Na (s) + MgF2. (s). - NaF (s) +. Mg?

Chemistry
1 answer:
yarga [219]3 years ago
6 0

Answer:

The chemical compounds found in this reaction are: sodium, magnesium and fluorine.

Explanation:

The chemical compounds of the reaction are expressed in the periodic table as follows:

In the case of sodium, the symbol is "Na"

In the case of fluorine, the symbol is "F"

In the case of Magnesium, the symbol is "Mg"

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What is the temperature increase of 6.4 kg of water when it is heated by a 7.7
lianna [129]
If you measure my hairline you will get about 90°
3 0
3 years ago
(WILL MARK AS BRAINLIEST!)
nekit [7.7K]

Answer:

Explanation:

As one moves down the vertical groupings of elements on the periodic table, it is evident that new shells are being added from top to down.

An atomic orbital is the region of space surrounding the nucleus where there is a high probability of finding an electron.

Down a group, the atomic radius increases as more shells are added to an atom.

3 0
3 years ago
The nonvolatile, nonelectrolyte DDT, C14H9Cl5 (354.50 g/mol), is soluble in diethyl ether CH3CH2OCH2CH3. Calculate the osmotic p
aleksandrvk [35]

Answer:

2.50 atm

Explanation:

We have 10.4 g of DDT (solute), whose molar mass is 354.50 g/mol. The corresponding moles are:

10.4 g × (1 mol/354.50 g) = 0.0293 mol

The molarity of the solution is:

M = moles of solute / liters of solution

M = 0.0293 mol / 0.286 L

M = 0.102 M

We can find the osmotic pressure (π) using the following pressure.

π = M × R × T

where,

R: ideal gas constant

T: absolute temperature

π = M × R × T

π = 0.102 M × 0.0821 atm.L/mol.K × 298 K

π = 2.50 atm

5 0
3 years ago
235
lisov135 [29]

Answer:

Average atomic mass of uranium = 237.97 amu

Explanation:

Given data:

Abundance of U-234 = 0.01%

Abundance of U-235 = 0.71%

Abundance of U-238 = 99.28%

Average atomic mass of uranium = ?

Solution:

Average atomic mass  = (abundance of 1st isotope × its atomic mass) +(abundance of 2nd isotope × its atomic mass) + (abundance of 3rd isotope × its atomic mass)  / 100

Average atomic mass  = (234×0.01)+(235×0.71)+(238+99.28) /100

Average atomic mass =  2.34 + 166.85+23628.64 / 100

Average atomic mass = 23797.83 / 100

Average atomic mass = 237.97 amu.

3 0
3 years ago
Substances A, B, and C can all act as oxidizing agents. In solution, A is green, B is yellow, and C is red. In the reactions in
igor_vitrenko [27]

Explanation:

Oxidizing agents are defined as the agents which oxidize other substance and itself gets reduced. These agents undergoes reduction reactions.

Reducing agents are defined as the agents which reduces the other substance and itself gets oxidized. These agents undergoes reduction reactions.

When oxidizing agent-A get reduced it changes green to colorless.

A+e^-\rightarrow A^-

When oxidizing agent-B get reduced it changes yellow to colorless.

B+e^-\rightarrow B^-

When oxidizing agent-C get reduced it changes red to colorless.

C+e^-\rightarrow C^-

1) When we added solution C that oxidizing agent-C in solution containing B^- ions changes from red to yellow:

C+B^-\rightarrow C^-+B(yellow)

So, in this C is oxidizing B^- ion into B which yellow in color.

C is reduced and B^- ions is oxidized.

Here, B^- are oxidized by C which means that C a better oxidizing agent than B.

2) When a solution of C is mixed with one containing A- ions, the color remains red.

C+A^-\rightarrow no reaction

As we had observed that no color change was seen on adding substance C to the solution with A^- ions which indicates that C was unable to oxidize A^- ions. Hence, not a better oxidizing agent than A

3 0
3 years ago
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