b. the pressure inside the balloon rises.
c. the volume of the balloon decreases.
d. the volume of the balloon increases
b. They have an oxidation number of 2-
c. They have an oxidation number of 2+
d. The have six valence electrons.
All the statement is true about the elements of group 16.
In periodic table 18 vertical column are present which is called groups which are arranged from left to right in the periodic table.
In periodic table 7 horizontal rows are present which is called periods.
Now lets check all options one by one.
Option (A): They need two electrons to complete their octet.
In periodic table Group sixteen have 6 elements in its valence shell. Group 16 elements needed two electrons to complete the octet valency. The valency of group 16 elements is 2. So it is true about the group 16 elements.
Hence, it is incorrect option.
Option (B): They have an oxidation number of 2-
Group 16 show variable oxidation state that is -2, +2, +4 and +6. So the statement is true.
Hence it is incorrect option.
Option (C): They have an oxidation number of 2+.
Group 16 show variable oxidation state that is -2, +2, +4 and +6. So the statement is true.
Hence it is incorrect option.
Option (D): They have six valence electrons
Group 16 elements are called Chalcogens. They have 6 valence electron so they achieve noble gas configuration. So it is true statement.
Hence, it is incorrect option.
Thus, from the above conclusion we can say that all the statement is true about the elements of group 16.
Learn more about the Group 16 elements here: brainly.com/question/19965333
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Answer:
Explanation:
Given data:
Volume of solution = 1.5 L
Mass of solute = 61.2 g
Molar mass of solute:
= 23 + 14 + (16 × 3)
= 23 + 14 + 48
= 85 g/mol
Required:
Molarity = ?
Formula:
Solution:
First, we have to find moles of solute.
We know that,
Moles = mass / molar mass
Moles = 61.2 / 85
Moles = 0.72 moles
Now, finding molarity:
Molarity = 0.72 / 1.5
The molarity of the 1.5 L solution of sodium nitrate containing 61.2 g of NaNO3 is approximately **0.480 M**
To calculate the molarity (M) of a solution, you can use the formula:
- Volume of solution (\( V \)) = 1.5 L
- Mass of sodium nitrate = 61.2 g
- Molar mass of sodium nitrate = 85 g/mol (Na: 23 g/mol, N: 14 g/mol, O: 16 g/mol)
First, calculate the moles of sodium nitrate using its molar mass:
Now, substitute the values into the molarity formula:
So, the molarity of the 1.5 L solution of sodium nitrate containing 61.2 g of NaNO3 is approximately **0.480 M**.
To know more about molarity refer here:
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Answer: the mass of an electron is approximately 9.10938356 × 10^-31 kilograms (kg)
Explanation: