Answer:
10.81 amu
Explanation:
The average atomic mass of Boron can be calculated as follows :
So, the average atomic mass of boron is 10.81 amu.
(2) CH2O (4) C12H24O12
Compare the electrical conductivity of the aqueous product in the reaction to the electrical conductivity of the white solid that remains after the water is evaporated from the solution.
Write the chemical name of the base produced in the reaction.
State one change in reaction conditions that will increase the rate of the reaction.
Answer:
- Calcium is more conductive than calcium hydroxide.
- Calcium hydroxide.
- Addition of more either calcium or water to the reaction vessel
Explanation:
Hello,
In this case, based on the given reaction and information, calcium's electrical conductivity 0.298 106/(cm*Ω) which is a relatively high value compared to it its base has due to its large insolubility.
In addition, the name of the formed base is calcium hydroxide based on the IUPAC rules.
Moreover, the addition of more either calcium or water to the reaction vessel will generate more calcium hydroxide.
Best regards.
(2) deposition (4) fission
Answer:The correct answer is option (4).
Explanation:
Nuclear reaction :These the chemical reaction in which change in identity of a nucleus of an atom takes place.It is of two types:
From the given options the option identifying the nuclear reaction is fission.Hence. the correct answer is option 4.
The molarity of the solution is the ratio of moles of solute to the volume of the solution in L. The molar mass of sodium carbonate is 106 g/mol and molarity is 0.167 M.
Molar mass is the mass of the compound that is given by the addition of the atomic mass of the individual atom present in the compound with respect to their stoichiometry coefficients.
The molar mass (M) of sodium carbonate can be given as,
Here mass of sodium = 23, carbon = 12 and oxygen = 16
Substituting values of the atomic mass we get:
Hence, the molar mass of sodium carbonate is 106 g/mol.
Now molarity of sodium carbonate can be estimated as:
Therefore, 106 g/mol is the molar mass and 0.16 M is the molarity of sodium carbonate.
Learn more about molar mass and molarity here: