Answer:
2.2 °C/m
Explanation:
It seems the question is incomplete. However, this problem has been found in a web search, with values as follow:
" A certain substance X melts at a temperature of -9.9 °C. But if a 350 g sample of X is prepared with 31.8 g of urea (CH₄N₂O) dissolved in it, the sample is found to have a melting point of -13.2°C instead. Calculate the molal freezing point depression constant of X. Round your answer to 2 significant digits. "
So we use the formula for freezing point depression:
In this case, ΔTf = 13.2 - 9.9 = 3.3°C
m is the molality (moles solute/kg solvent)
Molality = 0.53 / 0.35 = 1.51 m
So now we have all the required data to solve for Kf:
to write laws
to execute laws
to lead the military
Answer:
to interpret laws
Explanation:
Answer:
To Interpet Laws
Explanation:
(n + 8)(n - 2)
n2- 6n - 16
n2+ 6n - 16
n2- 6n + 16
Answer:The product of the given expression is :
Explanation:
Given expression:(n + 8)(n - 2)
Using identity:
a = n, b=8, c= (-2)
The product of the given expression is :
Answer : The product of the given expression is:
Explanation :
The given expression is:
First we have to open the bracket by multiplying the terms.
Now we are adding like terms.
Hence, the product of the given expression is,
Answer:
Fe+2HOH=Fe(OH)_2+H_2. Iron is divalent to hydrogen and water.
Explanation: