Answer: helium
Explanation:
Edit: im really sorry i thought i was answering a different question.
Answer:
0.0693M Fe
Explanation:
It is possible to quantify Fe in a sample using Mn as internal standard using response factor formula:
F = A(analyte)×C(std) / A(std)×C(analyte) <em>(1)</em>
Where A is area of analyte and std, and C is concentration.
Replacing with first values:
F = 1.05×2.00mg/mL / 1.00×2.50mg/mL
<em>F = 0.84</em>
In the unknown solution, concentration of Mn is:
13.5mg/mL × (1.00mL/6.00mL) = <em>2.25 mg Mn/mL</em>
Replacing in (1) with absorbances values and F value:
0.84 = 0.185×2.25mg/mL / 0.128×C(analyte)
C(analyte) = <em>3.87 mg Fe / mL</em>
As molarity is moles of solute (Fe) per liter of solution:
= <em>0.0693M Fe</em>
Answer: A chlorine atom has an atomic number of 17 and a mass number of 38. This chlorine atom has 18 neutrons
Hope this helps :)
Answer:
There are 77 millimoles of nitric acid present in 35.0 mL of a 2.20 M solution
Explanation:
Molarity of the solution = 2.20 M
![Molarity=\frac{number\:of\:moles}{Volume\:of\:Solution\:in\:L}\\\\Number\:of\:moles=Molarity\times(Volume\:of\:Solution\:in\:L)\\\\Volume\:of\:Solution=35\:mL=35\times10^{-3}L\\\\Number\:of\:moles=2.20\times35\times10^{-3}=77\times10^{-3}\:moles\:of\:HNO_{3}](https://tex.z-dn.net/?f=Molarity%3D%5Cfrac%7Bnumber%5C%3Aof%5C%3Amoles%7D%7BVolume%5C%3Aof%5C%3ASolution%5C%3Ain%5C%3AL%7D%5C%5C%5C%5CNumber%5C%3Aof%5C%3Amoles%3DMolarity%5Ctimes%28Volume%5C%3Aof%5C%3ASolution%5C%3Ain%5C%3AL%29%5C%5C%5C%5CVolume%5C%3Aof%5C%3ASolution%3D35%5C%3AmL%3D35%5Ctimes10%5E%7B-3%7DL%5C%5C%5C%5CNumber%5C%3Aof%5C%3Amoles%3D2.20%5Ctimes35%5Ctimes10%5E%7B-3%7D%3D77%5Ctimes10%5E%7B-3%7D%5C%3Amoles%5C%3Aof%5C%3AHNO_%7B3%7D)
Therefore, there are 77 millimoles of nitric acid present in 35.0 mL of a 2.20 M solution
Heart: Pumps blood through the body
Bone: Provides structure
Stomach: Breaks down food into small particles
Lungs: Oxygenates blood