Answer:
i don't know if this is correct just let me know if it is
Explanation:
i would say C but (for later knowledge) the unfiltered waste would come out as kidney stones
Answer:
C it’s part of the excretory system just like the urethra
1
0.8 ppm
8 ppm
80 ppm
800 ppm
Answer : The concentration of (g) in parts per million is, 8 ppm
Explanation : Given,
Mass of oxygen gas (solute) = 0.008 g
Mass of water (solvent) = 1000 g
First we have to calculate the mass of solution.
Mass of solution = Mass of solute + Mass of solvent = 0.008 + 1000 = 1000.008 g
Now we have to calculate the concentration of (g) in parts per million.
ppm : It is defined as the mass of solute present in one million parts by mass of the solution.
Now put all the given values in this expression, we get
Therefore, the concentration of (g) in parts per million is, 8 ppm
The electronegativities of the two atoms play a part in determining what kind of bonds are formed. The main two types of chemical bonds are ionic and covalent. Covalent bonds are formed by atoms that share valence electrons and are most commonly formed between nonmetal atoms.
Their valance electrons are redistributed in ways that make the atoms more stable.
kinetic energy of a single particle
in a gas?
Answer:
The formula used to calculate heat of fusion:
q = m·ΔH f
The net ionic equation for this reaction is . In ionic equations the soluble compounds are written in their dissociated ion forms. The ionic equation can be determined by knowing the general solubility rules. In this problem there are sulfate compounds involved. It is important to know that sulfates are generally soluble except for sulfates of Ba, Pb, Ag, and Sr. Therefore, the ones dealt with in this problem, CuSO4 and FeSO4, are both soluble in water.
Further Explanation:
The complete equation for this reaction is:
CuSO4 and FeSO4 are soluble in water which will lead to the ionic equation:
Since the sulfate ion appears on both sides, it is a spectator ion. Spectator ions are unchanged in the chemical reaction and are removed from the net ionic equation:
Based on the net ionic equation it can be seen that this is a reduction-oxidation reaction. Iron was oxidized and copper was reduced.
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Keywords: ionic equation, solubility