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garri49 [273]
3 years ago
13

Why do you think it is important that biologists have a good understanding of chemistry?

Chemistry
1 answer:
AVprozaik [17]3 years ago
4 0
Well you see Chemistry a lot when you talk about cellular activity and processes. Cells take in compounds of elements on the smallest scale to keep the cell running. This way a biologist knows what exactly is going on in the cell to keep it alive.

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If solution A has twice as much solute as solution B is it possible for them to have the same concentration
zalisa [80]
The masses of solute in the 2 solutions can be different but result in the same concentration, this is best explained with examples. 
Say solution A contained 10g of solute and had a volume of 100dm^3
If solution B contained 5g of solute and had a volume of 50dm^3 this would make the concentrations of A and B identical.

6 0
3 years ago
Rutherford proposed that atoms have positive nuclei. Which statement correctly describes the nucleus of an atom?
kondor19780726 [428]
I think that The answer is B
7 0
3 years ago
Read 2 more answers
Suppose there is 0.63 g of HNO3 per 100 mL of a particular solution. What is the concentration of the HNO3 solution in moles per
Vadim26 [7]

Answer:

There are 0.09996826 moles per liter of the solution.

Explanation:

Molar mass of HNO3: 63.02

Convert grams to moles

0.63 grams/ 63.02= 0.009996826

Convert mL to L and place under moles (mol/L)

100mL=0.1 L

0.009996826/0.1= 0.09996826 mol/L

4 0
3 years ago
An aqueous solution of iron(II) iodide has a concentration of 0.215 molal. The percent by mass of iron(II) iodide in the solutio
Basile [38]

Answer:

6.24%

Explanation:

Molality by definition means a measurement of the number of moles of solute in solution with 1000 gm or 1Kg solvent. Notice the difference that Molarity is defined on the volume of solution and Molality on the mass of solvent.

So, An aqueous solution of iron(II) iodide has a concentration of 0.215 molal.

means 0.215 moles are present in 1 Kg of solvent.

The molar mass of Fe2I = 309.65 g / mole

mass of FeI2 = moles x molar mass

= 0.215 x 309.65

=66.57 gm

mass % of FeI2 = mass of FeI2 x 100 / total mass

= 66.57x 100 / (1000 +66.57)

= 6.24%

                           

8 0
3 years ago
Compared with gases, liquids: A. have stronger intermolecular attractions. B. have more space between their particles. C. are mu
Fiesta28 [93]
A. have stronger intermolecular attractions.
6 0
3 years ago
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