This would be difficult to specify for you because you did not provide the genotype of the other parent. However, there are limitations to the possible combinations, so I will do each to help you out.
<u>1st possibility:</u>
<u>B B</u>
B BB BB
b Bb Bb
Brown eyes: 4 out of 4 or 100%
Blue eyes: 0 out of 4 or 0%.
<u>2nd possibility:</u>
<u>B b</u>
B BB Bb
b Bb bb
Brown eyes: 3 out of 4 or 75%
Blue eyes: 1 out of 4 or 25%.
<u>3rd possibility:</u>
<u>b b</u>
B Bb Bb
b bb bb
Brown eyes: 2 out of 4 or 50%
Blue eyes: 2 out of 4 or 50%.
<u>As long as there is a capital letter in the genotype, the dominant trait will come out. So if the combination is </u><u>Bb or BB</u><u>, then </u><u>BROWN </u><u>in this case will come out. The only time </u><u>BLUE eyes </u><u>will come out is if has two recessives in its genotype or </u><u>bb.</u>
Answer:
Given the balanced equation
CH4 (g) + 2O2 (g) → CO2 (g) + 2H2O (g)
we know that we'll get one mole CO2 for every 1 mole CH4. So let's calculate how many moles are in 50 g of CH4 by dividing it's mass by it's molar mass (16 g/mole). I get 3.125 moles. The equation says we should get the same number of moles of CO2, so set moles CO2 = 3.125 moles. Then we can find the mass of CO2 by multipying by the molar mass of CO2 (44 g/mole). We should expect 138 grams of CO2.
Explanation:
Answer:
Explanation:
The principle applied is the Markovnikoff's rule which states that when hydrogen chloride adds to a double bond, the hydrogen atoms join to the carbon that already has the most hydrogen atoms bonded to it. The rule wa postulated by a russian chemist known as Vladimir Markovnikoff.
In the markovnikoff's rule, there are sveral conditions that must be met, one of them is that no free radicals must be involved.
The reaction and the structure of the product is as shown in the attachment.
Answer:
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Explanation:
Answer:Good
Explanation:can't complain.