(x - a)(x - a) = x2 -2ax + a2
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The product
A product is the result of multiplying two numbers, "the product of six" is meaningless.
The product refers to the answer. 2 X 8 = 16 16 is the product
(17)(2)=14 product is fourteen so the product is the answer
xana escapes in the key
50/50 because the child gets 26 chromozones from each parent so the chances are 50/50.
Males are more likely than females to have sex-linked traits controlled by a recessive allele because they only need one recessive allele to have the sex-linked trait. In contrast, females need two recessive alleles to have the sex-linked trait, so they have a lower probability of having it.This is best viewed with a Punnet square. Say the recessive allele that controls the sex-linked trait is Xa. XA is the dominant allele and Y is the male chromosome.Scenario #1If the mom is XA XA and marries a man with the sex-linked trait Xa Y, then none of the sons will have the sex-linked trait. All the daughters will have the mutant allele, but they will all be carriers with normal phenotypes since they only have one mutant allele.XaYXAXA XaXa YXAXA XaXa YScenario #2If the mom is XA Xa and marries a man with the sex-linked trait Xa Y, then there is a 50% chance that each child will have the sex-linked trait, regardless of sex.XaYXAXA XaXA YXaXa XaXa YScenario #3If the mom is a carrier XA Xa and marries a normal man XA Y, then there is a 50% chance each son will have the sex-linked trait. The daughters may be carriers, but none of them will have the sex-linked trait.XAYXAXA XAXA YXaXA XaXa YScenario #4If the mom has the sex-linked trait Xa Xa and marries a normal man XA Y, then all of the sons will have the sex-linked trait. The daughters will be carriers, but none of them will have the sex-linked trait.XAYXaXA XaXa YXaXA XaXa YScenario #5If the mom has the sex-linked trait Xa Xa and marries a man who also has the sex-linked trait Xa Y, then all of their children will have the sex-linked trait.XaYXaXa XaXa YXaXa XaXa YAs you can see, there are many more strikethrough outcomes (8) where the male has the sex-linked trait controlled by a recessive allele than bold outcomes (3) where the female has the sex-linked trait. Thus, males are more likely than females to have sex-linked traits controlled by a recessive allele.
Males more frequently express sex-linked traits because they only have one X chromosome. Since most of the genes on the sex chromosomes are on the X chromosome and very few are on the Y, so any recessive gene on the X chromosome will be expressed.
For a recessive sex-linked trait to manifest in women it would have to be in double dose (XaXa) while for men in single dose (XaY). Women carriers would have one of each but would not be affected (XAXa). Knowing this it's quite easy to spot pedigrees where this kind of inheritance occures.Heterozygote mothers (gene carrier) can have sons that are affected (50% chance);Affected mothers have only affected sons (100%);No first generation daughter of an heterozygote mother will be affected but there is a 50% chance that she is a carrier;Affected fathers with normal mothers will have zero sons that are affected but all their daughters will be carriers;
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it cleaning product it cleaning product it cleaning product it cleaning product it cleaning product
the product is the answer -- I think the product is the key here.
A by product is a product which came out or is created as a result of creating the main product.
The product is called absolute product when the product is up to the requirements of the customers.
The square of the product
Primary product is the main raw product whiles secondary product is the product found from the primary product