Hematocrit & Hemoglobin
The color top for CBC (Complete Blood Count) is lavender.
Lavender CBC is complet blood count
A lavender-top tube should be collected for a complete blood count (CBC).
The color of the tube commonly used for CBC (Complete Blood Count) is lavender or purple.
The lavender/purple tube is typically used for a Complete Blood Count (CBC) test.
In terms of professions, it typically stands for medical doctor.
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To determine the genotypes of the parents in the pedigree, we need to analyze the possible combinations. The combinations of HH and Hh would produce offspring with either HH or Hh genotypes. The combination of HH and hh would produce offspring only with Hh genotypes. The combination of hh and hh would produce only hh offspring, while Hh and Hh would yield a mix of HH, Hh, and hh. Therefore, the possible genotypes of the parents could be HH and Hh, or Hh and Hh, depending on the offspring observed in the pedigree.
HH and Hh; Hh & Hh;Hh &hh; HH & hh
In a single heterozygous cross Hh x Hh, the genotypic probabilities of the offspring can be determined using a Punnett square. The possible genotypes are HH, Hh, and hh. The probabilities are: 25% for HH, 50% for Hh, and 25% for hh. Thus, the genotypic ratio is 1 HH : 2 Hh : 1 hh.
Genotype for straight hair is recessive and for curly hair is dominant. So lets suppose this: h = straight hair H = curly hair Then to get straight hair, for it being a recessive for that characteristic, your children must be hh. If they are Hh, hH, or HH, they will have curly hair You, for having straight hair are hh, your husband can be Hh or HH. If you quickly use Punnett square (http://en.wikipedia.org/wiki/Punnett_square) to see the odds of each possible genotype your children might have, you will have the following: If hh + Hh: 1) hH > curly 2) hh > straight Result: 50% chances of getting straight hair If hh + HH: 1) hH > curly 2) hH > curly Result: 0% chances of getting straight hair So, yes, it is possible.
Heterozygote X HeterozygoteEg.Hh X Hh- produces HH, 2 Hh, hh = 3 different genotypesWhereas:HH X hh- produces all HhAnd HH X HH- produces all HH
In this scenario, the bull without horns has the genotype HH or Hh, while the cow with horns must have the genotype hh since horned is recessive. Since one offspring is horned (hh), the bull must be heterozygous (Hh) to produce this result. Therefore, the offspring genotypes are one horned (hh) and three without horns (Hh), reflecting the dominant trait of hornlessness in the bull.
Make a punnett square! 50% Hh 50% hh
Yes - Hh is heterozygous. HH is homozygous, and hh is homozygous.
Type your answer here... due to viral and bacterial infection
H is a dominant trait for the hair color red. The trait for white hair is recessiv.The parents genotypes are HH x hh.What will the genotype of the offspring be?