Task 4 A. For the following genotypes state the ABO blood phenotype. |A|A_ |B10_ 191⁰- |A|B_ B. Using genetic diagrams, show how it is possible for a couple with a type A mother and a type B father can have a child with type O blood.
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- Problem 3. If a woman is hemophiliac, she will give birth to only hemophiliac sons regardless of the genotype of the father. Construct a Punnett squares to confirm this. There should be two of them. a) Construct a Punnett Square - List gametes in the area with the dashed line and the genotypes of the offspring in the area with the sold line. b) Construct a Punnett Square - List gametes in the area with the dashed line and the genotypes of the offspring in the area with the sold line. Please show in the actual punnett square table!Problem 3. If a woman is hemophiliac, she will give birth to only hemophiliac sons regardless of the genotype of the father. Construct a Punnett squares to confirm this. There should be two of them. a) Construct a Punnett Square - List gametes in the area with the dashed line and the genotypes of the offspring in the area with the sold line. b) Construct a Punnett Square - List gametes in the area with the dashed line and the genotypes of the offspring in the area with the sold line. Please show with BOTH PUNNETT SQUARES THERE SHOULD BE TWO!!!!Problem 3. If a woman is hemophiliac, she will give birth to only hemophiliac sons regardless of the genotype of the father. Construct a Punnett squares to confirm this. There should be two of them. a) Construct a Punnett Square - List gametes in the area with the dashed line and the genotypes of the offspring in the area with the solid line. b) Construct a Punnett Square - List gametes in the area with the dashed line and the genotypes of the offspring in the area with the solid line.
- Q18:The drop-down options in the 1st picture is the same for all of the drop-downs. Please use them for each.Assignment Objectives: When given a family’s genetic history, deduce the genotypes for specific family members. •Describe the inheritance and expression of various genetic disorders found in humans. •Determine how genetic screening and counseling can be used to help counsel individuals dealing with lethal genetic disorders in their family. Read through each scenario and answer the following questions: a. Determine the genotypes of all individuals discussed in each scenario in addition to yours, your partners’, and your unborn child. For example, “You remember your partner telling you that their father died at an early age of Huntington’s disease.” In this case you would need to determine your partner’s father’s genotype. b. Determine what probability your unborn child will inherit the disorder (be sure to include a Punnett square)? i. If you are unable to determine your child’s chance of inheriting the disorder what additional information do you require? c. Are you worried about…Problem 4. In order to give birth to a hemophiliac daughter, the father must be hemophiliac, the mother must be a heterozygote carrier or a hemophiliac herself. Construct Punnett squares to confirm these statements. There should be two of them. a) Construct a Punnett Square - List gametes in the area with the dashed line and the genotypes of the offspring in the area with the sold line. b) Construct a Punnett Square - List gametes in the area with the dashed line and the genotypes of the offspring in the area with the sold line.
- Q39: Select all that applyQ1: Which of the children in this Punnett square represents Zoe? What is her genotype? Q2: If Zoe’s parents had another child, what is the probability that the child would have cystic fibrosis? That the child would be a CF carrier? Q3: If Zoe is able to have a child of her own someday, and the other parent is not a carrier of cystic fibrosis (he would likely be tested before they chose to have children), what is the probability that the child would have cystic fibrosis? That the child would be a carrier?Q43: Select all that apply, more than one answer
- solve 1 and 2 please. 1.A client on the postpartum unit has been diagnosed with deep vein thrombosis. The following titration schedule is included in the client’s orders: a. If INR is less than 1: administer 7,500 units heparin subcu b. If INR is 1.1 to 2: administer 5,000 units heparin subcu c. If INR is 2.1 to 3: administer 2,500 units heparin subcu d. If INR is greater than 3: administer 0 units heparin subcu 2.The client’s INR is 2.6. How many mL of heparin will the nurse administer if the available concentration of heparin is 5,000 units per 0.2 mL? ( Calculate to the nearest tenth.) __________ mL.Please answer fast 1. what is the difference between the patient's peripheral DNA, the patient's breast tumor DNA, and the patient's normal breast tissue DNA? 2. what is the evidence? be specificActivity Consider the following study: A new health-threatening virus, SHV, has been identified and a research group at the Northern Virginia University (NVU) is developing the vaccine. The scientists at NVU are testing the following hypothesis: people who receive the SHV vaccine do not get the virus. In the clinical trials, one group of test subjects is treated with the vaccine, the other group is given the placebo, a shot containing saline solution without a drug. Both groups have the same number of individuals with identical sex ratio, age range, body type, and similar medical history. Upon administering the vaccine, the researchers measure how many individuals get infected with SHV on a monthly basis in a period of one year. The same experiment is conducted concurrently in several other leading institutions across the country. 1-What is the experimental group in this experiment? The experimental group is Select an answer and submit. For keyboard…