You are examining a human pedigree for a trait. you notice that the trait appears in every generation; is equally likely to occur in males and females; and, when one parent is affected, about half of his or her offspring are affected. the trait is most likely:

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Answer 1
Answer: You are examining a human pedigree for a trait. you notice that the trait appears in every generation; is equally likely to occur in males and females; and, when one parent is affected, about half of his or her offspring are affected. the trait is most likely be "dominant".
Answer 2
Final answer:

The trait in question is most likely autosomal dominant as it appears in every generation, affects males and females equally, and when one parent is affected, about half of the offspring are affected.

Explanation:

If you are examining a human pedigree and notice that the trait appears in every generation, is equally likely to occur in males and females, and, when one parent is affected, about half of his or her offspring are affected, these characteristics suggest that the trait is most likely inherited in an autosomal dominant fashion.

With autosomal dominant inheritance, you would expect to see the trait in every generation, as it takes only one copy of the dominant allele to express the trait. Both sexes are equally likely to be affected because the trait is not linked to the X or Y chromosomes, and typically, if one parent is affected and the other is not, approximately half of the offspring would display the trait.

This differs from X-linked recessive traits, which tend to appear more frequently in males than females, because males have only one X chromosome. Moreover, these traits would not necessarily appear in every generation, particularly if the trait is being carried by heterozygous females who do not express the phenotype.


Related Questions

How does cellular respiration affect the rate of photosynthesis?

Answers

it just does in a way of heat

Explanation:

Hello!

Let's solve this!

As carbon dioxide (CO2) increases, the rate of photosynthesis increases. Photosynthesis consumes CO2 and then releases the O2 that will be used in cellular respiration. Cellular respiration consumes O2 to release CO2 that will be used in photosynthesis. And so the circle works.

The most important factor for regulating respiratory rate is

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Correct Answer: The most important factor for regulating respiratory rate is the level of CO2 in the blood.

The rate of frequency of repetition that lies within the range of human hearing that results in sound conveying a sense of pitch is:

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the normal frequency range is 10 to 18000 hz
Hey there,
From what I have learnt it it,
15 - 18,000 hz

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The stage during which a prenatal child can open and close its eyes and can cry is the

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The stage in which a child can make use of their eyes in the prenatal stage is known as the fetus. During this stage, a fetus can open and close their eyes, as well as formed tear ducts allows for them to cry.

During the course of muscle contraction the potential energy stored in atp is transferred to potential energy stored in _____.'

Answers

Potential energy stored in ATP is transferred to potential energy stored in The myosin head

By the end of the third month of pregnancy, the developing human organism has the ability to:

Answers

By the end of the third month of the pregnancy, the developing human organism has the ability to MOVE, CURL FINGERS, SLEEP AND START TO SWALLOW AND BREATH.

By the end of third month the fetus has the characteristic features of a human and it starts to develop senses such as sound, taste, etc.

Two group of children pulling rope but rope doesnot move why\

Answers

There's a group on each side so there's equal pull on both sides so it doesn't move

What disturbing force is responsible for producing the majority of tsunami?

Answers

Although waves in the ocean are typically caused by wind, that is not the case with tsunami. The disturbing force that produces conditions for a tsunami is typically from an earthquake.

During the process of polymerization, combine by sharing electrons. this process forms a , which is made of repeating subunits. the resulting material is used in a variety of ways.

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During the process of polymerization, monomers combine by sharing electrons. This process forms a polymer, which is made of repeating subunits. The resulting material is used in a variety of ways.

During the process of polymerization, monomers combine by sharing electrons. This process forms a polymer, which is made of repeating subunits. The resulting material is used in a variety of ways.

An organelle inside eukaryotic cells where the dna is located

Answers

the answer is the nucleus

While performing a physical assessment of a female client, a nurse notices hair on the client's upper lip, chin, and cheeks. which condition may result in this condition?

Answers

In general, this condition is due to a hormonal imbalance where there are higher-than-average level of male hormones in the woman's body. In particular, a common condition which can cause this imbalance is called "polycystic ovarian syndrome (PCOS)."

PCOS is a syndrome affecting a woman's ovaries and her ovulation with its main features being cysts in the woman's ovaries, high levels of male hormones produced, and irregular or skipped periods. Baldness, and increased hair growth on the affected woman's face and body can also be observed. 

Which type of rock is formed from cooling molten rock?
A.igneous
B.magma
C.metamorphic
D.sedimentary

Answers

The answer is A.
igneous.
Final answer:

Igneous rocks are formed from the cooling and solidification of molten rock, either as magma below the surface resulting in a coarse texture, or as lava on the surface creating a fine-grained texture.

Explanation:

The type of rock formed from cooling molten rock is igneous rock. Igneous rocks are one of the three main types of rocks found on Earth, the others being sedimentary and metamorphic rocks. These rocks form as magma (below the Earth's surface) or lava (at the Earth's surface) cools and solidifies. For instance, when magma cools slowly underground, the resulting igneous rocks, such as granite, are considered intrusive or plutonic and have a coarse-grained texture. Conversely, when lava cools rapidly on the Earth's surface, it forms extrusive or volcanic igneous rocks like basalt, which tend to have a finer-grained texture.

Igneous rocks are formed from cooling molten rock. When magma or lava cools and solidifies, minerals start to crystallize and interlock with each other, forming igneous rocks. Igneous rocks can have different textures and compositions depending on the cooling rate of the magma or lava.

How did the discovery of the rhesus factor affect society?

Answers

B) new treatments during pregnancy could prevent harm to the developing child. Hope this helps, please give me brainiest thanks.

Answer:

New treatments during pregnancy could prevent harm to the developing child.

Explanation:

The Rh factor is inherited, meaning it is passed from parent to child through genes. The fetus can inherit the Rh factor from the father or the mother. Most people are Rh positive, meaning they have inherited the Rh factor from either their mother or father. If a fetus does not inherit the Rh factor from either the mother or father, then he or she is Rh negative. When a woman is Rh negative and her fetus is Rh positive, it is called Rh incompatibility.

When the blood of an Rh-positive fetus gets into the bloodstream of an Rh-negative woman, her body will recognize that the Rh-positive blood is not hers. Her body will try to destroy it by making anti-Rh antibodies. These antibodies can cross the placenta and attack the fetus’s blood cells. This can lead to serious health problems, even death, for a fetus or a newborn.

Thus the discovery helped society understand this.

Recall that the phloem sap of vascular plants moves through the phloem as a result of turgor pressure. how are nutrients transported through fungi?

Answers

The phloem sap of vascular plants that moves through the phloem; transports nutrients through fungi by hyphae, as a result of turgor pressure. Hyphae are elongated tube-shaped structures that are like garden hoses. They also have inflexible cell walls that may be strengthened by punctured cross-walls which are called septa.

What is activation energy?

the energy needed to get a reaction started

the energy stored in the bonds of a reaction’s enzyme

the energy absorbed by the bonds that form in a reaction

the heat energy given off by a reaction

Answers

Answer:The energy needed to get a reaction started.

Explanation:

Activation energy is the minimum amount of energy needed to initiate a chemical reaction. It's the force necessary to break initial bonds and allow a reaction between reactants, transformation into products. Therefore, option a. is the correct answer.

Activation energy is the energy required to initiate a chemical reaction and start the process of breaking and forming chemical bonds in reactant molecules to produce products. Here's an explanation of what activation energy is and how it works:

Energy Barrier: In any chemical reaction, reactant molecules must first overcome an energy barrier, known as the activation energy barrier, to transition from their initial state to the state where new chemical bonds are formed in the products.Breaking Bonds: Before new bonds can form in the products, the existing chemical bonds in the reactant molecules must be broken. Breaking these bonds requires energy because chemical bonds hold atoms together, and breaking them apart involves overcoming the electrostatic forces that hold the atoms together.Activation Energy: Activation energy is the minimum amount of energy needed for these initial bond-breaking processes to occur. It acts as a barrier that reactant molecules must surpass to proceed with the reaction.Facilitating Reaction: Enzymes and other catalysts play a crucial role in lowering the activation energy required for a reaction. They do so by providing an alternative reaction pathway that has a lower activation energy than the uncatalyzed reaction. This allows reactions to occur more readily and at lower temperatures in biological systems.Endothermic and Exothermic: Activation energy can vary depending on the specific reaction. For endothermic reactions (absorbing heat), activation energy represents the energy required to absorb heat and break bonds. For exothermic reactions (releasing heat), activation energy represents the energy needed to initiate the reaction and release heat during bond formation.

In summary, activation energy is the energy "hurdle" that reactant molecules must overcome to initiate a chemical reaction. It represents the energy required to break existing bonds in reactants, allowing new bonds to form in the products. Catalysts, like enzymes, lower this energy barrier, making reactions more efficient and feasible under physiological conditions.

Therefore, option a. is the correct answer.

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High levels of cytosolic atp would be expected to

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THe answer to this question would be: E. none of the above

Adenosine triphosphate or ATP is used as energy. When the adenosine triphosphate level is high it means that the cell has much energy. If the cell is a muscle cell, that means you can contract your muscle longer because you have some stock of energy. It won't increases any enzyme reaction rate like phosphorylation or fermentation.

In which stage of meiosis does the separation of homologous chromosomes occur?

Answers

cellular respiration i believe

Answer: Meiosis 1.

Explanation:

The technique of severing the connections between the frontal lobe and the thalamus is called:

Answers

The answer is lobotomy

Which of the choices below is not a mechanism of heat production?

Answers

What are te choices tho I don’t see them. Jk

What would happen if all receptor proteins were removed from the membranes of all liver cells?

Answers

If all receptor proteins were removed from hepatocytes' (liver cells') membranes, then the liver would no longer respond to hormones. This would be catastrophic to the metabolism, because the liver could no longer process nutrients such as glucose. Such a malady would prove fatal when not eating, because the lack of glycogen, cortisol, epinephrine (and other hyperglycemic hormones) woukd lead to hypoglycemic shock, coma, and death.

Removing all receptor proteins from liver cells would severely impair cellular communication and function, leading to metabolic dysfunction. A cell with unbalanced exocytosis and endocytosis would have an expanding plasma membrane, potentially causing dysfunction or lysis.

If all receptor proteins were removed from the membranes of all liver cells, it would have a disastrous effect on cellular communication and function. Receptor proteins are responsible for receiving signals from outside the cell and triggering a cascade of events inside the cell that result in specific cellular responses. Without these receptors, liver cells would be unable to process signals from hormones, nutrients, and other signaling molecules, leading to a breakdown in the regulation of metabolism, detoxification processes, and other vital functions. The cells would be unable to adapt to changing conditions in the body, which could result in widespread metabolic dysfunction and disease.

Regarding the cell performing exocytosis with minimal endocytosis, the consequence would be an increase in the size of the plasma membrane over time. This is because exocytosis adds membrane material to the plasma membrane, whereas endocytosis normally retrieves membrane material. A significant imbalance between these processes would disrupt membrane homeostasis, potentially leading to cell dysfunction or even lysis (rupture).

Lastly, if the intracellular domain of a cell-surface receptor was switched with the domain from another receptor, the signaling specificity and cellular response could be severely affected. The intracellular domain of a receptor is responsible for initiating specific intracellular signaling pathways. A switched domain might activate inappropriate pathways, fail to activate necessary pathways, or cause unpredictable responses, possibly resulting in dysfunction or disease.

A scientist is able to test the effect of

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2. Multiple variables 
It should be a single variable, or A.  Please mark Brainliest!

MARINE SCIENCE HELP PLEASE?

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What do you need help with?

An organism is made of many cells, cannot move on its own, and absorbs food from its environment. What kingdom does it belong to?

Answers

Fungi is the correct answer

An organism, which is made of many cells, cannot move on its own, and absorbs food from its environment belongs to the fungi kingdom. The organisms in kingdom fungi  are multicellular organisms that rely on other organisms for food, because they are not capable of producing their own food. This kingdom includes mushrooms, yeasts, molds, rusts, smuts,

What would happen if DNA didn't have a backbone?

Answers

It would fall apart, leading to cancer.  Please mark Brainliest!!!

"chlorophyll molecules are embedded in which part of the chloroplast?"

Answers

They are listed within the thylakoid membrane. The space between the thylakoid and chloroplast membrane is called the stroma
Final answer:

Chlorophyll molecules, vital for photosynthesis, are embedded in the thylakoid membranes of the chloroplast. These membranes contain complexes that capture and convert light energy into forms usable by the cell.

Explanation:

Chlorophyll molecules, which are essential to the process of photosynthesis in plants, are embedded in the thylakoid membranes of the chloroplast. The chloroplast is an organelle in the cells of green plants and is where photosynthesis occurs. The thylakoid membranes contain complexes of multiple molecules, including chlorophyll, that capture and convert light energy into forms usable by the cell. Chlorophyll molecules play a crucial role as they absorb light and start the process of energy transduction.

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WILL MARK BRAINLIEST GIVE ME A 3-4 SENTENCE EXPLANATION OF WHAT IS PHOTOSYNTHESIS

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Photosynthesis is a process plants and other organisms use to create energy. The energy from sunlight, glucose, water, oxygen, and carbon dioxide are used by the plant to photosynthesize. These chemicals work together within the plant and produce energy. Oxygen is a product of photosynthesis that benefits humans and animals. Photosynthesis is essential for most plants to live.

In each of the offspring what percentage of the genetic material comes from the male parent

Answers

The answer to this question would be: half

Offspring is made by fertilization. During fertilization, the haploid gamete from male (sperm) is fused with another haploid gamete from female (egg). The result would be a cell with diploid gene. Then, the genetic material of the offspring is half from male and half from the female

Each parent, including the male parent, contributes approximately 50% of their genetic material to their offspring. This is exemplified during the formation of sex chromosomes in a child, as well as through Mendelian genetic crosses where the distribution of alleles illustrates the probable genotypes of offspring.

In the context of classic Mendelian genetics, when considering the genetic material each parent contributes to their offspring, the male parent contributes approximately 50% of the genetic material to each of the offspring. This is because, during sexual reproduction, a male contributes one set of chromosomes through his sperm, while the female contributes the other set through her egg, each constituting half of the child's genetic makeup.

For example, if we consider the sex of a baby, a mother can only pass on an X chromosome while the father can pass on either an X or a Y chromosome. This determines the child's sex. In genetic crosses such as those studied by Mendel, the probabilities of offspring genotypes can be predicted using Punnett squares. In a cross of two heterozygous parents (Aa x Aa), for instance, there is a 25% chance of offspring being AA, 50% chance being Aa (as Aa and aA are the same genotype), and 25% chance being aa. These reflect the probabilistic distribution of inheriting each allele from the parents.

Shape is the most important quality of a protein. what gives any protein its correct shape

Answers

The shape of a protein is determined by its primary structure (sequence of amino acids). The sequence of amino acids in a protein is determined by the sequence of nucleotides in the gene (DNA) encoding it.
The shape is Because of the dna



In a particular type of cat, coat color follows the dominant/recessive pattern of inheritance. The allele for a brown coat (B) is dominant to the allele for a white coat (b).

One of Mariam's cats is homozygous dominant (BB) and the other cat is heterozygous (Bb). Which of the following is true about Mariam's cats?
A. They have the same genotype and the same phenotype.
B. They have different genotypes but the same phenotype.
C. They have the same genotype but different phenotypes.
PLEASE HELP! WILL MARK BRAINLIEST

Answers

B
Both have brown coats due to dominant B allele, genotype is different as one has recessive b allele

THE ANSWER IS

B; They have different genotypes but the same phenotype.


In regard to the kidneys' role in regulating water balance in the body, the term reabsorption means the amount of the substance that is

Answers

Hey there,
It means that, it is absorbed back into the blood after being filtered.

Hope this helps :))

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