Answer:
Baby 1 goes to parent 2 and baby 2 goes to parent 1. My results for the first Punnett square for parent 1 was 100% AO. My results for the second Punnett square is 50% AO, 50% OO. My results for the first punnett squares for parent 2 is 50% AA, 50% AB, and the results for the second punnett square is 25% AA, 25% AO, 25% AB, 25% BO.
Explanation:
Baby 1 belongs to parents 2, whereas baby 2 belongs to parents 1.
In this case, it is important to have into account that the ABO blood type is inherited in an autosomal codominant fashion.
The A and alleles B are codominant and therefore both alleles are expressed, thereby if an individual inherits allele A from one parent and allele B from another parent, he/she has blood type AB. It is the case for baby 1 (genotype AB).
Conversely, the A and B alleles are dominant on the allele O, which is recessive. It is the case for baby 2 (genotype OO).
The genotypes of the parents are:
Parents 1:
Mom is heterozygous type A (genotype AO) and the dad is type O (genotype OO).Parents 2:
Mom is heterozygous type A (genotype AO) and dad has AB (genotype AB).Parents 2 can produce these gametes:
Mom: 1/2 A; 1/2 ODad: 1/1 OSo their offspring can be:
A O
O AO OO
F1: 1/2 AO; 1/2 OO
In consequence, baby 2 (genotype OO) belongs to parents 1
Parents 2 can produce these gametes:
Mom: 1/2 A; 1/2 ODad: 1/2 A; 1/2 BSo their offspring can be:
A O
A AA AO
B AB BO
F1: 1/4 AA; 1/4 AO; 1/4 AB; 1/4 BO
In consequence, baby 1 (genotype AB) belongs to parents 2
In conclusion, baby 1 belongs to parents 2, whereas baby 2 belongs to parents 1.
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Plz help:
b. Compare dominant and recessive traits –
c. Compare pure and hybrid offspring –
Answer:
b. What is the difference between dominant and recessive traits? Dominant traits are always expressed when the connected allele is dominant, even if only one copy of the dominant trait exists. Recessive traits are expressed only if both the connected alleles are recessive.
c. In the simplest possible terms, purebreds are the offspring that result from mating between genetically similar parents while hybrids are the offspring that are the result of mating between two genetically dissimilar parents.
Explanation:
Answer:
b. Dominant traits are always expressed when the connected allele is dominant, even if only one copy of the dominant trait exists. Recessive traits are expressed only if both the connected alleles are recessive.
Explanation:
c. purebreds are the offspring that result from mating between genetically similar parents while hybrids are the offspring that are the result of mating between two genetically dissimilar parents.
Which of the following checks happens at the G, checkpoint?
O The cell checks to see if the spindles are attached properly.
OThe cell determines if all necessary proteins have been made.
OThe cell determines if all the DNA is replicated properly.
OThe cell checks to see if enough nutrients are available.
Answer:
The answer is G2 checkpoint
Explanation:
Hopefully this helped, if not HMU and I will try my best to get u a better answer!
Which compound is inorganic
Answer:
H2O
Explanation:
It's not made of carbon
rnma’s dive into electric, hybrid, and autonomous vehicles can be seen as a form of
Rnma's dive into electric, hybrid, and autonomous vehicles can be seen as a form of innovation and adaptation to changing consumer and industry demands.
As the world becomes more environmentally conscious, electric and hybrid vehicles offer a more sustainable alternative to traditional gasoline-powered vehicles. Additionally, the development of autonomous vehicles presents an opportunity for increased safety and efficiency on the roads. By investing in these technologies, Rnma is positioning itself as a leader in the automotive industry and staying ahead of the competition. As the market for electric, hybrid, and autonomous vehicles continues to grow, Rnma's investment in these areas will likely pay off in terms of increased sales and brand loyalty.
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A piece of mRNA has the code AUG CCA UUG ACG. Which amino acids are coded in this strand?
A) Met, Ser, Glu, Trp
B) Leu, Cys, Arg, Lys
C) Leu, Glu, Leu, Tyr
D) Met, Pro, Leu, Thr
Answer:
D. Met, Pro, Leu, Thr
Explanation:
AUG- Met
CCA- Pro
UUG- Leu
ACG-Thr
Hopefully this helps outtt !! :)
fill in the blank. cellular proliferation can be grouped into the three categories __________,
Cellular proliferation can be grouped into the three categories: continuous, stable, and labile.
Cellular proliferation is defined as the process by which cells divide and multiply. It's a process in which cells reproduce to create new cells. It is a mechanism that allows organisms to develop and maintain their tissues and organs.Cells are divided into three groups based on their proliferation abilities. There are three classifications of cellular proliferation: continuous, stable, and labile. They're classified based on their ability to multiply and grow.
Continuous cells are cells that divide at a constant rate throughout their lives. They have an infinite capacity for self-renewal and can regenerate after injury or disease. They're always dividing. Stem cells in the bone marrow and gut are examples of continuous cells.
Stable cells are cells that are mostly non-dividing but can enter the cell cycle when needed. Their proliferation rate is slower than continuous cells. Their ability to self-renew is limited and may only occur under certain circumstances. They're able to regenerate after injury or disease. Examples of stable cells include hepatocytes and smooth muscle cells.
Labile cells are cells that are always dividing and can't stay in the G0 phase. They're actively dividing and regenerating. Their life span is short, and they're constantly being replaced. The skin and the lining of the gut are examples of labile cells.
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Since most forms of inherited color vision deficiency are recessive, postulate why color vision deficiencies would
not have been reduced to the point of disappearance. Specifically, in what ways could color vision deficiencies be
evolutionarily advantageous when compared to a population in which all people perceive the same colors?
Inherited color vision deficiencies are recessive. If both the parents are carriers of color vision deficiency genes, their child will inherit the trait. The carriers of these genes can perceive colors; however, they lack certain photopigments in their retina.
Due to the following reasons, color vision deficiencies would not have disappeared:
Color vision deficiencies are not life-threatening traits. Thus, they do not undergo natural selection. Color vision deficiencies occur with a low frequency (less than 8% of males have some form of color vision deficiency). Therefore, the carriers of these genes are not at a disadvantage from those who do not carry these genes. In some cases, color vision deficiencies could have an evolutionary advantage.
According to the hunter-gatherer hypothesis, individuals with red-green color vision deficiency were better able to detect prey in natural environments. Therefore, red-green color vision deficiency could be an evolutionary advantage compared to the population where all people perceive the same colors. It could be because the hunter-gatherer's deficiency can see through camouflage that may have been perfect for others with normal eyesight.
The carriers of color vision deficiency genes can see better through some color arrangements compared to people with normal vision. For instance, pilots with color vision deficiencies can see aircraft better than those with normal vision. Therefore, color vision deficiencies could be evolutionary advantageous when compared to a population in which all people perceive the same colors.
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What is another name for a dichotomous
key?
a
A. a taxonomic key
B. an atlas
C. a return path
D. a map
Answer:
A. taxonomic key
Explanation:
A dichotomous key is often used to determine taxonomy.
Answer:
its A. a taxonomic key
Explanation:
Even though dichotomous key is a tool that consists of paired statements in order to identify an unknown organism. A taxonomic key is a simple tool used to identify a specific object.
So still does nearly the same thing.
Hope it helps!!!!
-Debbie
osmolarity-detecting cells located in the nuclei of the (click to select) are stimulated by an increasing blood solute concentration.
An increasing blood solute content stimulates osmolarity-detecting cells in the hypothalamic nuclei, notably the supraoptic and paraventricular nuclei.
The control of antidiuretic hormone (ADH), also known as vasopressin, is the responsibility of these cells.Osmoreceptor cells in the hypothalamus notice changes when blood osmolarity rises, a sign of higher solute concentration. The posterior pituitary gland releases ADH as a result of the stimulation of the osmoreceptor cells, which then send signals to the supraoptic and paraventricular nuclei.Purification of urine and a reduction in water loss from the body are both aided by ADH's action on the kidneys to encourage water reabsorption. The release of ADH by the osmoreceptor cells in response to an increase in blood solute concentration contributes to maintaining correct osmolarity and fluid balance.
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Why is it important for an area to have high biodiversity
Answer:
Biodiversity boosts ecosystem productivity where each species, no matter how small, all have an important role to play. ... A larger number of plant species means a greater variety of crops. Greater species diversity ensures natural sustainability for all life forms.
Explanation:
In ventricular fibrillation, the ventricles twitch randomly instead of beating. This condition causes death within minutes if not treated rapidly. In a similar condition, atrial fibrillation, the atria twitch randomly instead of beating. Although atrial fibrillation can increase the risk of other serious conditions by itself it is usually not life threatening.
Describe the blood flow through the heart; use your description to explain why ventricular fibrillation is deadly but atrial fibrillation is rarely is.
The heart is a muscular organ responsible for pumping blood throughout the body. Blood flow through the heart follows a specific sequence, passing through four chambers: two atria (right and left) and two ventricles (right and left). The right side of the heart receives deoxygenated blood from the body and pumps it to the lungs, while the left side receives oxygenated blood from the lungs and pumps it to the rest of the body.
Ventricular fibrillation is deadly because it disrupts the heart's ability to pump blood effectively, leading to a lack of oxygen delivery to vital organs. Atrial fibrillation is usually not life-threatening by itself because the ventricles can still pump blood, albeit less efficiently, and maintain adequate blood flow through the body. However, atrial fibrillation can increase the risk of other serious conditions, such as stroke, due to the potential for blood clots to form in the atria.
Explain what the diagram shows about how d0ped blood is different from normal blood
Blood doping rises the amount of hemoglobin in the bloodstream whereas Hemoglobin is an oxygen -carrying protein in the blood.
What do you mean by blood doping?Blood doping is an illicit method of improving athletic performance by artificially boosting the blood's ability to bring more oxygen to muscles.
The three widely used types of blood doping are: blood transfusions. injections of erythropoietin (EPO) injections of synthetic oxygen carriers.
In blood doping, the athlete's own red blood cells are re-added to the bloodstream. This can be done by withdrawing one half to one litre of blood three to five weeks before a race. The withdrawn blood will be centrifuged, after which the red blood cells are collected and stored in a refrigerator.
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Can someone please do this?? I'll give you Brainliest...
Explanation:
DNA is a self replicating material that is present in nearly all living organisms as the main constituent of chromosomes. It is the carrier of genetic information
RNA is a nucleic acid present in all living cells. Its role is to act as a messenger carrying instructions from DNA for controlling the synthesis of proteins
Nucleic acid is a complex organic substance present in loving cells, especially DNA and RNA, whose molecules consist of many nucleotides liked in a long chain
Greenhouse gases are?
A.Absorbers of long-wave radiations from earth B.Transparent to both solar radiations and long-wave radiations from earth C.Absorbers of solar radiations for warming the atmosphere of earth-
D.Transparent to emissions from earth for passage into outer space
The correct answer is: B. Transparent to both solar radiations and long-wave radiations from earth.Greenhouse gases are gases in the Earth's atmosphere that are transparent to incoming solar radiation but can absorb and emit long-wave radiations (infrared radiation) from the Earth's surface.
These gases include carbon dioxide (CO2), methane (CH4), nitrous oxide (N2O), and various fluorinated gases. They act like a "greenhouse" by allowing sunlight to enter the Earth's atmosphere but trapping some of the heat radiated from the Earth's surface, thereby contributing to the warming of the planet.
This phenomenon is known as the greenhouse effect.Greenhouse gases are absorbers of long-wave radiations from earth .Explanation:Greenhouse gases are gaseous compounds in the Earth's atmosphere that trap infrared radiation from the Sun and warm the Earth's surface. Some greenhouse gases occur naturally, while others are produced by human activities such as burning fossil fuels.Greenhouse gases work by absorbing and trapping long-wave radiation (infrared radiation) emitted by the Earth's surface. These gases then re-emit some of this energy back towards the Earth's surface, warming the planet in a natural process known as the greenhouse effect.Out of the given options, the correct option for Greenhouse gases is :Absorbers of long-wave radiations from earth
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scientist have genetically enginer]ered potato plant to produced potatoes that contain
Answer:
The disadvantage of genetically engineered potatoes is that they are more expensive than potatoes without the vaccine.
Genetically modified organisms (GMO)
Genetically modified organisms (GMOs) are organisms that have suffered a modification in their genetic material as a consequence of the use of genetic engineering.
The genetically modified organisms include, for example, plants that exhibit resistance to insect plagues.
Genetically modified organisms have been developed by using recombinant DNA technologies.
In conclusion, the disadvantage of genetically engineered potatoes is that they are more expensive than potatoes without the vaccine.
Explanation:
In the origin of life, nucleotides were polymerized to form ______ and amino acids were polymerized to form ______.
In the origin of life, nucleotides were polymerized to form nucleic acids and amino acids were polymerized to form proteins.
What are polymers?Polymers are large chemical substances formed from smaller chemical substances called building blocks or monomers. They are formed by polymerization reactions.
Both nucleic acids and proteins are polymers. While nucleic acids are formed from monomers known as nucleotides, proteins are are polymers formed from amino acids.
Nucleotides are linked by covalent bonds to form nucleic acids while amino acids are linked together by peptide bonds to form proteins.
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Plan an investigation to study the effects of exercise on heart rate. Identify the
independent, dependent and controlled variables. Plan the experimental
group(s) and control. Determine the sample size and number of trials as well.
The effects of exercise on heart rate can be studied by analyzing the number of heart pumps according to physical exercises, while control variable is room temperature.
What is an independent variable?An independent variable is any variable that isn't changed along the experimental procedure, while the dependent variable is modified by the conditions.
The sample size must be statistically significant (N sample size higher than 50 individuals) and a number of trials at least two to compare results.
In conclusion, the effects of exercise on heart rate can be studied by analyzing the number of heart pumps (dependent variables) according to physical exercises (independent variable), control variable is room temperature.
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would you expect there to be fewer snails or fewer bass in this ecosystem?
Answer:
di ko lam
Explanation:
di ko alam
Answer:
there would be fewer snails because the bass are not being eaten by anything so their population would grow, the snails on the other hand they are eaten by many other oganisms so their population wouldn't grow as fast as the bass would.
Explanation:
Explain how blood sugar levels are controlled after a meal and when you are hungry.
scientists and their contributions to the models of atom
The primary researchers and intellectuals engaged in inventing the atomic model we know today include Democritus, John Dalton, J.J. Thomson, and Ernest Rutherford. There were many scientists whose discoveries contributed to the atomic model. The nuclear model of Rutherford. With his famous gold-foil experiment, which showed that the atom contains a tiny, heavy nucleus, Rutherford overturned Thomson's hypothesis in 1911.
JJ Thomson's original investigation into cathode rays, which led to the discovery of the electron, was the most brilliant accomplishment of his life. It was revealed during his evening talk to the Royal Institution. The electrons orbit the atom's nucleus in specified, legal routes, according to the Bohr model, also referred to as a planetary model. When the electron is in one of these orbits, its energy is constant.
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When a rat enters a skinner box, it has to learn to press a lever to get food. At the very beginning of this process, it is rewarded with food when it is in the vicinity of the lever. Then it is rewarded when it touches the lever, and so on. This technique of rewarding successive approximations of a desired behavior is called?.
This technique of rewarding successive approximations of the desired behavior is called operant conditioning.
Operant conditioning is a method of instrumental conditioning that is a famous theory in psychology.
This theory was given by B.F. Skinner who conducted experiments to understand and modify the behavior of humans and other organisms.
In this method, reward and punishment are used to modify an object's behavior.
To reinforce a particular behavior, rewards are more likely used while punishments rarely occur.
The above example describes the use of operant conditioning in a lab experiment.
However, it is not only limited to labs but also in structured environments such as classrooms.
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where do plant cells and cyanobacteria (also photosynthetic) get the atp they need to power their regular cellular processes? a. Only fermentation b. Cellular respiration c. Only glycolysis d. The light reactions of photosynthesis e. None of the other choices are accurate
Plant cells and cyanobacteria (also photosynthetic) get the ATP they need to power their regular cellular processes from: b. Cellular respiration
Plant cells and cyanobacteria are photosynthetic organisms that are capable of producing their own food through the process of photosynthesis. During this process, they use light energy to convert carbon dioxide and water into glucose and oxygen. However, to power their regular cellular processes, including protein synthesis, DNA replication, and cell division, they need a constant supply of energy in the form of ATP.
The ATP required by plant cells and cyanobacteria is produced through the process of cellular respiration. While photosynthesis produces glucose and oxygen, cellular respiration breaks down glucose molecules to release energy in the form of ATP. This process takes place in the mitochondria of plant cells and cyanobacteria.
Cellular respiration can be divided into three stages: glycolysis, the Krebs cycle, and oxidative phosphorylation. In the first stage, glycolysis, glucose molecules are broken down into pyruvate, which releases a small amount of ATP. In the second stage, the Krebs cycle, pyruvate is converted into acetyl-CoA, which enters a cycle of reactions that produces more ATP and carbon dioxide. Finally, in the third stage, oxidative phosphorylation, electrons from the Krebs cycle are passed through a series of protein complexes, which creates a proton gradient across the mitochondrial membrane. This gradient is then used to power ATP synthesis.
While photosynthesis also produces ATP through the light reactions, this ATP is primarily used to power the process of photosynthesis itself, rather than the regular cellular processes of the plant cell or cyanobacterium. Therefore, the correct answer to the question is b. Cellular respiration.
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which of the following are gnathostomes? multiple select question. ray-finned fishes amphibians lobe-finned fishes lancelets lampreys reptiles jawless fishes
The term "gnathostomes" refers to vertebrates with jaws. From the options provided, the following are classified as gnathostomes:
1. Ray-finned fishes: These are the most diverse and numerous group of fishes, characterized by their bony skeleton and fan-like fins supported by thin, bony rays.
2. Amphibians: This group includes animals like frogs, toads, salamanders, and newts. They have moist, permeable skin and usually spend part of their lives in water and part on land.
3. Lobe-finned fishes: These fishes have fleshy, lobe-like fins, and include coelacanths and lungfishes. Lobe-finned fishes are considered to be the ancestors of tetrapods, which include all land-dwelling vertebrates.
4. Reptiles: This group includes animals like snakes, lizards, turtles, and crocodiles. Reptiles have dry, scaly skin, and they lay eggs with leathery shells.
In contrast, lancelets, lampreys, and jawless fishes do not have jaws and are therefore not classified as gnathostomes.
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Identify the secondary consumer. Rabbit Honey bee Frog Deer
Answer: a frog is a secondary consumer
Explanation: i am in a wildlife class :)
Which of these is an example of a carbohydrate?
C4H8O4N
C8H22O8
C6H12O6
C10H22S11
Answer:
C6H12O6
Explanation:
carbohydrates can only have C,H,O
and the balance is C=2H=O or a 1:2:1 ratio between C:H:O
The _____ is used to monitor the centering of the process.
Select one:
a .np-chart
b.-chart
c. R-chart
d. p-chart
The _R-chart_ is used to monitor the centering of the process.The correct answer is c. R-chart.
The R-chart, also known as the Range chart, is used to monitor the centering of the process. It is a statistical control chart that tracks the variability or dispersion within a process by measuring the range between the maximum and minimum values of a sample. The R-chart is commonly used in conjunction with the X-bar chart (also known as the process mean chart) to monitor process performance. While the X-bar chart focuses on the central tendency or average of the process, the R-chart helps assess the spread or variability of the process.
By plotting the ranges of multiple samples on the R-chart, one can determine if the process is exhibiting consistent variation or if there are shifts or changes in the dispersion. If the ranges remain within control limits, it indicates that the process is in statistical control and the centering is stable. However, if there are points that fall outside the control limits or a systematic pattern emerges, it suggests that the process variation has changed, and further investigation or corrective actions may be necessary. Overall, the R-chart is a valuable tool for monitoring the centering of a process by assessing the variability or dispersion within the process over time.
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Plz help me with my homework
Answer:
Do you go to ASU prep.
Explanation:
View the illustration below and answer the questions.
Which organism is found in the oldest rock layer?
Which organism is found in the youngest rock layer?
The Gastropod is found in multiple rock layers. What does this indicate?
Which organism is the oldest- the Crinoid or the Ammonite? How do you know?
Answer:
ferm i got it right
give me brainlist please
Explanation:
The picture above shows barrier island. How did these barrier island MOST LIKELY form?
Answer:
a
Explanation:
b
These barrier islands are most likely formed by sand deposited by waves. So, the correct option is A.
What are Barrier islands?Barrier islands are defined as coastal landforms and a type of dune system which are flat or lumpy areas of sand that are formed by wave and tidal action parallel to the mainland coast which is usually in chains that include anything from a few islands to more than a few.
These islands are formed by waves repeatedly depositing sediment parallel to the shoreline, so wind and waves change according to weather patterns and local topographical features. Barrier islands constantly move, erode and grow which completely might as well disappear.
Thus, these barrier islands are most likely formed by sand deposited by waves. So, the correct option is A.
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Your question is incomplete, but most probably the complete question is:
The picture above shows barrier island. How did these barrier island MOST LIKELY form?
by sand deposited by wavesby sand eroded from the mainland by wavesby sand eroded from the mainland by windby sand deposited by windPlease answer fully!!!!!!!!!!!
The diagram shows that the Paramecium is the prey of the Didnium because the population of both increase by the same trend but Didnium does so in a delayed manner.
How to show the prey ?Paramecium is the prey of the Didnium because as the population of the Paramecium begins to rise, so also does the population of the Didnium. This shows that the Didnium is getting sustenance.
As the population of the Paramecium begins to drop however, the population of the Didnium drops as well. This is because there is less food to sustain them and so the population begins to reduce.
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