Answer:
1. Vacuole, nucleotide, mitochondria, Golgi apparatus can all occur in certain eukaryotes. I would say 2,3,4 is the safest answer but you might want to wait for someone else as well
2. B
Explanation:
If an organism that is homozygous dominant is crossed with a heterozygote for that trait, the offspring will be __________.
Answer: all of the dominant phenotype
The offspring of an AA x Aa cross are either AA or Aa. All will express the dominant phenotype.
If an organism that is purebred dominant is crossed with one that is heterozygous for a trait, half of the offspring will be purebred dominant and the other half will be heterozygous.
What is dominance?If the allele of a gene is completely showing its character in a heterozygous condition, then it is called "completely dominant." Another allele of the gene that can't be expressed is called recessive.
An example is the cross made between purebred tall (TT) and heterozygous tall (Tt). The purebred will form gametes T, and the heterozygous will form gametes T and t.
From the cross, two genotypes, such as TT and Tt, are developed, each having 50%. All the F1 offspring here are tall in phenotype. All tall and short characters are expressed when the two heterozygous Tt and Tt are crossed.
Hence, if an organism that is purebred dominant is crossed with one that is heterozygous for a trait, half of the offspring will be purebred dominant and the other half will be heterozygous.
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Applying this learning to yourself. Identify a time when you might have resented feeling enclosed, but the offer of choices improved your outlook.
A time when I have resented feeling enclosed was : When I was trapped in an elevator due to power outage.
What is the fear of enclosureThe fear of enclosure is known as Claustrophobia ( an anxiety disorder ) and this disorder is present in individuals scared of being in enclosures such as elevators and in crowded rooms. Someone with such disorder ( Claustrophobia ) will tend to avoid enclosures. when I resented feeling enclosed I was assured of getting me out of the enclosure ( elevators ) as power was returned almost immediately and this improved my outlook.
In conclusion A time when I have resented feeling enclosed was : When I was trapped in an elevator due to power outage
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An orchid breeder crosses two types of orchids, one that is tall with a petite bloom and one that is short with a large bloom, with the goal of obtaining a tall orchid with a large bloom. The first cross yields all short flowers with petite blooms. What is the expected yield of tall orchids with large blooms if bred from the first generation
6.25% is the expected yield of tall orchids with large blooms if bred from the first generation.
The genetic explanation of the cross:If orchid plants with two pairs of contrasting characteristics like tall/petite and short/large seeds are crossed the F1 progeny would have all tall plants with petite bloom according to the large bloom of dominance. This implies that tallness is dominant over shortness and the petite bloom is dominant over large bloom. In F2 progeny, there would be some tall plants with petite blooms and short plants with large blooms. However, there would be some plants with recombination of characters such as tall plants with large blooms and short plants with petite blooms. This depicts that tall-short and petite/large traits are inherited independently of each other following law of independent assortment. which states that when two traits are taken in a cross the segregation of one trait is independent of the segregation of other characters.
Phenotypic ratio:9/16 Tallshort : 3/16 Tall petite : 3/16 Tall Large : 1/16 Short Petite ( 9:3:3:1).
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a girl pulling a sled with a mass of 6.0 kg to the left with a force of 10.0 N at a 30.0 degree angle. There is a 1.5 N force of friction to the right. The force of gravity is 58.8 N.
For the girl pulling a sled with a mass of 6.0 kg t the left with a force of 10.0 N at a 30.0° angle, we have:
a) The normal force acting on the sled is 294 N.
b) The acceleration of the sled is 1.2 m/s².
a) We can calculate the normal force acting on the sled, with the sum of all the forces acting in the vertical direction:
(1)
Where:
W: is the weight force or force of gravity = 58.8 N
: is the component of the applied force in the y-direction
N: is the normal force =?
The vertical component of the force () can be calculated as follows:
(2)
Where:
F: is the applied force = 10.0 N
θ: is the angle (with the horizontal) = 30.0°
By entering equation (2) into (1) we have:
Hence, the normal force acting on the sled is 294 N.
b) The acceleration of the sled can be found with the forces acting on the x-direction:
Where:
a: is the acceleration =?
m: is the mass = 6.0 kg
: is the component of the applied force in the x-direction = Fcos(θ)
: is the force of friction = 1.5 N (it is negative because is in the opposite direction of motion)
Therefore, the acceleration is:
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How does sexual reproduction play an important role in variation?
A. Production of unique gametes during meiosis, and the random combination of male and female gametes upon fertilization provides a large amount of variation.
B. Male and female gametes combine randomly during fertilization, and then each gamete randomly selects half of its DNA to give to the embryo.
C. Implantation into the uterus provides the embryo with DNA from the mother to create more variation.
D. Sexual reproduction is not related to variation.
ABC or d with a simple explanation
pls be sure of your answer
Sexual reproduction plays an important role in variation such that; production of unique gametes during meiosis, and the random combination of male and female gametes upon fertilization provides a large amount of variation (option A).
What is sexual reproduction?Sexual reproduction is the process whereby a new organism is created by combining the genetic material of two organisms.
During sexual reproduction, organisms produce gametes through a process called meiosis.
This meiosis allows genetic diversity in the unique gametes produced, which causes random combination of male and female gametes upon fertilization provides a large amount of variation.
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The main immediate source of ATP (lasting about 10 seconds) as muscle contractions begin comes from: The main immediate source of ATP (lasting about 10 seconds) as muscle contractions begin comes from: fat. creatine phosphate. glucose. glycogen.
The main immediate source of ATP is creatine phosphate.
The answer is option b.
Creatine phosphate gives about the first 15 seconds of ATP at the beginning of muscle contraction.
Anaerobic glycolysis produces small amounts of ATP within the absence of oxygen for a quick duration. Aerobic metabolism makes use of oxygen to provide much greater ATP, permitting a muscle to work for longer intervals.
Few ATP is stored in a resting muscle. As contraction begins, it's far used up in seconds. More ATP is generated from creatine phosphate for about 15 seconds.
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What are two significant ways your skeletal system and your circulatory system support one another
Answer:The bone marrow within your bones form new red and white blood cells and removes dirty blood cells. After making these new blood cells, it sends them to the circulatory system
Explanation:
Some functions of the skeletal system are more readily observable than others. When you move you can feel how your bones support you, facilitate your movement, and protect the soft organs of your body. Just as the steel beams of a building provide a scaffold to support its weight, the bones and cartilages of your skeletal system compose the scaffold that supports the rest of your body. Without the skeletal system, you would be a limp mass of organs, muscle, and skin. Bones facilitate movement by serving as points of attachment for your muscles. Bones also protect internal organs from injury by covering or surrounding them.
An oogonium enters ____________ embryonically and is blocked at _____________ until sexual maturity. Fill in the blanks.
An oogonium enters meiosis embryonically and is blocked at diplotene I until sexual maturity.
Oogenesis is the division of the ovum or egg cell into a cell equipped to additionally create when treated. It is created from the primary oocyte by development. Oogenesis starts in the embryonic stage.
The primary oocytes are delivered by the course of oocytogenesis that happens during the undeveloped stage. Around then each oogonium inside the ovaries of the fetus partitions and enters the underlying phase of meiosis I to turn into the fully matured primary oocyte.
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Help ASAP
Please select the word from the list that best fits the definition
______ is measured in half-lives
- remains
- fossils
- mold
- hard
- missing layer
-trace
- radioactive decay
- carbon - 14
Enzymes need to be produced by cells in large quantities because they are consumed by the chemical reactions in which they participate. Group of answer choices True False
The statement that enzymes need to be produced by cells in large quantities because they are consumed by the chemical reactions in which they participate is False.
How much quantity of enzyme is needed in a Chemical Reaction?Between 1 and 10,000 substrate molecules can be catalyzed by an enzyme every second. Due to the fact that they do not change throughout reactions, enzymes are only found in trace levels in cells. and they have a strong affinity for their substrate.By lowering the activation energy and activating more molecules, they act as the catalyst to make the process easier to happen. Because the enzyme must react with the substrate, the concentration of the enzyme is crucial in chemical reactions.When enzymes locate their intended substrate, they seize them, undergo a transformation, and then move on to the subsequent substrate molecule.
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Name the bacteria found in root nodule of leguminous plants
Answer:Rhizobium
Explanation:
Leguminous plants belong to the family Fabaceae. These plants have a symbiotic association with the soil bacteria called the Rhizobium.
a radiograph in front of you appears dark. you note that the bones are gray. what is the most appropriate change to make when retaking this film
Decrease the kilovoltage peak(kVp) by 10%
Kilovoltage peak is referred to as kVp. This is the maximum voltage that the X-ray machine will produce during an exposure.
For instance, if 80 kVp is chosen, the maximum power of x-rays produced during this exposure is 80 kilovolts.
The degree of contrast is controlled by kVp means the radiographic contrast decreases as the kVp rises. Increasing kVp also increases the image's overall density (darkness).
Therefore it is best to decrease the kVp by 10% for the next radiograph as a relatively minor change in kVp can have a big impact on the image.
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What do you think are the most important risks and benefits of modern agricultural practices? Do you think the benefits outweigh the risks?
FiRsT PaRt of The QuEsTiOn:
The Risks of Modern agricultural practices are-
contributes to a number larger of environmental issues that cause environmental degradation including: climate change, deforestation, biodiversity loss, dead zones, genetic engineering, irrigation problems, pollutants, soil degradation, and waste.
The benefits of Modern Agricultural practices are-
An increase in yield of primary crops and lower food prices is as the result of modern technology like new crop varieties, the use of big data and precision agriculture.
Modern machinery like tractors and threshers when used up in farming make ploughing and harvesting faster.
SeCoNd PaRt Of ThE QuEsTioN:
No, I don't think the Benefits outweigh the RISKS of hurting the nature because we are compromising the needs of the future for more yield of crops. Modern practices may give you faster results but it takes away the fertility of the soil instead, It makes the land infertile. After using these modern practices you may not even have the land to do agriculture with.
The value of n, the Hill coefficient, for hemoglobin is about _________ as great as the value for myoglobin.
The value of n, the Hill coefficient, for hemoglobin is about 2 to 3 times as great as the value for myoglobin.
Hill Equation
The two closely related equations that help to explain the binding of macromolecules to ligands are called the Hill equation. It helps to quantify the interaction between various ligand binding sites.
Hill coefficient
It is used to describe the cooperativity of ligand binding. It can be positive and negative depending on the value of the Hill coefficient. If the value of the Hill coefficient is more than one then it exhibits positively cooperative binding and if it is less than one then it exhibits negatively cooperative binding. Then there is the noncooperative binding where the Hill coefficient value is one. As for the hemoglobin and myoglobin, the values are,
Hill coefficient of hemoglobin is 2.7 - 3.Hill coefficient of myoglobin is 1.0.Thus hemoglobin is positively cooperative and myoglobin exhibits noncooperative binding.
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All the major organs of the body are formed by week 10 of gestation. Which process makes this possible?
Answer:
Explanation:
All major body organs are formed by week ten of gestation.
The process which makes this possible is called differentiation.
Differentiation is the process by which cells, organs, and tissues acquire specialized features during the development of embryonic.
describe flow of genetic formation
Answer:The basic flow of genetic information in biological systems is often depicted in a scheme known as "the central dogma".This scheme states that information encoded in DNA flows into RNA via transcription and ultimately to proteins via translation.
In the anatomical position, the body is ________ with the arms straight and at the sides of the body.
A cancer takes time to grow because it is the culmination of a series of genetic and genomic changes called _____ that enable certain cells to divide more frequently than normal.
Cancer takes time to grow because it is the culmination of a series of genetic and genomic changes called Mutations that enable certain cells to divide more frequently than normal.
What Are Mutations?Changes to an organism's DNA sequence are referred to as mutations. Mutations can be the result of viral infection, exposure to mutagens, or mistakes in DNA replication during cell division. Somatic mutations—those that take place in body cells—cannot be passed on to progeny, whereas germline mutations—those that happen in eggs and sperm—can.Mutagens are environmental elements that trigger mutations. Radiation, substances, and infectious diseases are a few examples of mutagens. The nature of mutations may be spontaneous.TP53, a gene that generates a protein that inhibits the development of tumors, is the gene that is most frequently altered in all malignancies. In addition, this gene's germline mutations can result in Li-Fraumeni syndrome, a rare, inherited condition that increases the risk of getting some malignancies.
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Millions of red blood cells are in the circulation and carry ____________ from the lungs to the tissues. In most cases, every cell of the body is located close to a ____________ , the small structures of the circulatory system where the majority of gas exchange occurs.
Answer:
oxygen and capillary
while all zebras have stripes no two zebras share the same stripe patteren
Answer:
true
Explanation:
Hello!
This is due to variation in a zebra!!
Why is a food chain is the simplest model of energy flow between trophic levels in an ecosystem?
because it represents only one pathway of energy flow:
Explanation:
In oxidative phosphorylation, energy for the synthesis of atp is directly obtained from the:.
In oxidative phosphorylation, energy for the synthesis of atp is directly obtained from the movement of hydrogen ions through channels in the innner mitochondrial membrane.
How is ATP synthesized?
Depending on the living being, this recharge can occur by: Fermentation or anaerobic cellular respiration. If the energy used is released by the breakdown of organic molecules, such as glucose, in the absence of molecular oxygen (O2).
Oxidative Phosphorylation is one of the metabolic steps of cellular respiration. The presence of ATP molecules and energy production are necessary for the exclusive use of ATP molecules and energy production.
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A malignant tumor of bone marrow cells associated with high levels of one of the immunoglobulins, usually IgG, is called:
A malignant tumor of bone marrow cells associated with high levels of one of the immunoglobulins, usually IgG, is called multiple myeloma.
The monoclonal immunoglobulins released by the malignant cells of plasma are IgG and IgA which are around 55% and 20% respectively. In 25 to 30 percent of patients, the plasma cells discharge Bence Jones protein which is monoclonal kappa (κ) or lambda (λ) light chains in the urine. IgD myeloma represents around 1% of cases and is more regular among the patients of Asian provision. Monoclonal light chains in a significant number of these previously purported nonsecretory patients.
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Determine which situation is an example of interspecific competition.
A. An herbivore and a carnivore searching for food in the same field.
B. A moose and an eagle hunting in the same territory.
C. Wolves marking their territory.
D. Squirrels hide stashes of acorn nuts from each other.
Wolves marking their territory is an interspecific competition. The correct option is C.
What are interspecific competitions?They are competitions involving organisms of different species. Competition between organisms of the same species is termed intraspecific competition.
When wolves mark their territory, they are doing so against other species of animals that happen to be their competitors. Territorial marking is an indication of competition for space.
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A decline in plasma albumin levels would cause plasma osmotic pressure to _____. Increase Decrease stay the same
A decline in plasma albumin levels would cause plasma osmotic pressure to decrease.
What is plasma osmotic pressure?Plasma osmotic pressure is a type of pressure in the serum of blood caused by its protein content.
The plasma osmotic pressure is mainly due to the presence of albumin, which is the main constituent of the plasma.
In conclusion, a decline in plasma albumin levels would cause plasma osmotic pressure to decrease.
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What are the characteristics of most unsaturated fatty acids found within a human cell?.
The characteristics of most unsaturated fatty acids found within a human cell are deprotonated carboxylic acid and cis double bonds.
With the exception of steroids, fatty acids are carboxylic acids that provide the structural foundation of fats, oils, and all other types of lipids. More than 70 have been found in the natural world.They are typically unbranched, contain an even number of carbon atoms (often 12–20), and can be divided into groups based on the existence and quantity of carbon–carbon double bonds.As a result, saturated fatty acids don't have any carbon-to-carbon double bonds, while monounsaturated fatty acids have one, and polyunsaturated fatty acids have two or more.learn more about unsaturated fatty acids here:
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Review the information from the link here, then answer the questions provided.
The___hemisphere controls verbal processing, including reading, writing, and speech.
The___hemisphere controls nonverbal processing, including spatial, musical, and visual tasks.
The___lobe is responsible for speaking, muscle movements, and making plans and judgments.
The___lobe receives and processes information from the visual fields.
Answer:
umm..ok..hope these will help you..
Left hemisphere Left hemisphere Right cerebral hemisphere Left hemisphere Right cerebral hemisphere The frontal lobeLeft hemisphere Right cerebral hemisphere The frontal lobeOccipital lobeAnswer:
left
tight
frontal
occipital
Explanation:
Ron is observing an onion cell on a slide under a microscope. He sees chromatids being pulled to opposite ends of the cell. Which phase is he seeing?
A.
anaphase
B.
telophase
C.
prophase
D.
interphase
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In your biology lab, you use a stereoscopic microscope to observe a living animal that uses only one opening to both take in its food and eject its waste products. What is the body arrangement of this animal
Answer:
The body arrangement of the animal is an incomplete digestive tract and a gastrovascular cavity.
Read the descriptions of two experiments below.
Experiment 1:
A student tested to see if sunflower growth was affected
by the hardness of the soil. She used control and
experimental groups. She repeated her experiment several
times, and each time found that the hardness of the soil
did not affect the growth.
Experiment 2:
A student tested to see if the temperature of water
affected the growth of cacti. She used control and
experimental groups. Her data supported her hypothesis.
Which experiment most likely has greater reliability, and why?
OA. Number 1, because each experiment got the same results
OB. Number 2, because it has control groups
OC. Number 1, because the experiment disproved the hypothesis
OD. Number 2, because it proved the hypothesis
Both experiments used control and experimental groups. However, experiment 1 repeated the same experiment several times. Option A. Number 1, because each experiment got the same results.
What does replication mean in an experiment?Following the scientific method, an experiment needs to be replicable.
Replication refers to the repeatition of a research study, under different situations, with different subjects and by different researchers to determine the safety of the original findings and the possibility of generalizing them to other situations and participants.
Replicability is the possibility of carrying out the same experiment by other researchers. When repeating the experiment, results should be the same or with a minimal variation. Results heterogeneity should be minimal.
From the exposed experiments, experiment number 1 is more reliable. Option A is correct. Number 1, because each experiment got the same results.
Both experiments used the control and experimental groups. However, experiment 1 repeated the same experiment several times, and every time the results were the same.
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