As a general rule of thumb, it is best not to remove more than one-third (1/3) of the live plant material when pruning. Pruning is a common practice and gardening to maintain the health, appearance of plants.
When pruning, it is important to strike a balance between removing enough plant material to encourage growth and rejuvenation while ensuring that the plant can still maintain its health and vigor. Removing more than one-third of the live plant material can be stressful for the plant and may hinder its ability to recover and grow properly. By adhering to this rule, gardeners can avoid excessive stress and damage to the plant, promoting its overall well-being and longevity.
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Which statement accurately describes the chemical symbol of an element?The chemical symbol is always a single letter.The chemical symbol always starts with the same letter as the name of the element.The chemical symbol always begins with a capital letter.The chemical symbol can be shared by more than one element.
Answer:
The chemical symbol of an element always starts with an chemical letter so here the answer is that the chemical symbol always begins with a capital letter.
Explanation:
The Sun has been stable for 5 billion years. What will happen in the next two
stages of its life cycle?
A. First it will contract, and then it will expand and return to its
current size.
B. First it will expand, and then it will contract and return to its current
size.
C. First it will contract, and then it will expand and become much
larger than its current size.
D. First it will expand, and then it will contract and become much
smaller than its current size
Sun will contract, and then it will expand and become much larger than its current size. So, the correct option is (C).
What is Sun?The Sun is a type of star at the center of the Solar System, an almost perfect ball of hot plasma, heated to incandescence by nuclear fusion reactions in its core. The Sun radiates energy in the form of light, ultraviolet and infrared radiation, which is the most important source of energy for life on Earth.
In about 5 billion years the Sun will turn into a red giant. The core of the star will shrink but the outer layer will expand to the orbit of Mars, encircling the planet in the process.
Thus, Sun will contract, and then it will expand and become much larger than its current size. So, the correct option is (C).
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Which infectious agents are the most similar? Why?
A red bloom cell has diameter of 0.008mm. a model of the red blood cell has a diameter of 80mm. What is the scale of the model
Scale of the model: 1:10,000. To find the scale of the model, we need to compare the size of the model to the actual size of the red blood cell. Given that the diameter of the red blood cell is 0.008mm and the diameter of the model is 80mm, we can calculate the scale by dividing the diameter of the model by the diameter of the actual cell.
Scale = Model diameter / Actual cell diameter
Substituting the given values:
Scale = 80mm / 0.008mm
Simplifying the expression:
Scale = 10,000
Therefore, the scale of the model is 1:10,000.
1. Identify the diameter of the red blood cell: 0.008mm.
2. Identify the diameter of the model: 80mm.
3. Use the formula Scale = Model diameter / Actual cell diameter.
4. Substitute the values into the formula: Scale = 80mm / 0.008mm.
5. Simplify the expression to find the scale: Scale = 10,000.
6. The scale of the model is 1:10,000, indicating that the model is 10,000 times larger than the actual red blood cell.
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list the organisms that cause the most illnesses, hospitalizations, and deaths in the united states.
In the United States, the bacteria and viruses that result in the greatest illnesses, hospitalizations, or fatalities include salmonella, campylobacter, clostridium perfringens, E. coli, listeria, and norovirus.
The main causes of food poisoning are viruses and bacteria. Depending on whether bacteria or virus contaminated the food, different foods will have different signs and symptoms of food poisoning. Always follow the four food safety stages of cleaning, separating, cooking, and chilling to avoid getting sick. Below are more preventative suggestions for many germs and viruses.
The following list of bacteria and viruses includes those that most frequently cause illnesses, hospitalizations, or fatalities in the US: Campylobacter, Clostridium perfringens, E. coli, Listeria, Norovirus, and Salmonella. Staphylococcus aureus (Staph] Food Poisoning), Shigella, Bacillus cereus, botulism, hepatitis A, staphylococcal [Staph] food poisoning, vibrio species causing vibriosis, etc. are some other significant bacteria and viruses that can cause foodborne sickness.
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a drug that exerts lower response at full receptor occupancy and occupies the same receptor site as the naturally occurring compound is termed a:
A drug that exerts lower response at full receptor occupancy and occupies the same receptor site as the naturally occurring compound is termed a partial agonist.
A partial agonist is a chemical compound that binds to a receptor and partially activates that receptor to create a pharmacological response, rather than fully activating it, unlike a full agonist that produces maximal responses upon receptor occupancy. To explain the concept of partial agonist in 130 words:Partial agonists can be used to modulate the activity of a given receptor. When the receptors have been completely activated by full agonists, partial agonists can bind to the same receptor site, resulting in a lower response than the full agonist that occupies the same receptor.
A partial agonist has a ceiling effect; once the receptor is fully occupied, additional amounts of the drug cannot generate an increased response. A partial agonist can create a variety of effects depending on the response level required. Partial agonists are essential because they allow for more fine-tuned control of receptor activity in the body while preventing toxicity associated with full activation of the receptor. So therefore partial agonist is term a drug that exerts lower response at full receptor occupancy and occupies the same receptor site as the naturally occurring compound.
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It's 58 degrees outside and a meteorologist says a cold front is headed to you area. What should you wear to prepare? *
sandals
rain jacket
snow jacket
hat and gloves
A train traveled at 350 km in 2.5 hours. What was the average speed of the train?
Answer:
140 km per hour.
Explanation:
350 divided by 2.5= 140
The average speed of the train was 140 kilometers per hour.
Speed is a unit used to describe how fast something is moving with respect to another object. Due to its scalar nature, it has only magnitude and no direction. By dividing the distance traveled by an object by the time required to cover that distance, one can calculate its speed.
The formula for calculating speed is as follows:
Speed = Distance / Time
In the International System of Units (SI), the meter per second (m/s) is the accepted unit for measuring speed. Nevertheless, other common units for speed include kilometers per hour (km/h) and miles per hour (mph), depending on the situation and location.
We can use the following calculation to determine the typical speed of a train:
Average speed = Distance traveled / Time taken
In this example, the train covered this distance of 350 km in 2.5 hours.
Average speed = 350 km / 2.5 hours
Average speed = 140 km/h
Therefore, the average speed of the train was 140 kilometers per hour.
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How is the DNA
in a prokaryote different from the DNA in a eukaryote?
Answer:
Unlike eukaryotic DNA, which is found in a nucleus, prokaryotic genomic DNA is linked to the plasma membrane as a nucleoid.
Explanation:
Unlike eukaryotic DNA, which is found in a nucleus, prokaryotic genomic DNA is linked to the plasma membrane as a nucleoid.
Answer:
Prokaryotic DNA is freely floating around the cells of the organism and is generally less complex than that of eukaryotes. Eukaryotic DNA is stored in the nuclei of cells and is generally more complex than that of prokaryotes.
Explanation:
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Which of the following is not an advantage seeds provide over spores?
Protective integument
Multicellularity
Asexual reproduction
Long period of dormancy
Stored food supply
Asexual reproduction is not an advantage seeds provide over spores. The correct answer is c.
Asexual reproduction is not an advantage provided by seeds over spores. Both seeds and spores can participate in asexual reproduction, as they are capable of generating new individuals without the need for fertilization.
The advantages of seeds over spores are as follows:
1. Protective integument: Seeds are enclosed within a protective covering called the seed coat or integument. This protective layer helps safeguard the embryo from desiccation (drying out), mechanical damage, and harsh environmental conditions, increasing the chances of successful germination.
2. Multicellularity: Seeds are multicellular structures that contain not only the embryo but also other important tissues such as endosperm, cotyledons, and sometimes additional protective layers. This multicellularity provides a more developed and organized structure compared to spores, allowing for a better chance of survival and successful establishment of the new plant.
3. Long period of dormancy: Seeds have the ability to enter a state of dormancy, remaining in a suspended state until conditions are favorable for germination. This long period of dormancy allows seeds to withstand unfavorable environmental conditions, such as extreme temperatures, drought, or lack of light, and ensures their survival until suitable conditions for growth and development are met.
4. Stored food supply: Seeds often contain a nutrient-rich tissue called the endosperm or cotyledons. This stored food supply provides nourishment for the developing embryo during germination and early growth stages when it is unable to carry out photosynthesis. Having a readily available food source gives seeds a head start in growth and increases the chances of successful establishment.
In summary, while asexual reproduction is not a unique advantage of seeds over spores, seeds provide benefits such as a protective integument, multicellularity, long periods of dormancy, and a stored food supply, which enhance their survival and successful germination.
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Why is oxygen transport in and out of the nodule regulated?
Oxygen transport in and out of the nodule is regulated to maintain an optimal balance between providing oxygen for respiration and protecting nitrogenase, the enzyme involved in nitrogen fixation. This regulation ensures efficient biological nitrogen fixation and maintains the symbiotic relationship between legume plants and rhizobia bacteria.
Oxygen transport in and out of the nodule is regulated in order to maintain a balance between oxygen supply and demand. Nodules are specialized structures in the roots of legume plants that house nitrogen-fixing bacteria. These bacteria require a low oxygen environment to function properly, as high levels of oxygen can damage their nitrogen-fixing enzymes. Therefore, oxygen transport in and out of the nodule must be carefully regulated to ensure that the bacteria receive enough oxygen to survive, while also preventing excess oxygen from harming their nitrogen-fixing capabilities.
Additionally, excessive oxygen within the nodule can lead to the production of harmful reactive oxygen species, which can damage the plant and the bacteria. Therefore, regulating oxygen transport in and out of the nodule is crucial for the proper functioning of both the plant and the nitrogen-fixing bacteria.
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A person who is assigned female at birth is most fertile during?
A person who is assigned female at birth (AFAB) is typically most fertile during their reproductive years, which usually occurs between the ages of 16 and 35.
During this time, AFABs will experience regular menstrual cycles and produce hormones like estrogen and progesterone that can help prepare their bodies for pregnancy.
This higher level of fertility can be used to increase the chances for conception, allowing people to expand families through natural means or assisted reproductive technology such as in-vitro fertilization.
However it's important to remember that there are other factors that affect fertility, such as age and health, so even when a person is in their most fertile window it does not guarantee a successful conception experience.
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A photographer wants to share her photos with people in
other parts of the world.
What are two reasons the photographer would choose a digital signal rather
than an analog signal to share the photos?
A. The digital signal is less vulnerable to noise and more likely to
arrive intact.
B. The digital signal can be copied many times without losing
quality.
C. The digital signal moves gradually between an infinite number of
values.
D. The digital signal could easily lose information because of noise
over long distances.
Answer:
The Digital signal is less vulnerable to noise and more likely to arrive intact
The Digital signal can be copied many times without losing quality
Explanation:
ApE-x
Hope this helps!
:)
Answer:
The Digital signal is less vulnerable to noise and more likely to arrive intact
The Digital signal can be copied many times without losing quality
Explanation:
test
Activation energy (EA) is defined by the following statement(s).
A. EA is the amount of energy needed for a reaction to occur.
B. EA is lowered by the appropriate enzyme.
C. EA is the same between reactants and products.
D. A and B
E A, B, and C
EA is indeed the amount of energy needed for the a reaction to take place, and the right enzyme lowers EA.
The correct answer is A,B
What is the actual meaning of energy?The definition of energy is the capacity for work. Numerous things contain energy, which can also exist in a variety of forms. Kinetic energy, for instance, is the energy of motion, and potential energy is the energy resulting from the location or structure of an object. Although energy can change forms, it never actually disappears.
Why does energy exist?Energy is a phrase used to describe a property of matter and non-matter fields; it is not a substance in and of itself. For instance, it is argued that matter has kinetic energy when it moves quickly. Potential energy can take many different forms.
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think about the cam photosynthetic pathway: what would happen if a mutation prevented the intermediates stored in vacuoles from being released during the daytime? a) rubisco would grab o2 b) rubisco would not grab o2 vacuole
Rubisco would grab \(O_2\) if a mutation prevented the intermediates kept in vacuoles from being released during the day.
The light-dependent process constantly releases oxygen throughout the day. A tight \(O_2:CO_2\) ratio increases the likelihood that Rubisco will take in oxygen.
Plants that use the crassulacean acid metabolism (CAM) pathway to lessen photorespiration include cacti and pineapples. The Crassulaceae plant family is where the pathway was first discovered, hence the name.
CAM plants divide these processes in time as opposed to spatially separating the Calvin cycle's usage of \(CO_2\) light-dependent reactions. On CAM plants, the stomata open at night, allowing \(CO_2\) them to penetrate the leaves. By using the same process as \(C_4\) plants, PEP carboxylase fixes this \(CO_2\) into oxaloacetate, which is then transformed into malate or another kind of organic acid.
Option A is the proper response, so.
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1. Which of the following is an example of sensitization:
You blink each time your eye doctor gives you a puff of air in your eyes.
A dog was hit by his previous owner, and now the dog cowers each time his new owner reaches out to pet him.
You no longer feel your shirt touching your skin.
You're walking on the sidewalk and a bicyclist almost hits you, so you jump out of the way.
The example of sensitization from the given alternatives is that 'A dog was hit by his previous owner, and now the dog cowers each time his new owner reaches out to pet him.'
Sensitization refers to the process in which an organism becomes more sensitive to stimuli, both good and bad. It happens when the body's nervous system becomes oversensitized to a particular stimulus that it begins to respond even to weaker or non-threatening stimuli.
The example given in the first option refers to a simple reflex action that occurs in response to the puff of air that is blown into the eyes during the eye examination. The third option is about sensory adaptation, which occurs when sensory receptors are exposed to stimuli for an extended period, resulting in a reduction in sensitivity. The fourth option refers to the fight or flight response that occurs as a result of a threatening stimulus, in which an individual's body prepares to confront or flee from danger.
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The human nervous system operates on the principle of electric signals sent from the brain to different parts of the body and back again. The electric signals or "currents" must have a conductive path to follow. This conductive path is formed through the use of electrolytes. A crude analogy would be to liken electrolytes to the wires in a circuit in physics lab. Not having enough electrolytes in your body would be the physics equivalent of not having enough wire to send the necessary signals to operate the light bulb in the circuit. In this case, a person's brain might not be able to send the necessary signals to tell the heart to continue beating and a person could die. QUESTION: Consider the opposite scenario. What might be the consequences of having too many electrolytes in your body? What would be the physics circuit analogy in this case?
Having too many electrolytes in the body can disrupt the delicate balance of electrolyte concentrations, leading to an abnormal physiological state called electrolyte imbalance. While electrolytes are essential for proper nerve function, excessive levels can have adverse effects on various body systems. The consequences of having too many electrolytes in the body can vary depending on which electrolyte is in excess and the severity of the imbalance.
One possible consequence of excessive electrolytes is hypernatremia, an elevated sodium level in the blood. High sodium concentrations can disrupt cellular processes, affecting nerve function and causing neurological symptoms such as confusion, seizures, or even coma. Additionally, an imbalance in other electrolytes like potassium, calcium, or magnesium can also have detrimental effects on nerve and muscle function, leading to irregular heartbeat, muscle weakness or cramps, and other complications.
In terms of a physics circuit analogy, having too many electrolytes in the body can be likened to an overloaded circuit with excessive current flowing through the wires. In this scenario, the excessive current can cause the wires to overheat or melt, leading to a breakdown in the circuit's functionality. Similarly, the excessive electrolytes can disrupt the normal flow of electrical signals in the body, impairing the proper functioning of the nervous system and potentially causing serious health consequences.
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which cytoskeleton component plays a major role in the formation of the mitotic spindle?
a. intermediate
b. filaments
c. microfilaments
d. microtubules
Microtubules play a major role in the formation of the mitotic spindle during cell division. The correct answer is (d ) microtubules
The mitotic spindle is a dynamic structure composed of microtubules that forms during mitosis and is responsible for separating the duplicated chromosomes into two daughter cells.Microtubules are hollow tubular structures made up of tubulin protein subunits. They form the framework of the mitotic spindle and are involved in capturing and organizing the chromosomes, as well as facilitating their movement during cell division.Other components of the cytoskeleton, such as intermediate filaments and microfilaments, have important roles in cellular structure and function but are not primarily involved in the formation of the mitotic spindle.
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___________ is the process of comparing and contrasting embryo development to determine common ancestry.
Comparative embryology is the process of comparing and contrasting embryo development to determine common ancestry.
Comparative embryology is the study of comparing the development of embryos from different species. Before they specialize in the various organs and systems of the body, all embryos must first develop from a single cell into a multi-celled zygote, then into a clump of cells known as a morula, and finally into a hollow ball of cells known as a blastula.
The study of the similarities and differences that can be found in the embryos of several animals is referred to as comparative embryology. It is likely that shared ancestry is the explanation for similarities found in embryos.
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thoreen cc, cheng d, et al. 2003. a proteomics approach to understanding protein ubiquitination. nat. biotechnol. 21: 921–26
Protein ubiquitination is a post-translational modification process in which a small protein called ubiquitin is attached to target proteins. This modification plays a crucial role in various cellular processes, including protein degradation, signal transduction, DNA repair, and cell cycle control.
Ubiquitin itself can be attached to target proteins through a series of enzymatic reactions involving three main types of enzymes: ubiquitin-activating enzymes \((E1),\) ubiquitin-conjugating enzymes\((E2),\) and ubiquitin ligases \((E3).\) These enzymes work together to transfer ubiquitin from\(E1 to E2\) and finally to the target protein.
Proteomics is a field of study that focuses on large-scale analysis of proteins, including their structures, functions, and interactions. By applying proteomics techniques, researchers can identify and characterize proteins involved in different cellular processes, including protein ubiquitination.
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1.What would happen to our growth and development if the pituitary gland is damaged or removed? Explain with example.
2.How do insulin and glucagon maintain blood glucose levels?
3.How is the development of secondary sexual characteristics , such as onset of meanstruation, growth of hair, and production of sperm and eggs related to gonads?
okk
If the pituitary gland is damaged or removed, our growth and development are adversely affected.
Insulin reduces blood sugar levels.
The development of secondary sexual characteristics is directly related to gonads.
What would happen if your pituitary gland can't work properly?The pituitary gland is known as the master gland of the endocrine system because it controls many hormone glands in our body. Without Pituitary glands, the body wouldn't reproduce and grow properly and many other functions are not working properly in our body.
Insulin reduces the blood sugar levels in our body and provides glucose to the cell for the production of energy. When blood sugar levels are too low, the pancreas releases glucagon in the blood with help of insulin. Glucagon is a type of hormone that pancreas help to regulate your blood glucose levels. The liver release stored glucose which causes the blood sugar levels in the body to rise.
The pubertal changes in secondary sex characteristics like breast development, fat deposition, development of genitalia, changes in the larynx, and hair growth lead to increasing levels of gonads.
So we can conclude that our growth and development are adversely affected if the pituitary gland is damaged or removed.
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Bone, or osseous, tissue provides protection for our vital organs since the inorganic ground substance is:
Bone, or osseous tissue, provides protection for our vital organs through its inorganic ground substance. This substance is made up of minerals such as calcium and phosphorus, which make up the majority of the tissue.
This gives the tissue its hard, strong, and durable nature that is able to withstand physical pressure and trauma. The inorganic ground substance also forms a barrier that helps protect organs from potential damage, such as pathogens, toxins, and other external sources.
Furthermore, the inorganic ground substance provides structure and support for the body, allowing us to move and stay upright. The inorganic ground substance also helps to store essential minerals that are important for maintaining healthy bones, muscles, and teeth.
Thus, the inorganic ground substance of osseous tissue plays an important role in protecting our vital organs.
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Breaking down fatty acids into 2 carbon pieces that are converted into acetyl groups is referred to as ______.
Breaking down fatty acids into 2 carbon pieces that are converted into acetyl groups is referred to as "beta-oxidation."
Beta-oxidation is the metabolic process by which fatty acids are broken down in the mitochondria of cells to produce acetyl-CoA, which can further enter the citric acid cycle (also known as the Krebs cycle) to generate energy. The process involves a series of enzymatic reactions that sequentially remove two-carbon units from the fatty acid chain, producing acetyl-CoA and generating NADH and FADH2 in the process. These energy-rich molecules can then participate in the electron transport chain, leading to the production of ATP through oxidative phosphorylation.
Beta-oxidation is a vital pathway for the utilization of fatty acids as an energy source, and it occurs predominantly in tissues such as the liver, adipose tissue, and muscle cells. The process of beta-oxidation is regulated by various factors, including hormonal control and substrate availability, to ensure a balanced utilization of fatty acids for energy production.
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The traits from the previous page were developed using selective breeding. Describe one trait that each of the animals was bred to have, and why this trait would be valuable for the farmer raising the animal
The traits from the previous page were developed using selective breeding. One trait that each of the animals was bred to have is namely the nature of producing lots of milk in cows, the nature of producing lots of eggs in chickens, and the nature of fattening in pigs. And this trait would be valuable for the farmer raising the animal because of these properties will generate more money for farmers.
Selective breeding is the process of choosing specific traits or characteristics and breeding animals or plants in order to produce offspring with those desired traits. Farmers use selective breeding to develop animals with traits that are valuable to them. One trait that was bred in cows is the ability to produce large quantities of milk. This trait is valuable to the farmer because it allows them to produce more milk and make more money from selling the milk.
Another trait that was bred in chickens is the ability to lay a large number of eggs. This trait is valuable to the farmer because it allows them to produce more eggs and make more money from selling the eggs. A third trait that was bred in pigs is the ability to gain weight quickly. This trait is valuable to the farmer because it allows them to produce larger pigs that can be sold for more money. Overall, selective breeding is used to develop animals with traits that are valuable to the farmer and allow them to make more money from raising the animals.
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Which equation best represents conservation of matter? (1 point)
O 6H₂O + 6CO2 → C6H12O6 + 60₂
O 6H₂O +10CO2 → C6H12O6 + 40₂
O 3H₂O + 3CO2 → C6H12O6 + 60₂
O 6H₂O + 6CO2 → C3H603 + 30₂
O 6H2O + 6CO2 → C6H12O6 + 6O2
What does the law of conservation of matter state?Physical and chemical changes can cause matter to transform into different forms, but no matter what happens, matter is always conserved. There is no creation or destruction of matter; the amount of matter is the same before and after the transformation. The Law of Conservation of Mass is the name given to this idea.According to the rule of conservation of mass, in a closed system, matter cannot be created or destroyed. This means that each element must be present in equal amounts in both the starting ingredients and the final products of a chemical process.According to the law of conservation of matter, matter in a system cannot be created or destroyed. In other words, when an elemental substance reacts, the same number of elements must be utilized as are generated.The equations in this question show how CO2 reacts with water to form C6H12O6 and O2 during the entire photosynthetic process. Each individual element must be equal on both the reactant and product sides of the equation for it to obey the "conservation of matter," or for the equation to be balanced.The equation best represents conservation of matter: O 6H2O + 6CO2 → C6H12O6 + 6O2.
Therefore, the answer is O 6H2O + 6CO2 → C6H12O6 + 6O2.
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why do we think that male neanderthals mated with non-african ancestral homo sapiens?
Male Neanderthals mated with non-african ancestral homo sapiens Because Neanderthal nuclear DNA sequences are present in the human gene pool, and Neanderthal mtDNA sequences are not.
Neanderthals have been discovered to contribute up to 1-4% of the genomes of non-African modern humans, depending on where your ancestors came from, while modern people who lived around 40,000 years ago have been shown to contain up to 6-9% Neanderthal DNA.
Because Neanderthals are supposed to have evolved outside of Africa (no Neanderthal remains have been discovered in Africa), it was assumed that there would be no evidence of Neanderthal DNA in African contemporary people. However, a research published in 2020 found Neanderthal DNA in all African Homo sapiens.
This is an excellent sign of how human migration out of Africa worked: Homo sapiens did not leave Africa in one or more massive dispersals, but rather by gene flow back and forth over time, bringing Neanderthal DNA into Africa.
Because mtDNA is only passed down from mother to child, if Neanderthal males were the only ones contributing to the human genome, their contributions would be absent from the mtDNA line.
Interbreeding between Neanderthal men and human females may have generated viable children, while interbreeding between Neanderthal females and contemporary human males may not have produced fruitful offspring, implying that the Neanderthal mtDNA could not have been handed down.
Finally, it is possible that modern humans do carry at least one mtDNA lineage that Neanderthals contributed to our genome, but that we have not yet sequenced that lineage in either modern humans or in Neanderthals. Any of these explanations could underlie the lack of Neanderthal mtDNA in modern human populations.
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The management function known as organizing Multiple select question. sets the organization's long term and short term goals places employees and resources where they will be effective in achieving the organization's goals creates an organization chart showing lines of responsibility and authority designs the structure of the organization
The management function known as organizing includes the following: Designs the structure of the organization, Creates an organization chart showing lines of responsibility and authority and Places employees and resources where they will be effective in achieving the organization's goals. (Options a,b and c).
The management function known as organizing includes the following:
a. Designs the structure of the organization: Organizing involves determining the overall structure of the organization, including how departments, teams, and individuals are organized and how they relate to each other.
b. Creates an organization chart showing lines of responsibility and authority: Organizing includes developing an organization chart that outlines the hierarchy of positions, lines of authority, and reporting relationships within the organization.
c. Places employees and resources where they will be effective in achieving the organization's goals: Organizing involves assigning employees and resources to specific roles and positions based on their skills, capabilities, and the needs of the organization. This ensures that resources are allocated efficiently and effectively to achieve the organization's goals.
Therefore, options a, b, and c are correct.
Option d, setting the organization's long-term and short-term goals, falls under the management function of planning, which involves setting goals, defining strategies, and determining the actions required to achieve those goals.
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The correct question is:
The management function known as organizing does which of the following? (More than 1 answer)
a. Designs the structure of the organization
b. Creates an organization chart showing lines of responsibility and authority
c. Places employees and resources where they will be effective in achieving the organization's goals
d. Sets the organization's long term and short term goals
How does plate tectonics relate to the drifting of continents?
According to this theory, Earth's crust is broken into roughly 20 sections called tectonic plates on which the continents ride. ... Plate tectonics explains why Earth's continents are moving; the theory of continental drift did not provide an explanation. Therefore, the theory of plate tectonics is more complete.
Answer:
According to this theory, Earth's crust is broken into roughly 20 sections called tectonic plates on which the continents ride. ... Plate tectonics explains why Earth's continents are moving; the theory of continental drift did not provide an explanation. Therefore, the theory of plate tectonics is more complete.
Explanation:
Theory of continental drift states that the world was made up of a single continent. The theory of plate-tectonics, on the other hand, states that earth's surface is broken into numbers of shifting plates or slabs.
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Evolution is any change in the heritable traits within a
A. generation
B. population
C. individual
Answer:
B. population
Explanation:
CORRECT
Evolution is any change in the heritable traits within a population. Therefore, option (B) is correct.
What is evolution?Evolution is the process by which populations of organisms change over time through the gradual accumulation of genetic variations. It is the central concept of modern biology and provides a framework for understanding the diversity of life on Earth.
Evolution occurs through the mechanisms of natural selection, genetic drift, gene flow, and mutation. Over time, genetic variations that confer a survival advantage in a particular environment become more common in a population, while those that are detrimental or neutral are selected against.
This process can lead to the emergence of new species, as well as the extinction of others. The study of evolution has practical applications in fields such as medicine, agriculture, and conservation, and helps us understand our place in the natural world.
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Can someone help me really quickly.
Megan reads that ocean waves move in two dimensions and thinks these dimensions are longitude and latitude. What mistake is she making?
A.
Latitude and longitude are used more often for places on land than at sea.
B.
All types of waves are 3D, or move in three dimensions, in the real world.
C.
The direction in which waves travel is considered to be a third dimension.
D.
The dimensions are the height and length of the waves within the ocean bed.
The mistake that Megan is making about oceans wave is The dimensions are the height and length of the waves within the ocean bed. Option D
What more should you know about Megan's mistake in relation to how ocean waves are read?
When speaking about the two dimensions of ocean waves, we should consider the to be the wave height and wave length not geographical coordinates such as latitude and longitude.
Megan is making the mistake of thinking that the two dimensions that ocean waves move in are longitude and latitude.
whereas Longitude and latitude are used to measure the location of a point on Earth.
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