How does the structure of DNA allow the right protein to be made?
Answer: Structure of DNA: double-stranded helix held by complementary base pairs. DNA carries the genetic information for making proteins. The four bases A, T, C and G make up the genetic code. The base sequence determines amino acid sequence in protein.
Explanation:
The shark still has identical skeleton to previous sharks. What other way can you prove evolution occurred if fossil evidence does not show any?
plz help it is really important
Answer:
answer one: during the day the sun's energy heats up land faster which makes the air above warmer
Explanation:
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The main function of the human digestive system is to
a. Rid the body of cellular waste materials
b. Process otrganic molecules so they can enter cells
c. Break down glucose in order to release energy
d. Change amino acids into proteins and carbohydrates
Answer:
B
Explanation:
HELP ILL GIVE BRAINLIEST!!! Genetic variation led to to one plant surviving and reproducing when the other did not. This variation was in... *picture also attatched
Answer:
D
Explanation:
identify the function of the vacuole. what is the funtion of the vacuole. please explain
food vacuole or granule:- used to contain food for digestion .
contractile vacuole :- used to remove excess water.
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Answer:
vacuole store water nutrients and other materials and in plants support the cell structure.
Explanation:
vet one cause of hyperadrenocorticism is overproduction of acth in the brain (called ____ -dependent hyperadrenocorticism) and the other cause is overproduction of cortisol by a(n) _____ tumor
Vet one cause of hyperadrenocorticism is overproduction of ACTH in the brain, (called pituitary-dependent hyperadrenocorticism), and the other cause is overproduction of cortisol by an adrenal tumor.
What is Hyperadrenocorticism?Hyperadrenocorticism, also known as Cushing's disease, is a condition that occurs when the body produces an excess amount of the hormone cortisol. This hormone is produced in the adrenal glands, which are located on top of the kidneys. Cortisol is essential for regulating various functions in the body, such as glucose metabolism, the immune system, and blood pressure
.What is the cause of hyperadrenocorticism?The two primary causes of hyperadrenocorticism are pituitary-dependent hyperadrenocorticism and adrenal gland-dependent hyperadrenocorticism. Pituitary-dependent hyperadrenocorticism is caused by a tumor on the pituitary gland that causes an overproduction of ACTH. ACTH is a hormone that stimulates the adrenal glands to produce cortisol. Adrenal gland-dependent hyperadrenocorticism is caused by a tumor on the adrenal gland that causes an overproduction of cortisol without the need for ACTH stimulation.
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1. True or False: The muscular system has functions as diverse as stabilizing joints, producing movement, maintaining posture, and generating heat to maintain bod temperature. O True O False. 2. Intermediate filaments attached to dense bodies impart what characteristic unique smooth muscle? A) À faster ATP production B) transmits impulses deep into the muscle cell C) slows contraction and relaxation D) speeds actin & myosin action
The statement is true. The muscular system indeed has functions as diverse as stabilizing joints, producing movement, maintaining posture, and generating heat to maintain body temperature.
1. Muscles play a crucial role in providing support and stability to joints, allowing for coordinated movement of the body. They also help maintain posture by working in opposition to gravity. Additionally, muscle contractions generate heat through metabolic processes, which helps regulate body temperature and prevent hypothermia. So, the muscular system indeed has functions as diverse as stabilizing joints, producing movement, maintaining posture, and generating heat to maintain body temperature.
2. The correct answer is c. slows contraction and relaxation.
Intermediate filaments in smooth muscle are attached to dense bodies, which are structures within the cell that anchor the filaments. This arrangement provides structural support and allows for the transmission of force throughout the smooth muscle cell. The attachment of intermediate filaments to dense bodies helps to distribute tension and slow down the contraction and relaxation processes of smooth muscle.
Smooth muscle contractions are generally slower and more sustained compared to skeletal muscle contractions. The presence of intermediate filaments attached to dense bodies contributes to this characteristic by slowing down the contraction and relaxation processes
The correct question is:
1. True or False: The muscular system has functions as diverse as stabilizing joints, producing movement, maintaining posture, and generating heat to maintain body temperature.
2. Intermediate filaments attached to dense bodies impart what characteristic unique smooth muscle?
a. faster ATP production
b. transmits impulses deep into the muscle cell
c. slows contraction and relaxation
d. speeds actin & myosin action
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What is thermal energy and conduction?
Answer:
Thermal conduction is the transfer of internal energy by microscopic collisions of particles and the movement of electrons within a body.
Explanation:
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Answer:
gg
Explanation:
because both are the same recessive trait it would be 25% of offspring would get the trait
Which gymnosperm is an example of a cycad?
Answer:
C
Explanation:
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Answer:
The answer is c the one that is shaped like a cone
Explanation:) I just answered the question and it was right. brainliest would be very nice please :)
Which is the closest synonym for the word harbinger?
A
Satisfaction
B
Selection
C
Illustrator
D
Indicator
Answer:
i am pretty sure its indicator
Answer:
Indicator:))
Explanation:
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Natural selection was proposed by Charles Darwin to explain how species evolve. What is it?
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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Which of the following describes the integration center of a feedback mechanism? a.) a molecule, cell, or organ that carries out a response to a stimulus b.) A cell or organ specialized to detect a stimulus c.) Processes information, relates it to other information, and makes a decision of what a response should be
Information is processed, and related to other information, and a choice is made as to what action should serve as the focal point of a feedback system. The correct answer is (C).
A component or a system that receives and processes data from the sensory receptors regarding the present state or condition of the body is referred to as the integration center in a feedback mechanism. It combines this information with other pertinent data before deciding on the best way to react to the stimuli.
The integration center is in charge of examining the incoming signals and choosing the best course of action to maintain homeostasis or accomplish a certain objective. It compares the feedback to a predetermined point or intended condition while taking into consideration the sensory receptors' output. Based on this analysis, the integration center triggers the necessary reaction, which effectors then carry out, via signaling pathways.
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what can we do to reduce the demand for Forest Products
answer:
finding alternatives for forest resources that are more sutainable and less harmful.
Explanation:
by having alterantives to the matierials and products we harvest from forests, we can reduce their demand and better preserve said forests and the wildlife within them.
What fictional planet does the writer compare Kepler-16b to?
Pluto
Lyra
Tatooine
Cygnus
Answer:
Tatooine
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In a population, if the proportion of individuals who have sickle-cell disease is 0.25, and the population is assumed to be at Hardy-Weinberg equilibrium, what is the expected frequency of the HbS allele? (Hint: What is the genotype of people with sickle-cell disease, and how is that genotype represented in the Hardy-Weinberg equation?) a. 0.125
b. 0.25
c. 0.5
d. 0.75
Therefore, using the value of stated in the question as 0.25, we can determine the frequency of the recessive HbS allele that causes the condition, q. As a result, the HbS allele has a frequency of c) 0.5.
A population's allele frequencies can be estimated using the Hardy-Weinberg equation. The formula p2 + 2pq + q2 = 1 can be used to compute genotype frequencies and dominant (p) and recessive (q) allele frequencies. P+q=1, where p is the recessive allelic frequency and q is the dominant allelic frequency, is the Hardy-Weinberg equation. In addition to representing the binomial expansion of (p + q)2, the Hardy-Weinberg genotype frequencies, p2 + 2pq + q2, also add to one.
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Explain how the release of energy (cooling) affects the speed of the particles in a substance
Answer: When a substance is heated, it gains thermal energy. Therefore, its particles move faster and its temperature rises. When a substance is cooled, it loses thermal energy, which causes its particles to move more slowly and its temperature to drop.
Explanation:
The reaction 6CO2 + 6H2O+ energy --> C6H12O6 + 6O2 is a reaction you have probably seen before. a. The reactant 6CO2 enters the plant ____
b. from the atmosphere The reactant energy enters the plant through ____
c. The product C6H12O6 is ____ and is created through the ____ of CO2 d. The product 6O2 is considered a ____
a. The reactant 6CO2 enters the plant from the atmosphere.
b. The reactant energy enters the plant through an external source, such as sunlight.
c. The product C6H12O6 is glucose and is created through the process of photosynthesis, specifically the conversion of CO2.
d. The product 6O2 is considered a byproduct or waste product of photosynthesis, released back into the atmosphere.
a. The reactant 6CO2 enters the plant from the atmosphere. Plants take in carbon dioxide (CO2) from the surrounding air through tiny openings called stomata in their leaves.
b. The reactant energy enters the plant through an external source, typically sunlight. This energy is captured by pigments like chlorophyll during the process of photosynthesis.
c. The product C6H12O6 is glucose, a simple sugar and a source of energy for the plant. It is created through the process of photosynthesis, specifically the conversion of carbon dioxide (CO2) and water (H2O) in the presence of sunlight and chlorophyll.
d. The product 6O2 is considered a byproduct or waste product of photosynthesis. It is oxygen gas released back into the atmosphere as a result of the photosynthetic process. Oxygen is vital for aerobic respiration and supports the survival of other organisms that rely on it for their respiratory processes.
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The structure labeled X enables this plant cell toa.Release energyb.Store waterc.Control nuclear divisiond.Manufacture proteins
About the question:
You will find the cell image in the attached files
Answer:
b.Store water
Explanation:
Here we are looking at a vegetable cell. And specifically, the X letter is labeling a vacuole, which we can recognize by its size.
We can find vacuoles either in animal or vegetable cells. They are essential to the correct functioning of the cell.
Now we are going to describe a vegetable cell vacuole.
Usually, they occupy a central place on the vegetable cells. They are big organules, representing almost 90% of the total cell volume. They are the biggest-sized organelle of vegetable cells.
Vacuole formation is thanks to the fusion of many vesicles release by the Golgi complex, and sometimes, with the RER intervention. There are different types of vacuoles according to their function, and many times, a single cell might carry different types of vacuoles. These organelles harbor diverse fluids, among which there are water and enzymes. Eventually, they can also contain solid substances such as proteins, salts, and sugars.
Vacuoles accomplish different functions. The main one is to keep turgor, store waste elements, and substance degradation. Here we are going to focus on the turgor function that involves water storage.
Turgor is a measure of hydrostatic pressure against the cell walls and controlled by these organelles. Vacuoles incorporate substances in their interior such as ions, creating an osmotic environment variable concerning the cytoplasmic one. This environmental variability produces a water flow from inside to outside and vice-versa. The capability of water storage is crucial for vegetable cells.
What are 2 kingdoms of bacteria
Answer:
Eubacteria and Archaea
Explanation:
ht tps://www.encyclopedia.com/science/encyclopedias-almanacs-transcripts-and-maps/bacterial-kingdoms
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Why might parents who don't show the trait of albinism have children who do?
Answer:
It’s just how it works
Explanation:
Ap3x
______________ parts of the brain, which is the last to fully mature in adolescence are called _________
Frontal lobe parts of the brain, which is the last to fully mature in adolescence are called Prefrontal cortex.
What are the parts of the brain that take the longest to fully develop in adolescence?Adolescents' brains continue to develop until they reach their mid-20s, with the frontal lobe being the last to mature. The frontal lobe is the brain's chief executive and performs a variety of higher-level thought processes. As the rest of the brain develops, the frontal lobe reorganizes, connecting with other brain regions and improving communication between them.
The prefrontal cortex is part of the frontal lobe and is responsible for executive function. It regulates and controls emotions, thoughts, and actions, as well as decision-making. The prefrontal cortex is the part of the brain that allows individuals to control their impulses and consider the long-term consequences of their actions.
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The prefrontal cortex is the last part of the brain to fully mature during adolescence. This area, which is associated with planning, reasoning, impulse control and memory, continues to develop until the mid-20s during a phase known as emerging adulthood.
Explanation:The prefrontal cortex of the brain is the last to fully mature in adolescence. This part of the brain, located in the frontal lobes, is responsible for functions such as planning, reasoning, impulse control, and memory. During adolescence, the brain undergoes a process of 'pruning' where neural connections are reduced, which allows the brain to function more efficiently and master more complex skills. Moreover, it includes the cerebral cortex, limbic system, basal ganglia, thalamus, hypothalamus, cerebellum, brainstem.
Notably, this area of the brain is significant in the development of cognitive skills and behavior control, coinciding with the growth spurts of childhood which contributes to cognitive development. The adolescent's brain activity is sometimes linked with risk-taking behavior, which can be associated with the maturation of this brain region. However, the prefrontal cortex is not fully mature until one reaches their mid-20s, a period of lifespan development known as emerging adulthood where identity exploration is mainly focused on work and love.
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distinguish between active and passive immunity
Answer:While active immunity occurs when an individual produces antibodies to a disease through his or her own immune system, passive immunity is provided when a person is given antibodies.
Explanation:
Which of the following is an example of a benefit of a flooded river?
A. Burial and uprooting of plants
B. Removal of leaves from tall trees
C. Deposition of nutrients in the surrounding soil
D. Decreased formation of habitats for organisms
In 2-3 sentences, explain how crossing over and independent assortment in sex cells affect the appearance of the fully developed organism.
Answer:
Explanation:
Crossing over and independent assortment in gametes (sex cells) can lead to genetic variation in the DNA of these gametes and lead to offspring looking different from their parents. Crossing over is the exchange of DNA between a pair of homologous chromsomes (the mom and the dad) which results in recombinant chromsomes that have new combinations of genes. Independent assortment refers to the lining up of chromsoomes along the metaphase plate in meiosis 1, and this can lead to different combinations of gametes.
2. to what lytic group does this strain of staphylococcus belong?
The lytic group to which this strain of Staphylococcus belongs to is Group II.
What is Staphylococcus?
Staphylococcus is a type of spherical bacteria that are commonly found on the skin and in the respiratory and digestive tracts. Staphylococcus aureus is the most common species that causes disease. It is an opportunistic pathogen that can cause infections such as abscesses, pneumonia, sepsis, and toxic shock syndrome when given the chance.
What is a lytic group?
The lytic group is a group of bacteriophages that cause lysis of the bacterial cell, releasing new bacteriophages into the environment. Bacteriophages are viruses that infect bacteria and replicate within them until they burst. Lytic bacteriophages cause the host cell to rupture as a result of replication and assembly of new viruses within the cell.Lytic bacteriophages are divided into three groups based on their host range and the number of bacteria they infect. Group II lytic bacteriophages infect specific bacteria and are often used for bacterial typing.
Staphylococcus is one such bacteria, and the bacteriophage that infects it is classified as a Group II lytic bacteriophage. Thus, the lytic group to which this strain of Staphylococcus belongs to is Group II.
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Which description is false concerning bacterial endospores?
a. resistant to chemicals
b. heat resistant
c. resistant to drying
d. reproductive structure
The incorrect description of bacterial endospores is that they have reproductive structures. Here option D is the correct answer.
Bacterial endospores are not reproductive structures; rather, they are dormant, highly durable structures formed by certain bacteria as a survival mechanism. Endospores are formed when bacteria are exposed to unfavorable conditions, such as nutrient scarcity or environmental stressors.
Bacterial endospores are known for their exceptional resistance to harsh conditions, which enables them to survive in extreme environments that would be lethal to vegetative cells.
They possess several unique characteristics that contribute to their resilience. Firstly, endospores are highly resistant to chemicals, including disinfectants, antibiotics, and various toxic compounds. This resistance is primarily due to the presence of a tough outer layer called the spore coat.
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Plants release the waste ___________ during cellular respiration and ____________ during photosynthesis.
fill in the blanks
Plants release the waste carbon dioxide during cellular respiration and oxygen during photosynthesis.