Answer:
And she said, she said, she said, she's from Hawaii. You know how to say cute in Japanese?
explain the role of the followinghormone during homeostasis 1.insulin
Answer:
Insulin enables blood glucose to enter cells, where they use it to produce energy. Together, insulin and glucagon help maintain homeostasis, where conditions inside the body hold steady. When a person's blood sugar is too high, their pancreas secretes more insulin.
Insulin allows the cells in the muscles, fat and liver to absorb glucose that is in the blood. The glucose serves as energy to these cells, or it can be converted into fat when needed. Insulin also affects other metabolic processes, such as the breakdown of fat or protein.
how would you relate the new pandemic (C0vID 19) in the imbalance of ecosystem due to biodiversity loss?
Random Answer = Report
Correct Answer = Brainliest
Answer:
Due to no controlling agent for harmful microbes that causes new pandemic.
Explanation:
The new pandemic leads to imbalance of ecosystem due to biodiversity loss because the absence of antimicrobial agent causes the pandemic. The antimicrobial agent is responsible for the control of harmful microorganism so due to disturbance in the ecosystem, the biodiversity losses occurs and there is no organism which stop or control the population of the harmful organism that causes new pandemic.
which of the following statements about vesicle budding from the golgi is false? a. adaptins interact with clathrin. b. clathrin molecules are important for binding to and selecting cargoes for transport. c. the default pathway for this vesicular trafficking is constitutive secretion. d. clathrin molecules act at the cytosolic surface of the golgi membrane. e. once vesicle budding occurs, clathrin molecules are released from the vesicle.
The false statement about vesicle budding from the Golgi is: Clathrin molecules act at the cytosolic surface of the Golgi membrane. The correct option is d.
Clathrin molecules do not act directly at the cytosolic surface of the Golgi membrane during vesicle budding. Clathrin proteins are involved in the formation of coated pits and vesicles on the cytoplasmic side of the Golgi membrane. These coated pits are lined with clathrin molecules and adaptins, which interact with each other.
The adaptins help to select specific cargo molecules for transport within the vesicles. Once the vesicle has budded off, clathrin molecules remain associated with the vesicle, forming a clathrin coat on the vesicle's outer surface. The clathrin coat is later shed, and the vesicle fuses with its target membrane for cargo delivery.
Therefore, option D is the false statement. Clathrin molecules do not act directly at the cytosolic surface of the Golgi membrane during vesicle budding but instead participate in the formation of coated pits and vesicles on the cytoplasmic side of the Golgi membrane.
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Pls someone help me!!
How can Punnett squares be used to determine an organism's genotypic and phenotypic probabilities?
How can Punnett squares be used to determine an organism's genotypic and phenotypic probabilities?
⭐A Punnett square allows the prediction of percentages of phenotypes in the offspring of a cross of known genotypes. A Punnett square can be used to determine a missing genotype based on other genotypes involved in a cross.⭐----------------------------------------------------------------------------------------------⭐
BRAINLYMENTALMENTE
Which membrane proteins increase the rate of chemical reactions? A. receptor proteins B. enzymatic proteins C. connection proteins D. recognition proteins E. transport proteins
Enzymatic proteins increase the rate of chemical reactions.
A biological catalyst called an enzyme is usually always a protein. It accelerates a certain chemical reaction in the cell.
A receptor is a special kind of recognition protein that can bind to a certain molecule outside of the cell and cause a chemical response there.
Proteins make up the portion of the cell membrane that can catalyze chemical processes. Proteins operate as enzyme catalysts, accelerating chemical reactions.
An enzyme-catalyzed reaction involving two substrates The two substrates are brought together using the enzyme's template in the correct orientation and location for them to react.
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Can you please answer the reason behind it? why we can't give epidosin medicine when we have this condition please explain for each of them briefly
-Cardiovascular system disorder
-Multipara and grandmultipara
-Myasthenia gravis
Epidosin is a medicine that is primarily used during childbirth to induce labor. It has certain contraindications, which means that it is not recommended to use epidural anesthesia for patients who have cardiovascular system disorders, myasthenia gravis, and multipara and grand multipara.
Let's discuss each of these in detail below:
Cardiovascular System Disorder:
The cardiovascular system is one of the most vital organs in the human body. Evidently, any kind of disorder in this system is a severe medical condition that demands prompt medical attention. The primary concern with using epidural anesthesia in patients with cardiovascular disorders is the potential risks of hypotension. Hypotension is a prevalent and well-documented side effect of epidural anesthesia. Hypotension can cause reduced oxygen supply to vital organs, which can lead to life-threatening complications.
Multipara and Grandmultipara:
A multipara refers to a woman who has delivered two or more babies in the past. A grandmultipara, on the other hand, refers to a woman who has delivered five or more babies. Women who fall under these categories have a higher risk of developing complications during childbirth, which can be severe in some cases. One of the primary concerns with using epidural anesthesia is that it may cause hypotension, which can be life-threatening in patients with a high-risk pregnancy.
Myasthenia Gravis:
Myasthenia gravis is an autoimmune disorder that affects the neuromuscular junction. The neuromuscular junction is the site where the nerve endings meet the muscle fibers. This disorder can cause muscle weakness, fatigue, and difficulties with breathing. Patients with myasthenia gravis may not respond well to epidural anesthesia and may require other forms of anesthesia. Furthermore, the use of epidural anesthesia can worsen the symptoms of myasthenia gravis, which can lead to severe complications.
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We know when we are moving up and down in an elevator because of the movemnt of tiny crystals in the
We know when we are moving up and down in an elevator because of the movement of tiny crystals in the otolith organs.
The sacculus and the utricle are the two otolith organs present in humans. These organs are responsible for sensing of gravity and also help in linear motions.
There are tiny crystals present in the otolith organs that help in linear motons or detecting when we are moving up or down. These crystals are termed as otoconia and are primarily made up of calcium carbonate.
These otoconia are responsible for detecting vertical movements and are present in the ear.
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In a population of giraffes, some of them have longer necks than others
Answer:
This is due to evolution
Explanation:
The giraffes with longer necks can reach food more easily than the short neck giraffes so as to reach food in higher trees.
What do you think this is? And where in the world do you think it lives?
Answer:
I think it is bacteria and it's lives in the bottom of the ocean
Answer:
in my basement
Explanation:
lol
rabbits produce two types of droppings: fecal pellets, which are waste products of digestion, and cecotropes, which they re-ingest. ruminants do not re-ingest any droppings. why is re-ingestion required in rabbits but not in ruminants?
Rabbits are hindgut fermenters; therefore, nutrients are lost if the product boiled in the coecum is not eaten. Ruminants are foregut fermenters, and the products of their digestion are absorbed in the small intestine.
Hindgut fermentation is a digestive process that can be observed in monogastric herbivores, animals with a stomach consisting of only one chamber. Cellulose is digested with the help of symbiotic bacteria. Microbial fermentation occurs in the digestive organs after the small intestine: the large intestine and the appendix. Examples of animals that are stuck behind their intestines are elephants and odd-hoofed animals such as horses and rhinos, and small animals such as rats, rabbits, and koalas.
Foregut fermenters are a complaint to the foregut, namely the digestive system found in animals with a stomach consisting of four chambers, as well as in sloths, and ruminants.
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The central dogma of molecular biology describes the two-step process, transcription and translation, by which
the information coded in DNA is used to make proteins or polypeptides.
Using the model presented, what is being formed, B, from the process represented by C? Correctly identify B and
C as well as the proper relationship between the two.
x
A
B
C
D
Proteins (B) are being formed from the process of translation (C), in which DNA code is copied
into mRNA in the nucleus.
mRNA (B) is being formed in the nucleus using DNA in the process known as transcription (C).
Proteins (B) are being formed from the process of translation (C), in which mRNA carries the
DNA code to the ribosome for protein synthesis.
RNA (B) is being formed from the process of translation (C), in which mRNA carries the DNA
code to the nucleus for protein synthesis.
The Central dogma of molecular biology describes the two-step process, transcription, and translation, by which proteins are created from DNA, RNA, and information found in genes.
What are DNA and RNA?DNA (deoxyribonucleic acid) is the genetic material of all living organisms.DNA is a self-replicating molecule composed of nucleotides that contain the genetic instructions used in the development and functioning of all known living organisms and many viruses. DNA is found in almost all living cells and is the basis of heredity. The molecule of information is DNA. It holds the blueprints needed to create proteins, which are other big molecules. Each of your cells contains these instructions, which are dispersed throughout 46 lengthy structures known as chromosomes. Numerous smaller DNA fragments known as genes make up each of these chromosomes.RNA (ribonucleic acid) is a single-stranded nucleic acid molecule that plays an essential role in various biological processes, including protein synthesis and gene regulation. It is made up of long strands of nucleotides, which are made up of a phosphate group, a sugar (ribose), and a nucleobase. RNA is similar to DNA, but differs in a few key ways. It is typically single-stranded, while DNA is typically double-stranded, and RNA contains the sugar ribose, while DNA contains the sugar deoxyribose.To learn more about DNA from the given link
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Based on the productivity data provided to you, as well as data you collected on algal standing crops and number of catfish at Bat Rocks and Cess, construct an explanation based on evidence for how sunlight regulates the productivity of algae, the number of catfish in a pool, and the resulting standing crop of each. (exploring biomass pyramids interactive simulation)
The biomass of producer is higher than the population of catfish.
Sunlight regulates the productivity of algae by allowing the algae to make their own food through the process of photosynthesis. This algae better the quality of water, provide oxygen for the aquatic organism and food for many herbivore aquatic organism.
Algae needs sunlight, carbondioxide and water for the process of photosynthesis. Catfish population in the pool increases as the biomass of algae increases because more food is available for the catfish which allows them to grow and increase their population.
In pyramid or trophic levels, the biomass of algae and other plants are the largest which is present at the bottom whereas as we go in the trophic level, population of organisms increases so we can conclude that biomass of producer is higher than the population of catfish.
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answer pls
Describe the results from the following base mutations, substitution, insertion, and deletion.
Answer:
The results from the following base mutations --- substitution, insertion, and deletion are :
base substitution causes no change in the length of DNA. Base insertion causes an increase in the length of the DNA. Base deletion causes a decrease in the length of the DNA.Explanation:
What is base substitution :
In base substitution form of mutation, one nucleotide is simply replaced or transformed into another nucleotide. This may occur due to replication or transcription error, due to mutagenic exposure, etc. For example A to T, G to C, etc.What is base insertion:
Here, one or more nucleotides get added to a DNA, caused due to mutagenic exposure. Also known as addition, this may occur during recombination when the cell undergoes meiotic cell division.What is base deletion :
In base deletion, one or more nucleotides are deleted from the DNA stand, under the effect of mutagens or a wrongly operating recombination machinery.What are the effects of base mutations:
In light of the change in the length of the DNA strand,base substitution causes no change in the length of DNA. Base insertion causes an increase in the length of the DNA. Base deletion causes a decrease in the length of the DNA.All forms of these mutations, unless otherwise repaired by the inbuilt cellular DNA repair mechanisms, leads to the production of DNA strand different from the original DNA, often producing a defective polypeptide or no functional polypeptide. Such changes are often heritable, and may even be lethal for an organism.To know more about base mutations, visit:
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Which substance would have the highest viscosity?
a.
Liquid water
b.
Maple syrup
c.
Olive oil
d.
Solid rock
Answer:
It would be b - Maple Sryrup.
Explanation:
Viscosity is essentially the thickness and transparency of a liquid. It cannot be rock due to the fact that a rock is a solid object and not a liquid. The other answers are eliminated via the process of elimination.
The speaker compares the students waiting to take their drivers test to deer trapped in headlights in order to
The speaker compares the students waiting to take their drivers test to deer trapped in headlights in order to describe how nervous they look.
A drivers test is important for you to receive your permit within the country. Only with a legitimate permit are you able to ride or drive your two-wheeler and hackney coach in Republic of India. A drivers test contains of a theory half beside a sensible assessment likewise.
To not feel nervous while giving the drivers test, read through and con rules, road sign symbols, and different data which will be necessary to grasp throughout your take a test and this may take a bit of the nervousness away as a result of you’ll be mentally ready to pass the take a look at.
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how would expect venous pressures to compare to arterial pressure? why?
Venous pressures are generally lower than arterial pressures due to the differences in their respective functions and the resistance offered by arterial walls.
Venous pressures are expected to be lower than arterial pressures. Arterial pressure refers to the force exerted by the blood against the walls of arteries, generated by the pumping action of the heart during systole.
Arteries are responsible for transporting oxygenated blood away from the heart to tissues throughout the body.
The arterial system experiences higher pressure due to the pumping action of the heart, the elastic properties of arterial walls, and the need to maintain blood flow against resistance.
In contrast, venous pressure refers to the force exerted by the blood in the veins. Veins carry deoxygenated blood back to the heart.
The veins are thinner-walled and less elastic compared to arteries, which means they have less ability to withstand and maintain high pressures.
Moreover, venous return is aided by various mechanisms, such as the contraction of surrounding muscles, the presence of one-way valves, and the respiratory pump (breathing movements).
These mechanisms assist in propelling blood towards the heart and overcoming the resistance in the venous system, resulting in lower venous pressures compared to arterial pressures.
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Cellular respiration in the mitochondria is called an aerobic process because it
requires
A. light.
B. exercise.
C. oxygen
D. glucose.
Answer:
C
Explanation:
identifying the age and sex composition of animals in an assemblage ______.
Identifying the age and sex composition of animals in an assemblage can provide direct evidence of domestication.
Domesticated animals are typically younger and have different skeletal features than wild animals. For example, domesticated cattle have smaller horns and less muscle mass than wild cattle. They also tend to be more docile and easier to handle.
By examining the age and sex composition of animals in an assemblage, archaeologists can get a better understanding of how these animals were used by humans.
For example, if the assemblage contains mostly young animals, it suggests that these animals were being raised for their meat. If the assemblage contains mostly adult animals, it suggests that these animals were being used for their labor or for their milk.
The age and sex composition of animals in an assemblage can also be used to track changes in human behavior over time. For example, if the assemblage contains more young animals in the early part of the occupation, it suggests that people were raising more animals for food.
If the assemblage contains more adult animals in the later part of the occupation, it suggests that people were using animals for other purposes, such as labor or milk.
By identifying the age and sex composition of animals in an assemblage, archaeologists can gain a better understanding of how humans interacted with animals in the past. This information can be used to reconstruct past diets, economies, and social structures.
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Select the correct responses to the questions from the drop-down menus. Which zone contains permeable materials that are totally filled with water? Which is a boundary between the layer that contains water and the layer that contains a mixture of moisture and air?.
Groundwater is defined as the water present beneath the Earth's surface in rock and soil pores and in fractures of rock formations.
What are Saturated and Unsaturated Zones of Groundwater?
The saturated zone of groundwater refers to the zone in which pores and rock fractures are filled with water only. The top part of the saturated zone is referred to as the water table.
Unsaturated zone refers to the zone present below the saturated zone and consists of air and water pores. The soils and rocks are also found in this zone. It is not readily available water for human consumption.
Thus, the saturated zone has water, while the unsaturated zone has soil, rock, and air with water.
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Answer:
First part:
-Saturated zone
Second part:
-Water table
Explanation:
Got it right on EDGE2022
Distinguish among acids, bases, and buffersThis is not a test question
Solution:
Acid: is any substance that can donate a hydrogen ion.
Base: any chemical substance that can accept a hydrogen ion.
Buffers minimize the magnitude of the pH changes caused by the addition of an acid or alkali to a solution. That is, a buffer is any substance that reversibly consumes or releases hydrogen ions.
!!URGENT!!
Describe the relationship between organisms, populations, communities, ecosystems, and biomes.
Answer: They all make up an ecosystem.
Explanation: :)
answer :)
Harry is studying four surface features of Florida. He classifies the surface features and places them in different columns of a chart as shown below.
Surface Features
Column 1 Column 2
Sinkhole Hot springs
Caverns Geysers
Which of these titles best represents Column 2 of Harry's chart?
formed by freezing groundwater
formed by heating groundwater
formed by evaporation of groundwater
formed by chemical action of groundwater
The title that best represents Column 2 of Harry's chart is B. formed by heating groundwater
What is a Hot Spring?This refers to the geothermally heated groundwater that is formed on the surface of the earth.
Hence, we can see that from Column 2 of Harry's chart, there is the presence of Hot springs and Geysers which are both formed by heating groundwater and option B is correct.
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Answer:b
Explanation:took a test
Think about a tree and a human. What are two structures that have similar functions but different structures? What is their common function?
Answer:
Homologous structures have the same ancestry, but may no longer serve the same function. For example, the bones that make up human fingers were inherited from an ancestor that's shared by all mammals.
Outline how a hobby gardener can make and use microclimates.
Answer: know your common climate effects and how to limit them, i would recommend drawing a map of the area, identify spots of patchy dirt and figure out why, keep tabs on everything you see, pay attention to where everything grows best and everything grows less, try to compare and contrast why, pay attention to snow fall, make sure you’re char king for aspects, topography, exposure, shade, drainage and droughts as well.
Explanation: just did it
sinking of rock layers
wetland that is often in shallow areas along shores
Answer:
what's the question though
72% of the water pollution in rivers is attributed to:
a. Industries.
b. Household wastes.
c. Agriculture.
d. Mining.
e. Logging.
The option that is most commonly attributed to 72% of water pollution in rivers may vary based on specific regions and circumstances. However, one frequently cited factor associated with water pollution in rivers is option c. Agriculture.
Agricultural activities can contribute to water pollution through various means. Runoff from fields can carry excess fertilizers, pesticides, and herbicides into nearby rivers, causing contamination. Additionally, animal waste from livestock farming can enter water bodies, leading to nutrient enrichment and potential bacterial contamination. Sediment erosion from agricultural land can also affect water quality by increasing turbidity and disrupting aquatic ecosystems.
While industries, household wastes, mining, and logging can also contribute to water pollution, the proportion of their individual contributions may vary depending on the context and geographical location.
It is important to note that water pollution is a complex issue influenced by multiple sources and factors, and the percentage attributed to each specific cause can vary in different regions. Monitoring and mitigating water pollution require comprehensive strategies that address all significant sources of contamination.
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Dendrotoxins, produced by the mamba snakes (Dendroaspis), are inhibitors of the voltage-gated K channels. What phase of the action potential would this toxin affect
he dendrotoxins produced by the mamba snakes (Dendroaspis) affect the repolarization phase of the action potential. Dendrotoxins are peptides that are isolated from the venom of mamba snakes. These toxins are potent blockers of voltage-gated potassium channels.
Voltage-gated potassium channels are responsible for the repolarization phase of the action potential. They allow the flow of potassium ions out of the cell, thereby returning the membrane potential to its resting state. In the presence of dendrotoxins, the potassium channels are blocked, and the flow of potassium ions is reduced.
This causes the repolarization phase to be delayed or prevented altogether, leading to prolonged depolarization and a prolonged action potential. This can result in a variety of symptoms, including muscle paralysis, respiratory failure, and even death.
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HELPPPPPPPP
Write two sentences that explain the benefits of butterflies being very colorful.
in the liver, the enzyme pyruvate kinase is activated by fructose 1,6-bisphosphate. explain why these regulatory mechanisms make sense.
The presence of liver pyruvate kinase, which is triggered by fructose 1,6-bisphosphate, provides a metabolic benefit. Fructose 6-phosphate is phosphorylated to form FBP, a glycolytic intermediate.
Pyruvate kinase activity is activated when FBP attaches to the allosteric binding site on domain C of the enzyme. This conformational shift is brought on by a change in the enzyme's structure.The last stage of glycolysis is catalysed by yeast pyruvate kinase (PK). As a result, the enzyme serves as a crucial regulatory point and fructose-1,6-bisphosphate (FBP) allosterically activates it. Pyruvate kinase must be deactivated during gluconeogenesis to avoid a fruitless cycle. Thus, pyruvate kinase is rendered inactive by high quantities of both alanine and ATP.
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