Which of the following statements about insulin or its effects on the body are true?

Select all that apply.

Insulin enters the cytoplasm of cells, signaling the nucleus to make more glucose.

A net result of insulin is that body cells take up fewer glucose molecules.

When releasing insulin, the pancreas is acting as an endocrine gland.

Insulin binds to receptor proteins found in the cell membranes of many types of body cells.

Answers

Answer 1

Answer:

When releasing insulin, the pancreas is acting as an endocrine gland.Insulin binds to receptor proteins found in the cell membranes of many types of body cells.

Explanation:

Endocrine glands secrete hormones directly into the blood. This is the case for the pancreas that releases insulin into the blood to regulate blood sugars. Most cells in the body have insulin receptors. However, liver and muscle cells have many of them. This allows these cells to uptake glucose and stores them as glycogen for use when energy is required in high demand.

Answer 2

The true statements about insulin or its effects on the body are: When releasing insulin, the pancreas is acting as an endocrine gland. Insulin binds to receptor proteins found in the cell membranes of many types of body cells, hence options C, and D are correct.

The islets of Langerhans release insulin when blood sugar levels increase, as they do after eating.

This hormone facilitates the body's cells' ability to absorb sugar from the circulation. Along with preventing the liver from creating additional sugar, insulin also enables the liver and muscles to retain sugar.

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Related Questions

Photosynthesis takes place in what to make energy from sunlight to make food in plants

Answers

Photosynthesis takes place inside chloroplasts.

Chlorophyll can make food the plant can use from carbon dioxide, water, nutrients, and energy from sunlight. This process is called photosynthesis. During the process of photosynthesis, plants release oxygen into the air. People and animals need oxygen to breathe.

The DNA in a cell’s nucleus encodes proteins that are eventually targeted to every membrane and compartment in the cell, as well as proteins that are targeted for secretion from the cell. For example, consider these two proteins: Phosphofructokinase (PFK) is an enzyme that functions in the cytoplasm during glycolysis. Insulin, a protein that regulates blood sugar levels, is secreted from specialized pancreatic cells. Assume that you can track the cellular locations of these two proteins from the time that translation is complete until the proteins reach their final destinations. For each protein, identify its targeting pathway: the sequence of cellular locations in which the protein is found from when translation is complete until it reaches its final (functional) destination. (Note that if an organelle is listed in a pathway, the location implied is inside the organelle, not in the membrane that surrounds the organelle.)

Answers

its the sperm cells and the  Phosphofructokinase cells

When listing the levels of organization in organisms from smallest to lost complex which level is just below organs in

Answers

This is the smallest to largest in the organization of organisms: atom- molecule-cell-tissue-organ-organ system-organism. Tissue is just below organs.

Organisms are highly organized, coordinated structures that consist of one or more cells. Even very simple, single-celled organisms are remarkably complex: inside each cell, atoms make up molecules; these in turn make up cell organelles and other cellular inclusions. In multicellular organisms, similar cells form tissues. Tissues, in turn, collaborate to create organs (body structures with a distinct function). Organs work together to form organ systems.

B. Which types of rocks are formed underground? (2 points)

C. Which types of rocks are formed above ground? (1 point)

Answers

Igneous rocks are formed underground. Sedimentary rocks are formed above ground.

Final answer:

Intrusive rocks such as granite are formed underground, while extrusive rocks like basalt, along with some sedimentary rocks, form above ground.

Explanation:

The types of rocks that are formed underground are known as intrusive rocks, which are a subgroup of igneous rocks. These rocks crystallize slowly beneath the Earth's surface from cooled magma. The slow cooling allows large crystals to form, giving these rocks a coarse-grained texture. An example of an intrusive rock is granite.

On the other hand, rocks that form above the ground are known as extrusive rocks, also a category of igneous rocks. These are formed when magma reaches the Earth's surface and cools rapidly to become solid. Because of the quick cooling, extrusive rocks are generally fine-grained or have a glassy texture. Basalt is a common type of extrusive rock.

Additionally, sedimentary rocks can form above ground through the accumulation of sediments that are compacted and cemented together over time. Metamorphic rocks can form both above and below the ground from pre-existing rocks that are transformed by heat, pressure, or chemical processes.

Which organism has fur and mammary glands, but does NOT have opposable thumbs? A) The lizard B) The salmon C) The hamster D) The chimpanzee

Answers

your answer is c. the hamster

Well, neither lizards or salmon have fur so A and B are wrong. The question asks which does not have opposable thumbs. The chimpazee does have them, so the answer is C.

how does the circulatory system and respiratory system related to ATP and cellular respiration?

Answers

The Respiratory system controls the intake of oxygen and the exhale of waste products such as carbon dioxide from our circulatory system. The lungs control the gas exchange between our respiratory system and our circulatory system. Once the nutrients are in the blood stream, the circulatory system, red blood cells and white blood cells and other cells floating through arteries, all controlled by the pumping of the heart. Once the nutrients inhaled by the respiratory system are brought to the cells by the circulatory system (from the pulmonary vein to the heart to the arteries) through the much smaller capillaries, they are used in cellular respiration. The oxygen is used to help the products of glycolysis enter the mitochondria to produce more ATP.

 The waste products are then put back into the circulatory system through the capillaries. The circulatory system then takes the nutrients through veins back to the heart where it is then put through the pulmonary artery to the lungs. Once in the lungs gas exchange occurs, expelling the waste products and reoxygenating the blood.

Source: https://sites.google.com/a/student.oprfhs.org/ap-biology-interdependence/interdependence/interdependence-of-the-circulatory-system

Hopefully this helps you with your confusion!

Why do colds cause us to lose some of our appreciation for the taste of food?

a. cold viruses denature olfactory neurons, thus dulling the perception of taste.

b. the symptoms of colds prevent stimuli from reaching olfactory neurons efficiently, thus dulling the perception of taste.

c. cold viruses lower the firing threshold of olfactory neurons, thus dulling the perception of taste.

d. the symptoms of colds interfere with the stimuli reaching the taste bud receptors, thus dulling the perception of taste.

e. cold viruses raise the firing threshold of olfactory neurons, thus dulling the perception of taste?

Answers

d. the symptoms of colds interfere with the stimuli teaching the taste bud receptors, this dulling the perception of taste.

The cellular organelle most directly involved in maintaining homeostasis is the _______.

A. plasma membrane
B. cell wall
C. chloroplast
D. mitochondria

Answers

Answer:

A

Explanation:

The plasma membrane is significant in regulating the movement of molecules in and out of the cell through processes such as active transport, diffusion, and osmosis. An example is that when the cell becomes dehydrated, water is taken in by osmosis until normal levels are reached. Whenever byproducts of biochemical reactions accumulate in the cell, they are taken out the cell through active transport.

how can multimedia presentations capture people's attention in a positive way

Answers

They end up being entertaining

Which layer of the alimentary canal is responsible for segmentation and peristalsis?

A) Serosa
B) muscularis externa
C) mucosa
D) submucosa

Answers

Answer:

B) muscularis externa

Explanation:

Muscularis externa is a muscle layer of gastrointestinal tract (GI)that consists of an inner circular muscular layer and a longitudinal outer muscular layer.

Peristalsis is one-way contraction (followed by relaxation) of muscles found in GI which moves the caudal direction. Peristalsis involves rhythmic contractions of the longitudinal muscles in the gastrointestinal tract, most commonly in the eosophagus.

Segmentation is also process of muscular  contractions  in the GI.  Segmentation involves contractions of the circular muscles in the digestive tract and its function is to move chyme in both directions.

Final answer:

The muscle layer responsible for segmentation and peristalsis in the alimentary canal is the muscularis externa, which comprises an inner circular layer and an outer longitudinal layer.

Explanation:

The correct answer to which layer of the alimentary canal is responsible for segmentation and peristalsis is B) muscularis externa. This layer is also known simply as the muscularis. It is composed of two main muscle layers: an inner circular layer and an outer longitudinal layer. Together, these muscle layers are crucial for performing the movements that facilitate the physical breakdown of food (mechanical digestion) and propel the food through the digestive tract.

Segmentation refers to the alternating contractions and relaxations of nonadjacent segments of the intestine. This process breaks apart the food and mixes it thoroughly with digestive juices. Peristalsis, on the other hand, involves rhythmic, wave-like muscle contractions that move the food along the alimentary canal. Both functions are essential for the efficient digestion and transportation of food within the alimentary canal.

Which layer of the digestive tract controls digestive propulsion?

A. serosa
B. mucosa
C. submucosa
D. muscularis externa

Answers

Answer:

D. muscularis externa

Explanation:

The gastrointestinal tract or digestive tract consist of four main layers:

• Mucosa- consists of the epithelium together with glandular tissue and the lamina propria  (connective tissue)

• Submuscosa- consists of fibrous connective tissue with larger blood vessels, lymphatics, nerves..

• Muscularis externa-smooth muscle layer that consists of three layers, responsible for movement (propulsion) and physical break down of the food

• Serosa-consists of connective tissue continuous with the peritoneum.

Due to the _ of the first small population on one of the island's , the populations _ could have been different from their continental fruit fly ancestors. In hawii the fluit flys

Answers

Final answer:

Due to the founder effect and genetic drift, island populations like Hawaii's fruit flies can rapidly diverge genetically from their continental ancestors. Small, isolated populations and environmental changes significantly influence this evolutionary process, illustrating the dynamic nature of species adaptation and speciation.

Explanation:

Due to the founder effect and subsequent genetic drift, the populations of fruit flies on islands could exhibit genetic characteristics significantly different from their continental ancestors. This phenomenon is often observed in isolated environments such as Hawaii, where small initial populations and limited gene flow from the mainland lead to a rapid divergence in genetic traits. The introduction and effects of substances like DDT can further impact these populations by selecting for certain alleles over others, leading to a change in the genetic composition of the survivors compared to the original population.

For instance, founder populations on newly formed islands undergo rapid evolution. Genetic drift, a mechanism of evolution, occurs more swiftly in these small, isolated populations. The introduction of apple trees to the U.S. provided an excellent example of how environmental changes can lead to reproductive isolation and eventual speciation, as seen with the divergence of hawthorn flies into two populations with distinct breeding seasons and dietary preferences.

The situation in Hawaii is a testament to the vulnerability of isolated ecosystems to introduced species and environmental changes, which can dramatically alter the genetic landscape of native populations. The founder effect and genetic drift, illustrated by the fruit fly populations in Hawaii, demonstrate the dynamic nature of evolution on islands.

Describe the process of skeletal muscle contraction by assembling the following 10 events in the proper order in paragraph form. Begin with an action potential traveling down a motor neuron to the neuromuscular junction and end with the muscle in its relaxed state. (5 points) 1) T and T system undergoes a conformational change, exposing the myosin binding sites on actin 2) myosin heads/cross bridges bind to actin and flex, shortening the sacromere 3) calcium ions bind to the T and T system 4) actin filaments are pulled toward the center of the sacromere, shortening the muscle fiber 5) muscle fiber is stimulated at the neuromuscular junction triggering an action potential 6) myosin head/cross-bridges bind to actin 7) APs travel down the T-tubules to the sarcoplasmic reticulum 8) in response to an AP, calcium ions are released into the cytosol/space around the myofibrils 9) calcium ions actively transported into the sarcoplasmic reticulum 10) myosin head continues to attach, flex, release, extend, and reattach as long as calcium ions are present

Answers

5) muscle fiber is stimulated at the neuromuscular junction triggering an action potential  

7) APs travel down the T-tubules to the sarcoplasmic reticulum  

Released acetylcholine (due to action potential within motor neuron) from the motor neuron initiates depolarisation within the sarcolemma, which is spread through the muscle fibre via T tubules.

8) in response to an AP, calcium ions are released into the cytosol/space around the myofibrils

Depolarisation causes the sarcoplasmic reticulum to release calcium ions necessary for the contraction

3) calcium ions bind to the T and T system

1) T and T system undergoes a conformational change, exposing the myosin binding sites on actin  

6) myosin head/cross-bridges bind to actin

The binding sites for the myosin heads located on actin, are covered by a blocking complex (troponin and tropomyosin) that can be unblocked by the calcium binding

2) myosin heads/cross bridges bind to actin and flex, shortening the sacromere  

4) actin filaments are pulled toward the center of the sacromere, shortening the muscle fiber  

As the individual sarcomeres become shorten the muscle fibres as a whole contracts

10) myosin head continues to attach, flex, release, extend, and reattach as long as calcium ions are present

9) calcium ions actively transported into the sarcoplasmic reticulum  

Relaxation of a muscle fiber occurs when a Ca ions are pumped back into the sarcoplasmic reticulum .

Final answer:

The process of skeletal muscle contraction involves a series of events that occur in a specific order, starting from an action potential and ending with muscle relaxation. Calcium ions play a crucial role in this process, binding to the T and T system and exposing the myosin binding sites on actin. The myosin heads then bind to actin, flexing and shortening the sarcomere, which leads to muscle contraction.

Explanation:

The process of skeletal muscle contraction involves multiple events that occur in a specific order. First, an action potential travels down a motor neuron to the neuromuscular junction, stimulating the muscle fiber. This triggers the release of calcium ions from the sarcoplasmic reticulum into the cytosol. The calcium ions bind to the T and T system, causing a conformational change that exposes the myosin binding sites on actin. The myosin heads then bind to actin and flex, shortening the sarcomere. This pulling of actin filaments towards the center of the sarcomere shortens the muscle fiber.

The myosin heads continue to attach, flex, release, extend, and reattach as long as calcium ions are present. To maintain muscle relaxation, calcium ions are actively transported back into the sarcoplasmic reticulum. Additionally, the T and T system undergoes another conformational change that covers the myosin binding sites on actin, preventing further contraction.

In summary, the order of events in skeletal muscle contraction is: 1) Muscle fiber is stimulated at the neuromuscular junction, triggering an action potential; 2) APs travel down the T-tubules to the sarcoplasmic reticulum, causing the release of calcium ions into the cytosol; 3) Calcium ions bind to the T and T system, exposing the myosin binding sites on actin; 4) Myosin heads bind to actin and flex, shortening the sarcomere and pulling actin filaments towards the center of the sarcomere; 5) Myosin heads continue to attach, flex, release, extend, and reattach as long as calcium ions are present; 6) Calcium ions are actively transported back into the sarcoplasmic reticulum, leading to muscle relaxation.

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Which two hormones influence the endometrium to thicken and prepare for implantation?
a.) progesterone and follicle stimulating hormone (FSH)b.) progesterone and luteinizing hormone c.) estrogen and luteinizing hormoned.) progesterone and estrogen

Answers

The correct answer is: d) progesterone and estrogen

Progesterone is a steroid sex hormone involved in the menstrual cycle, pregnancy, and embryogenesis with a wide range of functions. It is called hormone of pregnancy.

Estrogen is the primary female sex hormone involved in almost all of the phases of the development and regulation of the female reproductive system.

Progesterone and estrogen work together during the luteal phase of the menstrual cycle causing the lining of the uterus to thicken more in order to prepare for possible fertilization.

Final answer:

The hormones that cause the endometrium to thicken and prepare for implantation are progesterone and estrogen. They both contribute to menstrual cycling and endometrial growth.

Explanation:

The two hormones that influence the endometrium to thicken and prepare for implantation are progesterone and estrogen.

This can be found in option d.) of your question. These hormones square off for the menstrual cycle.

Estrogen is responsible for thickening the lining of the uterus each month. Progesterone, on the other hand, is released after ovulation by the corpus luteum and continues to increase the thickness of the endometrium whilst also preparing it for potential implantation by a fertilized egg.

The two hormones that influence the endometrium (the lining of the uterus) to thicken and prepare for implantation are progesterone and estrogen. Progesterone helps to build up the endometrium, while estrogen promotes its growth. These hormones are important for the preparation of the uterus for the possible implantation of a fertilized egg.

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Frederick Griffith was one of the leading scientists looking at the genetic role of DNA. He was working on two strains of Streptococcus pneumoniae: The rough strain (R) did not cause pneumonia, but the smooth strain (S) did. When Griffith heat-killed the S strain and gave both the heat-killed S strain and the R strain to mice, the mice developed pneumonia and died. What happened in this experiment that caused the mice to develop pneumonia?The R strain mutated and thus was able to cause pneumonia.There was more of the R strain added than previously.The immune systems of the mice were unable to cope with both the S and R strains simultaneously.Even though the S strain had been heat-killed, it changed the R strain.

Answers

The correct answer is: Even though the S strain had been heat-killed, it changed the R strain.

Griffith in his experiment used two strains of bacteria:

• The rough strain (R) which did not cause pneumonia, (nonvirulent)

• the smooth strain (S) which did caused pneumonia (virulent)

When Griffith heat-killed the S strain it did not caused mice to die.

But, when he gave both the heat-killed S strain and the R strain to mice, the mice developed pneumonia and died.

Griffith conclusion was that the R-strain bacteria took what he called a "transforming principle" from the heat-killed S bacteria which transformed the nonvirulent R strain.

The process by which cells that were once mature and differentiated become undifferentiated and immature in appearance and behavior is known as​ ________.

Answers

I would go with anaplasia.

Answer:

Anaplasia

Explanation:

Anaplasia refers to the loss of cell differentiation, which occurs when cells that were previously mature and differentiated become undifferentiated and immature in appearance and behavior. Anaplasia is a fundamental point for the emergence of malignant diseases. Anaplasia is characterized by:

Cellular Pleomorphism: variation of shape and size of cells and their nuclei. Hyperchromasia: very dark colored nuclei. Abundant Mitoses: Indicates Proliferative Activity Polarity Loss: Formation of tumor masses that grow in an unorganized manner.  Giant Tumor Cells: They have only one huge single polymorphic nucleus, with two or more nuclei. (Not to be confused with foreign body giant cells or inflammatory Langhans cells)

Suppose a white-furred rabbit breeds with a black-furred rabbit and all of their offspring have a phenotype of gray fur. what does the gene for fur color in rabbits appear to be an example of? explain your answer.

Answers

deberia ser de los dos de blanco y negros por sus genes

If the mass of a material is 92 grams and the volume of the material is 25 cm3, what would the density of the material be?

Answers

Answer;

= 3.68 g/cm³

Explanation;

Density is given by dividing the mass of a substance by its volume.

Thus; Density = mass/ volume

In this case; mass = 92 g and Volume = 25 cm³

Therefore;

Density = 92 g/ 25 cm³

             = 3.68 g/cm³

What does an egg contribute to the embryo that a sperm does not contribute?
a. polar bodiesb. organellesc. DNAd. germ cells

Answers

Answer;

B. organelles

Explanation;Eggs contribute 50% of the chromosomes as well as cytoplasm and cellular mechanisms required for the cell to thrive and replicate. Mitochondria for example are particularly important to the embryo but are only passed from mother to child via the egg.Sperms on the other hand, are just packets of DNA.

Anna is reading her psychology text. the activation of receptors in her retina by a source of physical energy is called _____.

Answers

sensation 2 - hope this helps!!

nergy used by the body to perform muscular contractions is called adenosine diphosphate, or ADP.TrueFalse

Answers

The answer is false.

Energy used by the body to perform muscular contractions and many other energy-required functions is adenosine triphosphate or ATP.

The most important function of ATP is its ability to store and transport chemical energy within cells. That energy can be used for many chemical processes such as muscle contraction, nerve impulse propagation, chemical synthesis.. When consumed in metabolic processes as an energy source, it becomes converted either to adenosine diphosphate (ADP) or to adenosine monophosphate (AMP) because one or two phosphate groups are released (hydrolysis of high-energy bonds).

Since ATP is a nucleoside triphosphate it can be used for the synthesis of nucleic acids.

Which of the following statements is not true about growth hormone? Growth hormone can be administered as a medical treatment for stature The quantity of growth hormone is greatest during childhood and adolescence. Too little growth hormone results in dwarfism. Growth hormone is produced by the posterior pituitary. Too much growth hormone results in gigantism.

Answers

The false statement is: Growth hormone is produced by the posterior pituitary

Growth hormone (GH) or somatotropin is produced in the cells called somatotrophs of the anterior pituitary gland. GH is a peptide hormone that stimulates growth, cell reproduction, and cell regeneration. Its function is involved in metabolic processes (favors anabolism or synthesis of macromolecules). Also, growth hormone stimulates production of IGF-1 and increases the levels of glucose and free fatty acids.

Answer:

Growth hormone is produced by the posterior pituitary

Explanation:

It's produced in the anterior

What do scientists hope to accomplish using recombinant DNA?

Ability to prevent infectious disease
Replacement of defective genes with normal genes
Easy access to medical treatment for individuals with any genetic disease
Cheaper medications for those with single-gene diseases

Answers

The correct answer is: Replacement of defective genes with normal genes

Recombinant DNA molecules are made in laboratory by the methods of genetic recombination such as molecular cloning. The aim of these methods is to bring together genetic material from different sources, creating “combinations” that usually couldn’t be found in the genome. The process of recombination is possible because, DNA molecules from all organisms share the same chemical structure (nucleotides are same among different species, difference is only in the nucleotide sequence).

Final answer:

Scientists hope to accomplish several goals using recombinant DNA technology, including the prevention of infectious diseases, the replacement of defective genes with normal genes, and the development of cheaper medications for single-gene diseases.

Explanation:

Scientists hope to accomplish several goals using recombinant DNA technology. One goal is the ability to prevent infectious diseases. This can be achieved by creating vaccines and other preventive measures using recombinant DNA techniques. Another goal is the replacement of defective genes with normal genes. This can potentially cure genetic diseases by replacing the faulty gene with a functional one. Lastly, scientists hope to use recombinant DNA technology to develop cheaper medications for those with single-gene diseases, making medical treatment more accessible.

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Bacteria that live around deep-sea, hot-water vents obtain energy by oxidizing inorganic hydrogen sulfide belched out by the vents. They use this energy to build organic molecules from carbon obtained from the carbon dioxide in seawater. These bacteria are _____. See Concept 27.3 (Page 579) View Available Hint(s) Bacteria that live around deep-sea, hot-water vents obtain energy by oxidizing inorganic hydrogen sulfide belched out by the vents. They use this energy to build organic molecules from carbon obtained from the carbon dioxide in seawater. These bacteria are _____. See Concept 27.3 (Page 579) chemoautotrophs photoautotrophs chemoheterotrophs photoheterotrophs

Answers

The correct answer is: chemoautotrophs

Since these bacteria obtain energy by the oxidation of electron donors (inorganic hydrogen sulfide) in their environments (chemical reactions) we can classify them as chemotrophs. In addition, they synthesize all necessary organic compounds from CO2 so they are autotrophs (opposite from heterotrophs that are unable to fix carbon).

Final answer:

Bacteria that live around deep-sea, hot-water vents and obtain energy by oxidizing inorganic hydrogen sulfide and using this energy to build organic molecules from carbon dioxide in seawater are chemoautotrophs.

Explanation:

The bacteria that live around deep-sea, hot-water vents and obtain energy through oxidizing inorganic hydrogen sulfide and using this energy to build organic molecules from carbon dioxide in seawater are chemoautotrophs. Chemoautotrophs are organisms that can use inorganic compounds as a source of energy to convert carbon dioxide into organic matter.

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Because of the large heat of __________ of water, the evaporation from a liquid surface is a very effective cooling mechanism. The human body makes use of evaporative cooling by __________ to give off energy even when surrounded by a temperature higher than body temperature.

Answers

♫ - - - - - - - - - - - - - - - ~Hello There!~ - - - - - - - - - - - - - - - ♫

Because of the large heat of vaporization of water, the evaporation from a liquid surface is a very effective cooling mechanism. The human body makes use of evaporative cooling by perspiration to give off energy even when surrounded by a temperature higher than body temperature.

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Explain the various components of the counter-culture movement of the 1960’s.

Answers

The counter cultural movement opposed the traditional values imposed by post ww2 USA. They began as beatniks, who later evolved into the hippie movement, who opposed US politicians and wanted equality for everyone.

Final answer:

The counterculture movement of the 1960s involved a rejection of mainstream values, social activism for various rights, the Beat Movement which prioritized spirituality and artistic expression, shifts in popular culture, political radicalization leading to a questioning of progress, and the rise of identity politics.

Explanation:

Components of the Counterculture Movement of the 1960s:

The counterculture movement of the 1960s was a complex phenomenon that involved a diverse range of social, cultural, and political elements. Among these components were:

Alternative Lifestyles: This included a rejection of mainstream values, the pursuit of communal living, and an emphasis on individual freedom and expression.Social Activism: Activism concerning rights for women, racial minorities, and other marginalized groups gained momentum, with movements such as the American Indian Movement and women's liberation.Beat Movement: The beats, or beatniks, disdained capitalism and materialism, prioritizing spirituality, artistic expression, and the use of psychedelic drugs.Popular Culture Shifts: Changes in popular culture, including music, literature, and television, reflected the counterculture ethos.Political Radicalization: Disenchantment with establishment politics led to radical movements and the questioning of America's trajectory towards progress.Identity Politics: A focus on issues relevant to specific subgroups emerged, often rooted in culture, ethnicity, sexual orientation, gender, or religion.

Sociologically, the counterculture was influenced by ideas such as those presented by Berger and Luckmann in their book The Social Construction of Reality, which posited that belief systems are determined by societal constructs. Moreover, the counterculture's critique of economic disparity led sociologists to use theoretical approaches, such as conflict theory, to study the movement's dynamics.

In what states can hydroelectric power be found? (United States) *will give brainiest!

Answers

The hoover dam is a great example! :D

New York has the largest hydroelectricity generation capacity of all states east of the Mississippi River!

Why are proton pumps in root-hair plasma membranes important?

Answers

Root-hairs increase the surface area for nutrition absorption. The proton-pumps in root-hair plasma membranes are important in plants is because they carry nutrients into the cell against a strong concentration gradient.

If a drug that was an inhibitor of PP1 activity was ingested by a person

Glycogen phosphorylase would be de-phosphorylated and inactive.
Glycogen phosphorylase would be de-phosphorylated and retain some activity.
Glycogen phosphorylase would remain phosphorylated and inactive.
Glycogen phosphorylase would remain phosphorylated and retain some activity.

Answers

The correct answer is: Glycogen phosphorylase would remain phosphorylated and retain some activity.

Glycogen phosphorylase is directly involved in the regulation of glucose levels since it is a glucose sensor in liver cells: when glucose levels are low, phosphorylase is active and it has PP1 bound to it (phosphatase activity of PP1 is prevented). Therefore, there phosphorylase a will accelerate glycogen breakdown.  

PLEASE HELP ME WITH THIS QUESTION, IT’S URGENT! 20 POINTS!

Throughly describe the role of the sodium potatasim pump in the nervos system.

Answers

ah I remember learning this... So in the cell membrane their are entrances called pumps that force ions (positively charged molecules) to move from low concentration to high concentration. During active transport, which is the process i just described, the sodium potassium pumps job is to move sodium ions ( Na+ ) ions out of the cell and move potassium ions (K+) into the cell.

1. three sodium ions are positioned in the carrier protein.

2. Atp molecule is split that create energy that bonds to the carrier.

3. the pump changes shape and opens up to the outside of the membrane, giving the potassium  ions (K+) a chance to come inside. So two potassium ions fit inside and they enter the cell.

4. When the potassium goes inside, the phosphate molecule is released ( What split from the ATP molecule earlier)

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