A point mutation occurs when a single base in a gene is mutated, and it can have serious consequences, such as the point mutation that causes sickle cell anemia, as well as other physiological effects.
What are the consequences of the point mutation?A point mutation occurs when a single base is mutated, resulting in a different effect on protein shape, as in sickle cell anemia, where the beta chain of hemoglobin is mutated at the 7th position. At that point, glutamic acid is replaced by valine, which has a number of serious physiological consequences due to changed protein structure, including decreased blood flow and the possibility of a heart attack.
Hence, a point mutation occurs when a single base in a gene is mutated, and it can have serious consequences, such as the point mutation that causes sickle cell anemia.
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explain two methods of clinical specimen collection
Answer:
Three popular methods of blood collection or sampling are: Arterial Sampling. Venipuncture Sampling. Fingerstick Sampling.
at _____ distances from the nucleus, the probability of a bremsstrahlung radiation _____ , and the energy of the bremsstrahlung ______ .
At a higher effective nuclear charge distances from the nucleus, the probability of a bremsstrahlung radiation is more, and the energy of the bremsstrahlung is 84 kVp.
A body or physical system need energy to perform work, produce heat, and release light. The quantity that makes things happen is called energy. It is a sum that the machinery will take. According to the law of conservation of energy, energy is a resource that can only be changed from one form to another and cannot be created or destroyed. In the SI (International System of Units), the unit of measurement for energy is the joule (J).
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Which of the statements is true of saltwater and freshwater animal waste management systems?
A) No saltwater or freshwater animals urinate.
B) Both saltwater and freshwater animals don't need to eliminate waste, as it diffuses out of their bodies naturally.
C) Saltwater-based animals must have a mechanism to prevent water from trying to diffuse into their bodies.
D) Freshwater-based animals must have mechanisms to prevent water from trying to diffuse into their bodies.
*B is not the correct answer
The statement which is true of saltwater and freshwater animal waste management systems is that Saltwater-based animals must have a mechanism to prevent water from trying to diffuse into their bodies and is therefore denoted as option C.
What is Waste management system?
This is referred to as all the activities and actions which are required to manage waste from its inception to its final disposal so as to prevent pollution in various ways and forms.
When dealing with aquatic animals such as Saltwater-based animals they usually have a mechanism which helps to prevent water from trying to diffuse into their bodies as failure to have it may leads to the death of the animals thereby disrupting the ecosystem and is therefore the reason why option C was chosen as the correct choice.
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Answer:
correct answer is D a body of salt water that is connected to the ocean all these a and c answers are incorrect
Explanation:
i hope this helped
for which of these conditions or procedures there may be an increased number of megakaryocytes in the bone marrow, but a decreased number of circulating platelets?
A folic acid shortage may result in a rise in megakaryocytes in the blood cells but a fall in platelets in circulation.
Why are there more megakaryocytes?A clear pathogenetic link between the spleen and the illness can be inferred from the results of enlarged megakaryocytes and significantly reduced platelet synthesis in the marrow before to splenectomy as well as the startling rise in platelet production following splenectomy.
Briefing:Megaloblastic anemias brought on by biotin or vitamin B12 depletion frequently accompany pancytopenia. Thrombocytopoiesis does not work. Megakaryocyte counts in the marrow will be normal or even higher, but there will be fewer neutrophils reaching the venous return.
Megakaryocytes in the bone marrow are less common in aplastic anemia, which lowers the quantity of circulating platelets.
Radiation therapy results in hypoplasia of the bone marrow, which affects all cell types.
Massive blood transfusions may also result in a brief anemia, but the number of megakaryocytes in the marrow won't grow.
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The complete question is-
With which of these conditions or procedures may there be an increased number of megakaryocytes in the bone marrow, but a decreased number of circulating platelets?
A. Folic acid deficiency
B. Aplastic anemia
C. Radiation therapy
D. Massive blood transfusion
The polymerase chain reaction (PCR) is an important technique in biotechnology because it allows researchers to __________.
Millions of copies of a certain DNA region can be produced in the lab using the polymerase PCR process. In the 1980s, it was initially created.
Which of the following is utilized to identify PCR's end results?Agarose gel electrophoresis, which divides DNA products according to size and charge, is the technique that is most frequently employed for evaluating the PCR product.
What process would you employ to duplicate the molecules more often?Molecule cloning Gene expression, gene duplication, and gene-specific research are all made possible via cloning. The DNA fragment must first be put into a plasmid in order to be delivered to bacteria in a form that will allow for copying or expression.
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The above image show a coronal section of the brain. What type of cells are absent in this organ?
Schwann cells
Oligodendrocytes
Multipolar neurons
Ependymal cells
The type of cells that are absent in this organ are the Schwann cells. So the correct option is A.
What are the Schwann cells?Schwann cells are glial cells that will cover the peripheral nervous system and form myelin sheaths. This will work as an electrical insulator allowing the electrical currents that pass through the neurons not to lose their intensity, producing saltatory conduction.
The myelin sheaths that form the Schwan's cells will be alternated by places where they will not cover, called Ranvier nodules.
These cells will only be found in the peripheral part of the nervous system, since in the central section we will find another type of glial cells called oligodendrocytes, which will have this same function.
Therefore, we can confirm that the type of cells that are absent in this organ are the Schwann cells. So the correct option is A.
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1 using your definitions from activity 1, identify what type of terrestrial ecosystem you are observing.
The tundra, taigas, temperate deciduous woods, tropical rainforests, grasslands, and deserts are examples of terrestrial ecosystem types.
A terrestrial ecosystem is a population of land-based species and the relationships between biotic and abiotic elements in a specific space. The tundra, taigas, temperate deciduous woods, tropical rainforests, grasslands, and deserts are a few examples of terrestrial ecosystems. A location's temperature range, average annual precipitation, soil type, and amount of light all affect the sort of terrestrial ecosystem that can be found there. Use these materials to pique students' interest in terrestrial ecosystems and show them how various abiotic and biotic factors affect the types of plants and animals that might be found in a given area.
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TRUE/FALSE. in the show making stuff: smarter, a jar of pickles is used to demonstrate a partially working invisibility cloak for microwaves
A sheet of glass known as "float glass" is created by floating molten glass on a bed of molten metal, most commonly tin, though lead and other low melting point alloys have also been used in the past. With this technique, the sheet is uniformly thick and has incredibly flat surfaces.
Compressive residual surface stress can be intentionally induced to increase the strength of glass. Thermal tempering is a type of heat treatment that can be used to achieve this. This method involves heating the glass to a temperature that is above the glass transition area but below the softening point.
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hadrosaurs, such as parasaurolophus and iguanadon, had well-developed body armor to defend against predators. true/false
Hadrosaurs like Parasaurolophus and Iguanodon have highly evolved body armor to defend themselves from predators. This assertion is false.
Dinosaurs known as hadrosaurids are members of the ornithischian family Hadrosaurid. This group is also known as the duck-billed dinosaurs because of the flattened duck-bill appearance of the bones in their snouts. Because of their large, flattened, elongated snouts and toothless beaks, hadrosaurs—also known as duck-billed dinosaurs—earned the nickname. During the Late Cretaceous, they were among the most common herbivores in Asia and North America. At the end of the Cretaceous, numerous lineages spread to Europe, Africa, South America, and Antarctica. Their sets of grinding teeth and cheek pouches made them ideal plant-grazers. Therefore, the assertion is untrue.
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somatic sensation of your face, ears, nasal areas and pharynx are provided by cranial nerve(s)
Trigeminal Nerve, a motor and sensory nerve, transmits sensory data from the majority of the head, neck, sinuses, and face carries sensory data for the tympanic membrane and the ear as well.
The trigeminal nerves (V), which also innervate the muscles of mastication, are responsible for facial sensibility, while the facial nerve (VII) is primarily responsible for taste perception and the muscles of facial expression. The nerve fibers that regulate facial expression and movement are carried by the facial nerve, the seventh cranial nerve. The facial nerve also carries taste and tear-producing nerves to the front third of the tongue (lacrimal gland). The nerve travels widely throughout the body and influences a number of organ systems and body parts, including the tongue, throat, heart, and gastrointestinal system.
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threshold characteristics
characteristics that are either present or absent (2 phenotypes) (Ex: disease/pregnant)
you either have the trait or you don't
This is a type of quantitative trait bc they are determined by multiple genes and environmental factors (ex: heart disease)
Quantitative genetic features known as threshold traits have a phenotypic level nonlinearity. There are two phenotypically unique morphs that define these features, and it is considered that the liability, an underlying trait that is continually distributed, is what determines these traits genetically.
What in genetics is a threshold?quantitative traits based on an assumed continuous distribution of the elements that contribute to the trait but discretely manifested in a small number of phenotypes (often two) (underlying liability).
Do threshold qualities have complexity?The environment and numerous genes both seem to have an impact on threshold features, which are all or none.
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(T/F) The resting membrane potential of cardiac muscle cells depends on a low permeability of the plasma membrane to sodium and potassium and a higher permeability to calcium
The statement is False, The resting membrane potential of cardiac muscle cells depends on a low permeability of the plasma membrane to sodium and potassium and a higher permeability to calcium.
Cell division and organization take place within cell membranes. A plasma membrane surrounds every cell and controls what and how much material can enter the cell. Eukaryotic cells, in contrast to prokaryotes, have internal membranes that enclose their organelles and regulate the exchange of vital cell components. The gatekeeping role is made easier by the distinctive structures shared by both types of membranes. With a few very rare exceptions, glycerophospholipids—which are made up of glycerol, a phosphate group, and two fatty acid chains—are the primary component of cellular membranes, including plasma membranes and interior membranes. The glycerol molecule, which includes three carbon atoms, provides structural support for these membrane lipids. Within a single glycerophospholipid, the phosphate group is linked to the third carbon and the fatty acids are linked to the first and second carbons of the glycerol backbone. There are numerous head groups attached to the phosphate. Space-filling simulations of these molecules demonstrate their cylindrical structure, which enables glycerophospholipids to line parallel to one another to form broad sheets.
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while suppresses gluconeogenesis, increases glycogen breakdown. group of answer choices cortisol; glucagon glucagon; insulin insulin; glucose insulin; glucagon
Glycogen breakdown is accelerated by glucagon whereas gluconeogenesis is suppressed by insulin.
Additionally, insulin has the ability to reduce gluconeogenesis, inhibit glycogen breakdown, & accelerate glycogen synthesis. Hepatic glucose production is increased by glucagon's ability to counteract the effects of hepatic insulin and speed up gluconeogenesis. Glucagon encourages skeletal muscle atrophy to provide amino acids are gluconeogenic precursor in order to assist gluconeogenesis. Type 2 diabetes patients' elevated gluconeogenesis inside the liver is thought to have a significant role in hyperglycemia and the ensuing diabetic organ damage. The main hormone which inhibits gluconeogenesis is insulin, and type 2 diabetes is characterized by insulin resistance. In particular, glucagon stimulates de novo glucose synthesis (gluconeogenesis), stimulates hepatic transformation of glycogen to glucose (glycogenolysis), and inhibits glycogen synthesis and breakdown (glycolysis) (glycogenesis).
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please answer fast i’ll give brainliest!!!
Evolution considered a theory It is backed up by scientific evidence.
What is the definition of evolution?
Evolution is defined as the process of growth and development or the theory that organisms have grown and developed from past organisms. An example of evolution is how cell phones have changed over time.
Thus, the option "A" is correct.
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What biome has the largest diversity?; Which terrestrial biome has the highest diversity of species ?; Where do most of the terrestrial diversity can be found?; What is the most common terrestrial biome?
The following statements are the answers to the given questions:
The tropical rainforest biome has the largest diversity of any biome.
The tropical rainforest is the terrestrial biome with the highest diversity of species.
Most of this diversity can be found in the Amazon rainforest of South America, which is the largest tropical rainforest in the world.
The most common terrestrial biome is the temperate grassland. This biome is characterized by its rolling hills, grassy plains, and scattered trees and shrubs.
Define the term Biome?
A biome is a major regional biological community characterized by distinctive plant and animal species and maintained under the climatic conditions of the region. Biomes are often referred to as "ecosystems" or "ecological communities." They are determined by climate, soil, geography, and other environmental factors.
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the food you eat is processed during cellular respiration to produce stored chemical energy in the form of______ and_____ are by products. see section 4.7 (page) .
the food you eat is processed during cellular respiration to produce stored chemical energy in the form of ATP and CO2 and water are by products.
In the course of cellular respiration, glucose is broken down chemically to create ATP, which is then used as energy for a variety of bodily functions. Cellular respiration is composed of three basic processes: oxidative phosphorylation, citric acid cycle, and glycolysis. On the inner mitochondrial membrane, oxidative phosphorylation takes place, whereas glycolysis happens in the cytosol, the citric acid cycle happens in the mitochondrial matrix. ATP and H2O are the ultimate products of cellular respiration, and glucose, ATP, and NAD+ are the initial reactants.
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To study why biodiversity increases productivity (see the reading for this week's lab), suggest an hypothesis involving one of the three possible mechanisms (resource use efficiency, facilitation, sampling effect). Hypothesis: Which mechanism are you investigating? How is your hypothesis related to that mechanism?
Three richness treatments—two, four, and six species—in which species combinations were nested were included in the experimental design, along with monoculture controls. Randomly choosing species from each of the two functional groups to ensure that they were equally represented in all treatments resulted in the creation of species combinations in biodiversity
A replacement design was used to inoculate experimental cultures, keeping the initial cell abundance constant for all degrees of richness and species combinations. This experiment served as a follow-up to one in which the starting biovolume was fixed. We do not present our preliminary data here because the outcomes of both tests were comparable. Because each species appeared in the experimental design an equal number of times, our design produced an average beginning biovolume (1.37 107 m3/mL) across richness treatments biodiversity . Biovolume, on the other hand, varied amongst species combinations, ranging from 1.4 105 m3/mL in the Chaetoceros and Nannochloris treatment to 4 107 m3/mL in the Coscinodiscus and Dunaliella treatment. In statistical studies (see "Data Analyses"), initial biovolume was employed as a covariate. 20 mL of inoculum were added..
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on the difficulty of achieving differential privacy in practice: user-level guarantees in aggregate location data
On the difficulty of achieving differential privacy in practice: User-level safeguards in aggregated location data: Although large-scale human mobility data contains crucial information for understanding human behavior, it is also very sensitive.
In the work developed by Bassolas et al., we studied the structure of cities and their impact on urban livability using a highly aggregated mobility dataset. In order to protect privacy, random noise was added using an automated Laplace mechanism (ε, δ)-differential privacy, with ε =0.66 and δ =2.1×10−29. Where ε defines the noise intensity and δ represents the deviation from pure ε privacy. Differential privacy mathematically guarantees that a person, who observes the result of a differential private analysis, is likely to produce the same inference about one's private information or not, that person's private information is combined as input for the analysis
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match the anatomical components of primary or first-order neurons of somatosensory pathways with their locations
(1). Axons a) Project to secondary or second order neurons in the CNS,(2) Cell bodies c) Posterior root ganglia of spinal nerves, sensory ganglia of cranial nerves, (3)Dendrites b) Part of a stimulus-specific receptor.
The body contains how many nerves?The human body has more than 7 trillion nerves, which may surprise you. The neurological system of your body is made up of all of these nerves. The nerves in your body act as the electrical wiring, carrying messages from your head, spinal cord, and other parts of your body.
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The complete Question : Match the anatomical components of primary or first order neurons of somatosensory pathways with their locations.
1. Axons
2. Cell bodies
3. Dendrites
a) Project to secondary or second order neurons in the CNS
b) Part of a stimulus-specific receptor
c) Posterior root ganglia of spinal nerves, sensory ganglia of cranial nerves
a polyclonal antibody made against a large protein antigen reacts with it even when it is denatured by disrupting all disulfide bonds. another monoclonal antibody against the antigen fails to react when it is similarly denatured. the most likely explanation can be stated as follows:
B lymphocytes differentiate into plasma cells that produce closely patterned antibody molecules from precursor B cell receptors. They are only generated against a single antigenic epitope.
Polyclonal antibodies bind to different epitopes, while monoclonal antibodies bind to only one type of epitope. Once released into the blood and lymph, these antibody molecules bind to the target antigen and initiate its neutralization or destruction. The responses are polyclonal in nature as each clone is somewhat specialized. in the production of antibodies against a given epitope, and because each antigen contains multiple epitopes, each of which in turn can be recognized by more than one B cell clone. Active immunity occurs when exposure to a pathogenic organism causes the immune system to produce antibodies to that disease.
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The learning history of observers has a powerful influence on what they learn from models. This is illustrated by the fact that chimpanzees that have had __________ training get more from observing a model than those that have not.
The learning history of observers has a powerful influence on what they learn from models. This is illustrated by the fact that chimpanzees that have had language training get more from observing a model than those that have not.
What is a chimpanzees ?
Being extremely social creatures, chimpanzees can quickly distinguish one another even when they haven't seen one other for a long time. Some chimpanzees that have learnt American Sign Language have retained memories of a person and their name sign even after a long period of time has elapsed.
Chimpanzees in the wild belong to a huge community, but they frequently travel, rest, and feed in smaller groups. This type of civilization is known as "fission-fusion." Individuals may join or leave these subgroups at any time, and their makeup is constantly changing. One dominant male serves as the group's alpha in chimpanzee social groupings, which have a distinct social structure that can vary. The social standing of a man's mother within a community is frequently related.
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This is going to probably sound ridiculous
But what happens when it snows on a mountain and the snow from that mountain cloud hits the ground does it become rain?
Note that when the sun shines and heats the Earth, snow which has fallen to the ground melts and becomes runoff. Runoff can penetrate into the earth, where it can aid plant growth. A runoff will flow into lakes, streams, rivers, and other bodies of water if the earth is already saturated (has enough water).
What causes snow?When microscopic ice crystals in clouds cling together, they make snowflakes. If enough crystals adhere to one another, they will grow heavy enough to fall to the earth.
Snowflakes that fall through damp air that is slightly warmer than zero degrees Celsius will melt at the edges and join together to form large flakes.
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What are infectious diseases?
Diseases known as infectious diseases are conditions brought on by organisms like bacteria, viruses, fungus, or parasites. Our bodies are home to numerous living things. In most cases, they are beneficial or even safe. Some microbes, however, have the potential to cause disease in specific situations. There are some contagious diseases that can be transmitted from person to person.
What are parasites?
An organism that lives on, inside, or in competition with its host is said to be a parasite. Human disease-causing parasites mostly fall into three categories: protozoa, helminths, and ectoparasites.
Because many of these parasites are disease-carrying organisms, they occasionally even represent a bigger hazard to human bodies. The percentage of people who have parasites in their guts is thought to be over 80% for both adults and children.
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Define each of the following terms and give an example.Simple (complete) dominance =Incomplete dominance =Codominance =Monohybrid cross =Dihybrid cross =Sex-linked trait =
Simple (complete) dominance =Incomplete dominance =Codominance =Monohybrid cross =Dihybrid cross =Sex-linked trait =Two dominant alleles that are expressed by codominant genes result in the development of a new characteristic.
The organism that carries the alleles exhibits both CO-dominant characteristics in its phenotype. The dominant alleles of a trait for color serve as an illustration. A flower will have striations of both Red and White color on its flower petals if both the Red and the White petal color alleles are dominant. However, if the two qualities exhibit incomplete dominance, they do not completely outweigh one another, and the flower petals will be pink as a result (an intermediate between Red and White)
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The arthropods are the most successful group of animals; several key features explain their success. Select all of the features that one would use to classify members into this phylum.a. growth takes place through ecdysisb. a rigid exoskeleton made of chitinc. closed circulatory systemsd. jointed appendagese. a rigid exoskeleton made of keratinf. segments specialized into functional tagmata
Ecdysis, a stiff exoskeleton comprised of chitin-jointed appendage segments that are specialized into functional tagmata, is the process by which organisms develop.
The arthropods' extraordinary adaptability and success is the reason for their great variety. Arthropods may be found in almost every environment and niche on earth because to the evolution of a wide variety of appendages, including antennae, claws, wing, and mouthparts. On Earth, arthropods are regarded as the most successful animals. More species and individuals are found in this phylum than in all other animal groups combined. Arthropods make up more than 85% of all recorded animal species. All arthropods have specialized appendages, a bilateral symmetry, jointed appendages, segmented body, and an exoskeleton. The following are some of the crucial traits of arthropods: They are exoskeleton-equipped. Their appendages are joined. They have distinct bodily parts.
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what is produced in photosynthesis; photosynthesis occurs; photosynthesis equation; photosynthesis and cellular respiration; what is the process of photosynthesis; where does photosynthesis take place; why is photosynthesis important
Photosynthesis is the process by which light energy is converted into chemical energy in the form of sugars.
Using light energy, oxygen is produced as a byproduct while carbon dioxide and water are converted into glucose (or other sugars).
Through a process known as photosynthesis, green plants and certain other organisms transform light energy into chemical energy. During photosynthesis, light energy is captured and used by green plants to convert water, carbon dioxide, and minerals into oxygen- and energy-rich organic molecules.
Photosynthesis takes place in chloroplasts, which are found in the mesophyll of the leaves. Inside the chloroplast, in the thylakoids, the chlorophyll absorbs the various hues of light to create energy (Source: Biology: Libre Texts).
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your friend claims that a nonsense mutation causes proteins to be shorter because the mutation stops rna polymerase. is your friend's claim true or false? to start, address the first part of the claim: nonsense mutations cause proteins to be shorter. which of the following is an accurate, relevant statement about transcription or translation that could be used to determine if the claim about protein length is true?
My friend's claim is false, because while the nonsense mutation does lead to a shorter protein, this is because the stop codon stops DNA polymerase, not RNA.
Two polynucleotide chains form the double helix structure of deoxyribonucleic acid, a polymer (DNA). Every known organism, including many viruses, has genetic material. An organism's growth, development, function, and reproduction all depend on its genetic makeup. DNA and ribonucleic acid are examples of nucleic acids (RNA). Along with proteins, lipids, and complex carbohydrates, nucleic acids are one of the four primary types of macromolecules required for all known forms of life (polysaccharides).
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more than 25 percent of the world's greenhouse gases come from all the following sources, except
Production of electricity (25 percent of 2020 greenhouse gas emissions) - The second-largest portion of greenhouse emissions are caused by electricity.
Globally, electricity (which accounts for 25% of 2020 greenhouse gas emissions) and heat (which accounts for 31%), as well as agriculture (11%), transportation (15%), forestry (6%) and manufacturing (12%), are the main sources of greenhouse gas emissions. 72% of all emissions are caused by the generation of energy of all kinds. Accurately measuring greenhouse gas emissions from of the food industry is crucial since the production of food contributes significantly to climate change. In a recent study, we found that almost 35% of all greenhouse gas emissions caused by human activity are produced by the food system. Petroleum is the primary component of the more than 90% of fuel used for transportation, which generally consists of gasoline and diesel.
(Where does 25% of greenhouse gas emissions come from?)
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according to the diathesis stress model is a characteristic that makes a sexually abused child more prone to develop[ dissacoiative identiy disorder. t/f
True.According to the diathesis-stress model,hypnotizability is a characteristic that makes a sexually abused child more prone to develop dissociative identity disorder
The diathesis-stress model posits that psychological disorders result from an interaction between inherent vulnerability and environmental stressors. Such interactions between dispositional and environmental factors have been demonstrated in psychopathology research.These components may include aggression and/or impulsivity, pessimism and hopelessness, and problem-solving or cognitive rigidity.A diathesis can be defined as the hereditary or biological propensity to develop a mental health condition. It examines genetic vulnerability as well as past biological events that can influence an individual's susceptibility to mental illnesses.
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Which of the following occurs in the lungs?
Answer: The lungs and respiratory system allow oxygen in the air to be taken into the body, while also letting the body get rid of carbon dioxide in the air breathed out.