Your blood pressure is 120/70. the "120" indicates systolic, and the "70" indicates diastolic.
Blood pressure is a measure of the pressure experienced by the blood in the arteries when blood is pumped by the heart to all parts of the human body. The result of blood pressure is made by taking two measurements. They are the systolic and diastolic numbers.
For instance, at a blood pressure of 120/70, the first number is called the systolic, and the second number is called the diastolic. Both numbers are very important for the heart.
Systolic shows how hard your heart is pumping to push blood through the blood vessels throughout the body.
Meanwhile, diastolic indicates the pressure remaining in the arteries between two heartbeats when the heart muscle relaxes and fills with blood. During this time the blood pressure drops.
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Why is skin color polygenic?
A trait known as polygenic refers to the expression of multiple gene loci in human skin color. According to the International Federation of Pigment Cell Society, there are a total of [tex]378[/tex] genetic loci that play a role in determining human and mouse skin color.
The term polygenic inheritance refers to the inheritance of characteristics that are influenced by multiple genes. When these genes, known as polygenes, are expressed together, they produce particular characteristics. Mendelian inheritance patterns, in which traits are determined by a single gene, are distinct from polygenic inheritance. Many possible phenotypes (physical characteristics) of polygenic traits are the result of interactions between multiple alleles. Human traits like skin color, eye color, hair color, body shape, height, and weight are all examples of polygenic inheritance.
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If two heterozygous have 4 offspring's, will they be all heterozygous?
If two heterozygous have 4 offspring, then the likelihood they have 4 heterozygous individuals is 1/16 since it is equal to 1/2 x 1/2 x 1/2 x 1/2 (the likelihood to have a heterozygous is 1/2).
What is the likelihood to have heterozygous individuals in a hybrid genetic cross?The likelihood to have heterozygous individuals in a hybrid genetic cross is equal to 50% or 1/2 because it is dictated by gamete segregation during meiosis, while the likelihood to have homozygous individuals in a hybrid genetic cross is equal to 1/4 or 25% both for the dominant and the recessive genotypes.
Therefore, with this data, we can see that the likelihood to have heterozygous individuals in a hybrid genetic cross is equal to 1/2 and therefore the likelihood of 4 heterozygous is equal to the product between these values.
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Tubular secretion transfers substances from the ________ to the ________.a. blood; tubular fluidb. tubular fluid; bloodc. glomerulus; proximal tubuled. proximal tubule; glomerulus
The discharged substances come from the blood in peritubular vessels and pass through the interstitial liquid prior to going through the mass of the tubule (known as the vehicle epithelium) into the tubule (known as the lumen).
The filtrate assimilated in the glomerulus courses through the renal tubule, where supplements and water are reabsorbed into vessels. Simultaneously, squander particles and hydrogen particles pass from the vessels into the renal tubule. This interaction is called discharge.
The materials that are radiated into the cylindrical liquid for prohibition from the body incorporate Potassium particles (K+), Hydrogen particles (H+), Ammonium particles (NH+), Creatinine, and Urea.
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Which of the patients tested was(were) in the borderline range for insulin-mediated glucose uptake?
patient 3
patient 2
patients 2 and 3
patient 4
patients 2 and 4
Answer:B
Explanation: 40=674+8905
Why are accurate measurements necessary in scientific research?
Select all that apply
A. So scientists can replicate experiments done by others and compare their finding to the first published research
B. So scientists can accurately report findings and suggest theories
C. To quickly share relevant findings
Scientists can repeat experiments done by others and compare their discovery to previously published research and quickly share relevant findings. So, the correct options are (A) and (C).
What is an Experiment?An experiment is defined as a process that is performed to support or disprove a hypothesis, or to determine the efficacy or likelihood of something previously untested. These provide insight into cause and effect by demonstrating what results when a particular factor is manipulated.
The two major variables in any experiment are the independent and the dependent variable where the independent variable is controlled or changed to test its effects on the dependent variable. Experiments are repeat by the scientists or researchers so that better comparison can be done.
Thus, scientists can repeat experiments done by others and compare their discovery to previously published research and quickly share relevant findings. So, the correct options are (A) and (C).
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Name two processes that increase genetic diversity during meiosis. Describe how each contributes to genetic diversity. What is the purpose of mitosis?
Meiosis is critical for a species' genetic diversity. This is generally accomplished through two processes: independent assortment and crossing across (recombination).
The term "genetic diversity" refers to the diversity of organisms that exist. It differs from genetic variability, which reflects the propensity of hereditary features to change.
Genetic variety allows populations to adapt to changing surroundings. More variety increases the likelihood that certain individuals in a group will have allele variants that are adapted to the environment. Those people are more likely to live and have children with that allele. The population will continue for more generations because of the success of these individuals.
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While assisting in the emergency removal of a small toy from a young child's piriform recess, the attending physician asks you to tell him what nerve might be injured if the mucosa lining the recess is penetrated. You reply the:
The Vagus Nerve, or CN X, may be injured if the mucosa lining of the piriform recess is penetrated.
evolution is the product of __________ and __________.
Evolution is a product of natural selection with variation, often known as the survival of the fittest, is the process by which the genetic make-up of a population changes through time as a result of variety, selective pressure, and natural selection.
Three factors lead to evolution through natural selection: variation among individuals within a species, heritable variation, and an overpopulation of organisms relative to available resources. Simply said, random mutation is the cause of evolution.
An organism's chances of surviving in some settings over others can be improved by a select few uncommon mutations. Such uncommon mutations that gradually grow common are what cause the division of one species into two. For an evolutionary biologist, an adaptation is either a structure (such as an organ) or a behaviour that results from the process of natural selection.
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What is a chemical safety risk assessment and what do you need to do with it?
The identification of hazards, the evaluation of their risks and the putting in place of control measures to secure the health and safety of employees is preferred as chemical safety risk assessment.
chemical safety risk assessment is important because
hazard and risk assessment of a chemical will determine its potential to cause adverse effects to human health and the environment. The purpose of such assessments is to serve as a technical background for introduction of risk reduction measures
Chemical Safety is achieved by undertaking all activities involving chemicals in such a way as to ensure the safety of human health and the environment.
The risk assessment process is an effective way to determine whether your chemical safety precautions are adequate or if you need to implement extra controls to keep your workers safe.
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An extreme shortage of food with chronic hunger is termed O muscle wasting O food insecurity. O nutrition insecurity.O famine.
An extreme shortage of food with chronic hunger is termed as famine.
Several things, such as conflict, natural catastrophes, crop failure, population imbalance, pervasive poverty, an economic catastrophe, or government policies, can lead to a famine, which is characterized by a severe lack of food. Regional hunger, famine, epidemics, and increased mortality are frequently present alongside or after this occurrence. Famines have occurred at various points throughout history on every inhabited continent.
Famine is a widespread phenomenon where a large number of people in a nation or region lack access to sufficient food supply. Malnutrition, hunger, sickness, and high death rates are the results of famines. Conflict, forced migration, persistent poverty, food insecurity, natural catastrophes, and climate change are just a few of the many variables that can contribute to famine. Acute malnutrition deprives children of vital vitamins and minerals needed for healthy growth, leaving them vulnerable to illness, serious developmental delays, and even death. Millions of kids are taken out of school and put to labor in famine-like conditions, begging on the streets and sometimes only eating once a day.
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which statement is true? eukaryotic and prokaryotic flagella are very similar in structure eukaryotic flagella spin like propellers prokaryotic flagella are made of microtubules both prokaryotic and eukaryotic flagella are attached to a basal body all are true
Both the prokaryotic as well as eukaryotic flagella are attached to a basal body.
Prokaryotic and eukaryotic flagella mainly have difference in their respective structures as well as movement. Eukaryotic flagella are basically used for movement and are attached to the cell through basal bodies at the cell membrane while the prokaryotic flagella are found to be located outside of the plasma membrane.
Eukaryotic flagella are usually larger and have a bending movement. Prokaryotic flagella are usually smaller and have a rotary movement. One thing which is similar in both eukaryotic as well as prokaryotic flagella is that they both are attached to the basal body.
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Which of the following is not a phase of hemostasis? O coagulation O fibrinolysis O platelet plug formation O vascular spasm
Vascular spasm is not a phase of hemostasis. Here option D is the correct answer.
The process through which the body stops bleeding is known as hemostasis. It is divided into three phases: Vascular spasm is not a phase of hemostasis, but it can occur as an initial response to injury, causing the blood vessels at the site of injury to constrict, which helps to slow the bleeding.
Platelet plug formation: This is the first phase of hemostasis and involves the rapid adhesion and aggregation of platelets at the site of injury. This forms a temporary plug that helps to seal the wound and slow the bleeding.
Coagulation: This is the second phase of hemostasis and involves the formation of a clot made up of fibrin, a protein that forms a network that traps blood cells and platelets. This creates a stronger barrier that helps to seal the wound and stop the bleeding.
Fibrinolysis: This is the third phase of hemostasis and involves the dissolution of the clot by enzymes called plasmin. This helps to prevent excessive clotting and restore normal blood flow.
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in late adults, the amount of air left in the lungs after expiration of the maximum amount of air:
In overdue adults, the quantity of air left withinside the lungs after expiration of the most quantity of air: increases, which hampers diffusion of gases due to stagnant air that stays withinside the alveoli.
There are numerous frame adjustments that manifest as you become older that can motive a decline in lung capacity: Alveoli can lose their form and emerge as baggy. The diaphragm can, over time, emerge as weaker, reducing the capacity to inhale and exhale. This extrade will most effective be widespread while exercising. When assessing an 80-year-vintage affected person in shock, it's miles vital to take into account that: age-associated adjustments withinside the cardiovascular machine may also make the affected person much less capable of atone for reduced perfusion.
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Determining enzyme activity Enzyme activity can be determined in the following ways: Check All That Apply O by measuring how much of the enzyme is consumed O by measuring how much of the substrate is consumed acesO by measuring how much of the product is produced O determining when the amount of substrate is equal to the amount of productO by measuring the ratio of enzyme to substrate concentration
Enzyme activity can be determined (b) by measuring how much of the substrate is consumed aces and (c) by measuring how much of the product is produced O determining when the amount of substrate is equal to the amount of product.
Usually, the purpose of cultivating bugs in a plant is to increase enzyme activity. A biological catalyst is an enzyme. They decrease activation energy, just like other catalysts, enabling processes to go in the desired direction.
They are often sensitive to the temperature, pH, and salt content of the environment they function in since their action depends on the folding of a protein. There are few exceptions to this rule, such as the enzymes used in washing powder, but generally speaking, activity may be reduced (reversibly) when slight departures from their tolerance limits occur.
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What is an organism or cell having only one complete set of chromosomes called?
how does doppler evaluation demonstrate that the pulmonary vascular resistance is normally lower than resistance in the systemic vascular system?
Aortic valve flow achieves peak velocity more quickly than pulmonary valve flow does.
This is due to the fact that the metarterioles & precapillary sphincters inside the pulmonary circuit have had less smooth muscle than their equivalents in the systemic circulation, which makes them less blood flow resistant! Blood is expelled by the left ventricle through the aortic valve despite the systemic circulation's high pressure, frequently referred as systemic vascular resistance (SVR). The right ventricle dislodges blood thru the pulmonic valve against by the low pressure of a pulmonary circulation, as well as pulmonary vascular resistance (PVR) (PVR). The pressure gradient inside the systemic circulation is 100 mmHg, whereas the pressure decreases from the pulmonary artery to the lungs to the left atrium is only about 10 mmHg. PVR is therefore one-tenth of systemic circulation's resistance.
(how does doppler evaluation demonstrate that the pulmonary vascular resistance is normally lower than resistance in the systemic vascular system
a. the flow through the aortic valve reaches peak velocity faster than the flow through the pulmonary valve
b. the aortic flow pattern is more rounded while the pulmonary artery flow pattern is more peaked
c. the flow through pulmonary valve reaches a peak velocity faster than the flow through the aortic valve
d. the pulmonary valve tracing always demonstrates a lower peak velocity than the aortic valve tracing)
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in a stable human population, genetic drift has resulted in approximately 1% of the population having red hair. what is the allele frequency for the recessive allele that results in red hair?
In a stable human population, genetic drift has resulted in approximately 1% of the population having red hair. The allele frequency for the recessive allele that results in red hair would always be 25%.
A population or species of organisms typically has many alleles at each locus. Allele diversity can be measured by the number of alleles (polymorphism) present at a locus or by the proportion of heterozygotes in the population. A gene variant known as a null allele lacks the predicted function of the gene because the expressed protein is inactive, or the gene is not expressed. We now know that most, if not all, gene loci contain multiple alleles, are highly polymorphic, and that the frequency of these alleles differs between populations. A significant part of genetic variation is accounted for by alleles that do not produce different phenotypes.
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which part of the prokaryotic and eukaryotic cells contain the genetic material ?
The nucleus, as it contains DNA and is shared by both type of cells
Why are Michael’s blood ammonia levels elevated and why are high levels of ammonia dangerous?
A. Michael’s blood ammonia is high due to the rapid degradation of proteins; high levels of ammonia lead to dangerous levels of ketone bodies in muscle.
B. Michael’s blood ammonia is high because he has been burning calories from vigorous exercise; high levels of ammonia lead to dangerous levels of ketone bodies in muscle.
C. Michael’s blood ammonia is high due to the rate of ketone body production in his body; high levels of ammonia are dangerous because ammonia passes easily through the blood-brain barrier and is highly toxic to the brain.
D. Michael’s blood ammonia is high because it is a byproduct of β-oxidation of fatty acids; high levels of ammonia lead to dangerous levels of ketone bodies.
E. Michael’s blood ammonia is high due to the rate of protein wasting (catabolism of non-essential proteins to provide glucogenic carbon skeletons) in his body; high levels of ammonia are dangerous because ammonia passes easily through the blood-brain barrier and is highly toxic to the brain.
The correct answer (B) Michael’s blood ammonia is high because he has been burning calories from vigorous exercise; high levels of ammonia lead to dangerous levels of ketone bodies in muscle.
Ammonia is an inorganic nitrogen and hydrogen chemical with the formula NH3. Ammonia is a colorless gas with a strong odor that is a stable binary hydride and the simplest pnictogen hydride.
It is a frequent nitrogenous waste, especially among aquatic creatures, and it considerably contributes to the nutritional demands of terrestrial life by serving as a precursor to 45% of the world's food and fertilizers. Around 70% of ammonia is utilized in the production of fertilizers in different forms and compositions, including as urea and diammonium phosphate. Pure ammonia is also administered straight to the soil.
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the dorsal auditory stream terminates in the ________ and is involved in ________ .
The dorsal auditory stream terminates in the parietal cortex and is involved in vision and sound identification.
Connections in the central auditory system are complex, but the information proceeds from the Organ of Corti to spiral ganglion cells and the VIIIth nerve afferents in the ear, to the cochlear nuclei, many crossing in the trapezoid body to the superior olive in the brain stem.
Then all ascending fibers stop in the inferior colliculus in the midbrain and the medial geniculate body in the thalamus, before reaching the cortex in the superior temporal gyrus.
All auditory afferents synapse in the cochlear nuclei and in the thalamus. Beyond that simplification, second order fibers from the cochlear nuclei proceed rostrally in several different pathways. Afferents are generally distributed bilaterally so unilateral damage at any level does not usually result in deafness in either ear.
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Match each definition with the correct term.
1. large body of air that has about the same conditions throughout
2. front that occurs when a warm air mass runs into a cold air mass
3. front that occurs between two stalled air masses
4. front that occurs when a warm air mass becomes trapped between two cold air masses
5. front that occurs when a cold air mass runs into a warm air mass.
a. air mass
b. cold front
c. warm front
d. occluded front
e. stationary front
The answers include the following:
1. large body of air that has about the same conditions throughout - air mass.
2. front that occurs when a warm air mass runs into a cold air mass - occluded front.
3. front that occurs between two stalled air masses - stationary front.
4. front that occurs when a warm air mass becomes trapped between two cold air masses - warm front.
5. front that occurs when a cold air mass runs into a warm air mass - cold front.
What is a Front?
This is referred to as the boundary between air masses of different temperatures and there are different types such as the cold and warm front.
The cold front occurs when a cold air mass runs into a warm air mass while the warm front occurs when a warm air mass becomes trapped between two cold air masses.
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How might the water supply system be diffrent if the city was farther away from the water source -Science
Constriction of the ________ decreases hydrostatic pressure in the nephron's filtering structures; the _________.
Select one:
1. Afferent arterioles, glomerular capillaries
2. Efferent arterioles, proximal convoluted tubules
3. Renal vein, peritubular capillaries
4. Renal arteries, juxtaglomerular apparatus
5. Vasa recta, ascending loop of Henle
As stated in the preceding statement glomerular capillaries, afferent arterioles
What does hydrostatic pressure mean?The definition of hydrostatic pressure is. "The pressure that a liquid at equilibrium experiences at any given time as a result of the force of gravity." As the gravity of the fluid increases that whenever a downward pressure is applied, hydrostatic pressure directly proportional to the distance measured from the surface.
What does osmosis' hydrostatic pressure mean?Osmotic pressure, which is connected toward the protein concentration on each side of a membrane forcing water to towards the region had greater concentration, is different from hydrostatic pressure, which is the pressure of body water against a membrane.
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Why is it that vegetables stored in the freezer will have their cells damaged, while snowdrops (Galanthus nivalis) in cold countries have to go through harsh winters without their cells being destroyed?
Answer:
Plummeting winter temperatures often lead to frost damage in plants. The damage occurs when ice crystals form within plant tissue, damaging their cells. Leaves and tender new growth are usually affected first. Initially, they will appear wilted.6 Jan 2017
Julia Alvarez’s short story "Snow” uses a traditional narrative technique, while Jamaica Kincaid’s prose poem "Girl” uses a stylistic narrative technique called stream of consciousness. You will write an adaptation of each story. Write one to three paragraphs that adapt Jamaica Kincaid’s "Girl” to follow the style used by Julia Alvarez in "Snow.” Then write two to three paragraphs that adapt Julia Alvarez’s "Snow” to follow the style used by Jamaica Kincaid in "Girl.”
I'm very interested in this opportunity and would like a quote on the conversation between your Jose office and the female members of the sun.
What is Julia Alvarez’s short story "Snow”?The female members of Respondent are the best way to get your business back so that you can separate it from your own home business and customers with the best customer experience and experience you have posted on Craigslist.
The short story "Snow" by Julia Alvarez employs a conventional narrative approach, while the prose poem "Girl" by Jamaica Kincaid employs a stream-of-consciousness narrative technique.
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You are running tests on a tissue and you find that the cells that compose it have a build up of amino acids and lipids that normally would have broken down and removed from the cell. What is the best explanation for this
The most likely explanation is that the cells have a deficiency in the enzymes necessary to break down and remove the amino acids and lipids. This could be due to a genetic mutation, or due to a lack of nutrients or other factors.
The cereal box on the right has a mass of 340g. It’s dimensions are 27 cm X 19cm X 6cm. What is the volume of the box? What’s its desity
Answer: v=3,778 centimeter(cube)
d=0.11 grams per cen.
Explanation:
the energy source for chemosynthesis in the deep sea vent community is _______.
Bacteria found on the ocean floor or inside of mammals use the energy contained in the chemical bonds of hydrogen sulfide and methane to create glucose from water and carbon dioxide during chemosynthesis.
For the majority of species, carbohydrates serve as their main source of energy. The primary source of energy for cells is the sugar glucose. Through photosynthesis, plants make glucose. Starch is a kind of extra glucose that plants store in their fruits, seeds, and other tissues.
Some autotrophs, like chemosynthetic bacteria, get their energy from mixing inorganic substances like hydrogen sulfide with oxygen. a living thing that cannot produce its own sustenance and must instead receive its nutrients and energy from ingesting organic materials, typically plant or animal matter.
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6. Think about it: Since hard-shelled organisms evolved about 550 million years ago, billions of tons of
limestone rock have been produced from their shells. Limestone is made of calcium carbonate, with the
formula CaCO3.
1
Calcium and carbonate iron are taken in by organisms with hard shells and used to create their calcium carbonate hard shells. The shells of these organisms are used to create limestone rock when they die.
What is the purpose of iron carbonate?Uses. An iron supplement called ferrous carbonate has been used to treat anemia. In cats and dogs, it is noted to have a very low bioavailability.
Carbon is massively stored in limestone rocks. Carbon trapped in limestone is released into the atmosphere when acid rain reacts with it, resulting in an increase in atmospheric carbon.
In conclusion, over time, the accumulation of limestone rock and its reactions with acids, such as acid rain, have increased atmospheric carbon.
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Gram-positive organisms with low G + C content are commonly called __________.
A. Firmicutes
B. Spirochaetes
C. proteobacteria
D. mycobacteria
Gram-positive organisms with low G + C content are commonly called (a) firmicutes.
Within the intestinal microbiota, the Firmicutes are the dominating phylum and are able to produce resistant endospores that sustain viability in the environment and germinate inside the gut to aid in transmission. The effect of host transmission on the adaptive and evolutionary processes within the gut microbiota is yet unclear, though.
Firmicutes bacteria create spores, which are extremely resistant and metabolically inactive structures that increase survival under challenging circumstances. By preserving their environmental viability, anaerobic enteric pathogens like Clostridioides difficile (formerly Clostridium difficile) use sporulation to encourage transmission.
The spores begin to grow after being ingested by a new host in response to intestinal bile acids.
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