a blood clot that develops in a narrowed artery is called a(n)

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Answer 1

A blood clot that develops in a narrowed artery is called a thrombus.


A thrombus refers to a blood clot that forms within a blood vessel, obstructing the normal blood flow. When an artery becomes narrowed due to factors such as plaque buildup or inflammation, the blood flow through that artery becomes restricted. In such cases, if a clot forms and gets trapped within the narrowed artery, it can further impede or completely block blood flow, leading to various health complications. Thrombi can occur in different locations within the body, including the heart, brain, or peripheral arteries. They pose a risk because they can reduce blood supply to vital organs and tissues, potentially causing ischemia (lack of oxygen) and organ damage. Treatment for thrombus formation often involves blood thinning medications or procedures to remove or dissolve the clot and restore normal blood flow.

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Related Questions

What knowledge and skills do nurses need?

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Nursing is a profession that requires a comprehensive set of knowledge and skills to provide safe and effective patient care.

Nurses are expected to possess a broad range of competencies in order to provide high-quality care and meet the needs of their patients. The knowledge and skills that nurses need are often divided into two categories: theoretical knowledge and practical skills.

Theoretical knowledge is a core component of nursing education and is essential for nurses to understand the fundamentals of the profession. This includes understanding anatomy and physiology, medical terminology, pharmacology, pathophysiology, and legal and ethical issues. A nurse must also have an understanding of how to use evidence-based practice in order to provide the best care for their patients. In addition, nurses must be knowledgeable about the different types of treatments and interventions available, as well as how to recognize and assess changes in patient condition.

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During what stage does the g1 s and g2 phases happen?

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G1 and G2 phases happen as interphase, for the preparation before the mitotic phase started.

Phases of the cell cycle

The cell cycle refers to the cycle of growth and development of cells by dividing. After the cell divides into two daughter cells, it can start the same process over again.

The stages of the cell cycle are divided into two major steps: interphase and mitotic phase. Interphase looks like the preparation before the next steps. It includes 3 phases :

G1 phase (cell growth) is the first phase of the interphase. In this phase, the cell grows larger and also copies the organelles of cells. S phase (DNA synthesis) is the phase when the cell copies its DNA to produce two sister chromatids and also duplicate the nucleosome. G2 phase (cell growth) is the phase for reorganizing cellular content before mitosis begins.

From the above explanation, "inter" reflects that interphase occurs between the mitotic phase and the next step.

Thus, G1, S, and G2 phases take place in the interphase before mitotic phase.

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All of the following are true of antibodies EXCEPT

O they are recognized by phagocytes

O they destroy virus-infected cells

O they can block pathogens from infecting cells

O they bind to specific antigens

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All of the following are true of antibodies EXCEPT that they destroy virus-infected cells because antibodies are bind to pathogens and antigens.

Antibodies remove foreign chemicals from the body by attaching to particular antigens. The variable section of the antibody binds to the pathogen when it gets into the body as a pathogen, such as a hazardous bacteria or virus, and ultimately causes a number of activities, such as the pathogen's elimination.

Viruses and intracellular bacteria attach to particular molecules on the surface of the target cell in order to enter the cell. This can be avoided as the pathogen is said to be neutralised by antibodies that bind to it. Antibodies' ability to neutralise bacterial toxins is crucial for preventing their entry into cells.

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Help me please I need this soon

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Answer:

In teliphase four daughters are formed

Answer of 20 is yes

what is the role of cholesterol in a phospholipid bilayer

Answers

Answer:

Cholesterol plays a very significant role in the phospholipid bilayer.

Explanation:

It increases the order of the lipid packing, lowers the membrane permeability, and maintains membrane fluidity by forming liquid-ordered–phase lipid rafts

Can muscle tightness cause pain?

Answers

After an injury or misuse, sensitive regions of tight muscle fibers can grow in your muscles. These sensitive locations are referred to as trigger points. A muscular trigger point can produce tension and discomfort throughout the muscle.

Doctors refer to this as myofascial pain syndrome when the pain persists and intensifies.

Muscle stiffness is defined by discomfort and difficulty moving, which may be accompanied by cramping, pain, or weakness. Muscle stiffness is most common in the morning and lasts for less than 30 minutes after waking up, or for a few days after engaging in new or more difficult activity.

One of the most prevalent causes of muscular discomfort is muscle rigidity, also known as muscle tension, rigor, or stiffness.

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There were _____ people in 1960.

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Answer:  3,034,949,748

Explanation: If u do some research on the web you could find the answer.

In which layer of the atmosphere is oxygen content the highest?

Answers

Answer:

The troposphere

Explanation:

What causes stiff tight muscles?

Answers

The most common causes of muscle stiffness are strains and  sprains.

Muscle stiffness occurs when a muscle becomes stiff, especially after rest, making it harder to move than usual. It may also be accompanied by muscle pain, cramps, and discomfort.

This is different from muscle stiffness or spasticity. Both of these symptoms cause the muscles to remain tight even when they are not moving. Muscle stiffness usually develops after exercising, doing the heavy lifting, or lifting heavy weights. In addition, the body may become stiff if it is not active for a certain period of time. When getting out of bed in the morning or getting up from a chair after sitting for a long time.

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Gene mutations can be passed on to future generations and drive natural selection.

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An organism can acquire new features as a result of gene changes that change transcriptional activity or protein function. If a characteristic is present, a genetic variation is more likely to be handed down .

Which mutations can be transmitted to subsequent generations?

Almost every cell in an individual's body harbors these hereditary mutations during the course of their lifespan. Hereditary mutations include conditions including cystic fibrosis, sickle cell anemia, and hemophilia. Additional mutations might develop on their own over a person's lifespan. They are referred to as sporadic, spontaneous, or new mutations.

How do genes spread through natural selection?

Genetic variations that are advantageous to an individual's survival are passed on through reproduction under natural selection.

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The complete question is -

Gene mutations can be passed on to future generations and drive natural selection of the evolution ?

In a plant, when the rate of respiration is greater than the rate of photosynthesis, what happens to the volume of carbon dioxide that is released?.

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When the rate of respiration in a plant is greater than the rate of photosynthesis, the plant will release more volume of carbon dioxide (CO2) into the environment than usual.

Why carbon dioxide was released by plants into environment?

This is because respiration is the process by which plants convert stored energy, such as sugars, into usable energy for growth and survival. During this process, CO2 is released as a byproduct. Overall, when the rate of respiration in a plant is greater than the rate of photosynthesis, the plant will release more CO2 than it is able to take in through photosynthesis, leading to a net loss of CO2 for the plant. This may not be favorable for the plant's growth and survival in the long term.

What is photosynthesis in plants?

Photosynthesis, on the other hand, is the process by which plants convert light energy into chemical energy, using CO2 and water to produce oxygen and glucose. When the rate of respiration is greater than photosynthesis, the plant is using up more energy than it is able to produce, leading to a net loss of CO2. This can occur under conditions such as low light intensity, high temperatures, or water stress.

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If the scientists conclude the greater cloud cover will reflect more incoming solar radiation, then the result will be decreased temperatures on earth. What type of feedback mechanism is this?.

Answers

Because clouds can hold onto solar heat, they envelop Earth like a blanket. As a result, clouds can both cool and warm the environment.

What exactly are solar rays?

Our sun's solar radiation passes through the atmosphere and reaches the Earth. Electromagnetic waves or light are referred to as solar radiation. There are three main categories of solar radiation: visible light, infrared light, and ultraviolet light.

What kind of feedback is there between temperature and clouds?

This relationship is one of negative feedback. The amount of clouds rises as the water vapor content does, but the clouds also assist to chill the environment by lowering solar radiation that enters the atmosphere. The response balances out the stimulus.

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Explain What are index fossils and how are
they used to determine the
Absolute age of sendimentary rock?

Answers

Index fossils are the remains of species that were alive for just one brief time.A layer of rock containing an index fossil is not very old compared to another rock layer containing the same kind of index fossil.

What is the rock's exact age?

The absolute age of the a rock is its age expressed in years.By calculating the concentration of specific radioactive materials in the rock, geologists may determine absolute ages.Small amounts from radioactive materials frequently end up in the formation of rocks.

What does it mean to be absolute?

The numerical age of a layer containing rocks or fossils is its absolute age.Radiometric dating can be used to calculate absolute age.

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Whoever helps me first will be mark as brainliest I promise please and thank you

Answers

Answer:

Answer is yes because most of the boxes are black

When a tall plant TT in pea is crossed with another tall plant TT the probability of obtaining a dwarf plant is?

Answers

When a tall plant (TT) in pea is crossed with another tall plant (TT), the probability of obtaining a dwarf plant is 0%.

Both parents are tall plant (TT) which are homozygous dominant for the trait of plant height. This means that they both have two copies of the allele that codes for tall plant height (T). Since the allele for tall plant height is dominant, it masks the presence of any allele for short plant height (t). In this cross, both parents only have the allele for tall plant height, so all of their offspring will also have the allele for tall plant height.

This can be represented in a Punnett square shown in the attached picture. As you can see in the Punnett square, all the offspring will be TT, and will be homozygous dominant for the trait of plant height and will exhibit the dominant trait (tall plant height).

Therefore, all the offspring will be tall and none of them will be dwarf.

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what causes the cones from the lodgepole pine tree to drop its seeds

Answers

Answer: Fire

Explanation: When the heat of a passing fire melts the resins that seals it and allows the cone to open, dropping it's seeds

Consider the lowest layer of the atmosphere as the first layer. In which layer do you find ozone? O first O second O third O fourth​

Answers

The ozone layer is one layer of the stratosphere, the second layer of Earth's atmosphere.

Where is the ozone layer located?The ozone layer on Earth. In the stratosphere, 15–40 km (10–25 miles) above the surface of the Earth, is where the ozone layer is located. Nearly all weather happens in this area, also referred to as the lower atmosphere. The troposphere rises from the surface of the Earth to a height of 6 to 20 kilometres (4 to 12 miles). From the equator to the poles, the troposphere's height fluctuates. The troposphere, stratosphere, mesosphere, thermosphere, and exosphere are the primary layers, in order from lowest to highest. The layer of insulating gases that clings to our planet is known as the stratosphere.

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The continental crust, oceanic crust and very top of earth's mantle make up a hard surface that breaks into tectonic plates. This layer of the earth is referred to as the ____________(a)_ and it floats or moves on a melted layer of earth called the ________________(b)__.

Answers

The continental crust, oceanic crust, and the Earth's uppermost mantle form a solid surface that breaks up into tectonic plates. This layer of the earth is known as the lithosphere and floats or moves above the melted earth layer which is called the asthenosphere.

What is the earth's crust?

The earth's crust is the outermost layer of the earth and has a thickness of 0-100 km. The earth's crust is predominantly composed of feldspar and other silicate minerals.

The Earth's mantle is the layer of silicate rock between the crust and outer core. Its mass of 4.01 × 1024 kg is 67% of the mass of Earth. The mantle is 2,900 kilometers (1,800 miles) thick and makes up about 84% of Earth's volume. The mantle is dominated by the solid phase but in geological time behaved as a viscous liquid.

The layer of the earth that forms a hard surface is known as the lithosphere, while that which melts is called the asthenosphere

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Water is cooler near the poles and warmer near the equator. Movement of cooler and warmer water from these regions moderates the global climate. Which of the following describes the movement of water between the poles and the equator?

Answers

Option C. ocean currents describe the movement of water between the poles and the equator.

What is the relative importance of ocean currents in the movement of water?

The relative importance of ocean currents in the movement of water between the poles and the equator is based on the fact they (ocean currents) are continuous, predictable, and also directional depending on the natural features of the earth planet, which is determined by the attractive forces that shape this movement, i.e.,  gravity, as well as the presence of winds and water body density

Therefore, with this data, we can see that ocean currents are a fundamental issue associated with the movement of water bodies in the oceans and other types of water bodies on the earth planet, which occurs between the poles and the equator due to certain features of water such as gravity, winds, and density.

Complete question:

Water is cooler near the poles and warmer near the equator. Movement of cooler and warmer water from these regions moderates the global climate. Which of the following describes the movement of water between the poles and the equator?A. evaporation 

B. tides 

C. ocean currents 

D. gravity

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state three hormones found in the digestive system

Answers

Answer:

endocrine, hormonal, testosterone

Explanation:

I had this question on an exam

If the p generation are gray with Genoa type gg, and white with genotype GG, what color will the genotype Gg be in the F1 generation?

Answers

If the p generation is gray with Genoa type gg, and white with genotype GG, then the color that the genotype Gg will be in the F1 generation cannot be determined because we don't know which allele is dominant in this case.

What is the type of complete dominance allele interaction?

The type of complete dominance allele interaction is a genetic phenomenon in which one allele is masked in heterozygous individuals in a population.

Therefore, with this data, we can see that complete dominance is a class of allele interaction in which one allele is expressed in heterozygous individuals.

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Pros and cons of filter feeding, raptorial feeding, diffusion feeding

Answers

Answer:

Filter-feeding organisms can be used for reducing the amount of pathogens in the water, and therefore the chances of disease in farming facilities.

Advantages and disadvantages of active filters

These filters are more responsible than passive filters.

No resonance issue.

It can eliminate any harmonics.

Used for voltage regulation.

Used for reactive power compensation.

It provides reliable operation.

It can be designed to provide some passband gain.

No loading problem.

The chief drawbacks to filter-feeding are: 1) food supply is thinly distributed, requiring much swimming effort to secure sufficient nourishment and, 2) food supply is subject to wide fluctuations in relative abundance, especially in temperate zones.

Help me please that is for tomorrow please
I need answer de question and it don’t see the question 14 so please help me

14. What would the amino acid sequence be translated from the mRNA sequence?

Answers

UGGCAGUGC, Translation of the mRNA sequence into the amino acid sequence.

After transcription from a DNA strand, the sequence for the AACGTAACG codon in the mRNA molecule is UUGCAUUGC. The genetic coding of an RNA strand is in the order A-U, G-C, and T-A.

When the mRNA's codons come into contact with the ribosome's active site, the nucleotide sequence of the mRNA is translated into an amino acid sequence, with the aid of the tRNAs acting as adaptors to add each amino acid in the proper sequence to the end of the expanding polypeptide chain.

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How does cardiorespiratory endurance benefit physical activity?

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Your physical fitness will be affected by your cardiorespiratory endurance: Climbing Tanzania's Mount Kilimanjaro requires cardiorespiratory stamina.

Maximum Aerobic Power VO2 max is another term for maximum aerobic power. Your body's capacity to utilize oxygen is referred to in this. The capacity of the heart, lungs, and muscles to function during moderate to vigorous physical activity is known as cardiorespiratory endurance. Regular exercise, particularly aerobic exercise, can enhance cardiorespiratory endurance.

Regular endurance training results in the physiological changes and long-term advantages listed below: - A healthy cardiorespiratory system can easily keep up with the body's need for oxygen, fuel, and waste elimination while at rest.

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A mouse embryo is in the early stages of development. The cells are beginning to look different from each other. What is happening to the growing mouse embryo?

Answers

Answer: he cells are differentiating so that they have specialized functions

Explanation:

cell differention

A mouse embryo is in the early stages of development, it seems cells are beginning to look different from each other, it is due to cell differentiation.

How does a mouse embryo develop?

Cell differentiation is the process to develop a zygote into an embryo, and pluripotent stem cells are the undifferentiated cells, which develop into different cell lineages.

cells from the later blastocyst stage only give rise to two of the three cell lineages, because to the fact that embryonic stem cells are totipotent, whereas blastocyst cells are pluripotent.

During the blastocyst stage, cells develop into any lineage, having the potency to develop into any cells, due to pluripotency.

Therefore, during embryonic development, cells are beginning to look different from each other due to cell differentiation.

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The expressed allele when no dominant allele is present in: _________

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The expressed allele when no dominant allele is present in Recessive allele.

In general, Recessive alleles are expressed in certain condition when their is no dominant allele  present. But when we talk about  s.e.xually reproducing organisms, each of then will contain two alleles for every gene (one from each parent). This pair of alleles is also known as genotype that is responsible for determining the organism's phenotype.

Hence , Recessive alleles can only be expressed when both parents have recessive alleles for the given trait . on the other hand Dominant alleles are always expressed, regardless of what the other allele is present. If a person carries one dominant allele and one recessive for any trait, it is termed as a carrier.

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The structure that organizations most commonly adopt to solve the control problems that result from producing many different kinds of products for many different market segments is the _______ structure.

Answers

Answer:

that boy is not one of them

Explanation:on god

what are the major causes of moving air masses in North America? Choose two that apply. A- Changing Humidity B- Low temperatures C.- jet stream D.- Prevailing westerlies

Answers

The major causes of moving air masses in North America are : C.- jet stream and  D.- Prevailing westerlies. Cold air masses move towards the equator and warm air masses move towards the poles.

What are the types of air masses in North America?

The air masses in and around North America include continental arctic , maritime polar, maritime tropical, continental tropical, and continental polar air masses. Air is not the same everywhere.

Air masses are large bodies of air that have similar temperature and humidity and these are moved around the atmosphere by prevailing winds that blow in one direction. At the boundaries between the air masses, weather fronts form.

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MULTIPLE CHOICE
When does flowing water deposit the sediments it is carrying?
A
B
C
D
when the water current slows down
when the water current speeds up
only when the river changes direction
water does not deposit sediments, it only erodes sediments

Answers

Answer: A. when the water current slows down.

Explanation:

When a water current slows down, the force of the water is not strong enough to continue carrying the sediment, so it drops the sediment and deposit it. The slower the flow, the larger the particles that can be carried and eventually deposited. This is why river deltas, for example, are formed where a river enters a body of water and the flow slows down, allowing sediment to build up and create landforms.

Which specific cytoskeletal element is most susceptible?

Answers

All cytoskeletal elements have specific functions and structural characteristics that make them susceptible to different types of damage or disruption. However, the microtubules are considered the most susceptible cytoskeletal element. Microtubules are flexible, hollow tubes made up of a protein called tubulin. They are responsible for maintaining cell shape, cell division, and organelle movement. Because of their dynamic nature, microtubules are more susceptible to damage caused by environmental factors such as temperature changes, pH changes, and exposure to chemicals. Additionally, microtubules are also more susceptible to disruption caused by certain drugs and toxins that target tubulin, such as the chemotherapy drug taxol.

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