Illness is a state of poor health or a condition in which an individual experiences a decline in their physical or mental well-being. Causes of illness can include factors such as pathogens, genetic predispositions, environmental influences, lifestyle choices, and psychological factors.
Infectious diseases are illnesses brought on by pathogens, which are dangerous substances that enter your body. Viruses, bacteria, fungi, and parasites are the most frequent culprits. Typically, infectious diseases are passed from one person to another, through tainted food or drink, and through insect bites. Infectious diseases can range in severity from very mild to very serious. Infectious disease-causing pathogens include viruses, bacteria, fungi, parasites, and, in rare cases, prions. Infectious diseases can be contracted from other people, insect bites, contaminated food, drink, or soil. Infectious diseases include the flu, measles, HIV, strep throat, COVID-19, and salmonella. Examples of noninfectious diseases include cancer, diabetes, congestive heart failure, and Alzheimer's disease. It is important to note that many illnesses have complex and multifactorial causes, and proper diagnosis and treatment often require a comprehensive approach.
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type a individuals, as compared to type b individuals, were found to be 7 times more likely to develop heart disease because:
Type a individuals, as compared to type b individuals, were found to be 7 times more likely to develop heart disease because of their ambitious and competitive nature
What is Type a and Type b personality tests?
Two different personality types are described by the type A and type B personality theory. According to this theory, Type A personalities are those who are more competitive, well-organized, ambitious, impatient, very time-conscious, or aggressive, whereas Type B personalities are more relaxed, "receptive," less "neurotic," and "frantic."
The characteristics of the type A personality include a constant sense of being pressed for time and a fierce sense of competition. The common traits of Type A personalities include higher levels of stress, a disdain for failure, and a difficult time stopping work even after achieving goals.
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A textbook weighs 3.2 lbs. How much is that in grams?
Answer:
1451.5 grams
Explanation:
Answer:
1451.5 grams :)
Explanation:
Who are some black scientists?
Some other famous black scientists like:
Dr. Marshall Shepherd, meteorologist and climatologist.Dr. Shirley Ann Jackson, physicist.Dr. Ayanna Howard, robot engineer.Dr. Beth A. Brown, astrophysicist. Dr. Christine Darden, aerospace engineer. ➥ I hope I have helped you, greetings! Atte: ღTheGirlSadღDr. Marshall Shepherd, meteorologist and climatologist.
Dr. Shirley Ann Jackson, physicist.
Dr. Ayanna Howard, robot engineer.
Dr. Beth A. Brown, astrophysicist.
Dr. Christine Darden, aerospace engineer.
what pollutant that is put directly into the air by human activity
Answer: Carbon Dioxide (CO2) ????????
Explanation: Please paste the question for a better answer
Muscle tone and strength usually begin to show signs of decline around the age of _____
Using a complete sentence describe a eukaryotic cell
PLEASE ANSWER ASAPPPP
Answer:
A eukaryotic cell has a nucleus.
Explanation:
What appears on day 16, a small sausage-shaped diverticulum (outpouching) from caudal wall of umbilical vesicle (yolk sac) which extends into connecting stalk ?
On day 16, a small sausage-shaped diverticulum called the allantois appears. This outpouching emerges from the caudal wall of the umbilical vesicle (yolk sac) and extends into the connecting stalk.
During embryonic development, the allantois is an important structure that plays a crucial role in the formation of the umbilical cord and placenta. It serves as a site for waste disposal and gas exchange, facilitating the transfer of respiratory gases and metabolic waste products between the developing embryo and the maternal circulation. The allantois eventually fuses with the chorion (outer fetal membrane) to form the chorioallantoic membrane, which contributes to the formation of the placenta. This complex structure supports the exchange of nutrients, gases, and waste products between the developing embryo and the mother, ensuring proper nourishment and oxygenation during gestation.
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What occurs during glycolysis?
Answer:
Glycolysis is the process in which one glucose molecule is broken down to form two molecules of pyruvic acid science my fav class btw thats how i know it
Explanation:
why is a hydrolysis an important reaction type in regards to atp?
Because it is the reaction that releases the energy held within the ATP molecule, hydrolysis is a crucial sort of reaction in the context of ATP (adenosine triphosphate).
In a chemical reaction called hydrolysis, a covalent bond is broken by the addition of water molecules. This sort of reaction is crucial for the disintegration of complex molecules into their component parts, such as proteins, carbohydrates, and nucleic acids. Energy-rich molecules like ATP can release energy during hydrolysis processes. Enzymes catalyse hydrolysis reactions in biological systems, which increases the rate of the reaction without consuming the enzymes themselves. Several biological functions, such as digestion, biosynthesis, and energy production, depend on hydrolysis reactions. Overall, hydrolysis is a fundamental sort of reaction that is important for preserving the shape and functionality of biological molecules.
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During the carbon cycle, animals and plants add carbon dioxide to the atmosphere through cellular respiration, and plants remove carbon dioxide through _______________________.
A. Photosynthesis
B. Transpiration
C. Nitrification
Answer: A
Explanation: subscribe to coryshyper
Answer:
A. Photosynthesis
Explanation:
Which of these is not related to endoplasmic reticulum?
a)It behaves as transport channel for proteins between nucleus and cytoplasm
b)It transports materials between various regions in cytoplasm
c)It can be the site of energy generation
d)It can be the site for some biochemical activities of the cell
The statement that does not relate to endoplasmic reticulum is as follows: it can be the site of energy generation (option C).
What is endoplasmic reticulum?Endoplasmic reticulum in cytology is a network of membranes within the cytoplasm of cells, where proteins and lipids are synthesized.
The endoplasmic reticulum occurs in two forms;
A type with a ribosome-studded surface called rough ERAnother with a smooth surface called smooth ERSome of the functions of the ER include;
It behaves as transport channel for proteins between nucleus and cytoplasmIt transports materials between various regions in cytoplasmIt can be the site for some biochemical activities of the cellLearn more about endoplasmic reticulum at: https://brainly.com/question/13118914
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A continuous, smooth contraction of muscle in which twitches are fully fused is referred to as _________.
Hi! A continuous, smooth contraction of muscle in which twitches are fully fused is referred to as "tetanus". Your statement is mostly correct. A continuous, smooth contraction of muscle in which twitches are fully fused is indeed referred to as tetanus.
However, it's important to note that tetanus can refer to two distinct phenomena in muscle physiology:
Tetanus is a type of sustained contraction that occurs when a muscle is stimulated repeatedly at a high frequency, such that the individual twitches become fused together and the muscle remains contracted. This type of tetanus is also called complete or fused tetanus, and it results in a smooth, sustained contraction of the muscle.
Tetanus is also the name of a serious bacterial infection caused by the bacterium Clostridium tetani. This infection affects the nervous system and can cause muscle stiffness and spasms, including a type of muscle contraction called tetanic spasms.
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describe the crossed white and black hair as seen under the LPO.
Under a microscope, human hair resembles animal fur. It resembles a tube with keratin (pigment) inside that is scale-covered on the outside.
These scales appear smooth and shiny if they are growing firmly. Under a microscope, dull and unmanageable hair appears different because the scales are jumbled and disorganized. Depending on what stage of the cycle it is in, hair typically has a highly pigmented shaft with a diameter that ranges from 70 m to more than 100 m.The portion of the hair that remains inside the follicle beneath the skin is known as the root, while the portion that sticks out above the skin (on the head, arms, etc.) is known as the shaft. The hair root's base is stated to as hair bulb.
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a retailer considering fluorescent lighting versus led lighting, solar power versus standard electricity, and local grasses versus typical grasses for landscaping would most likely be considering which design objective?
The retailer most likely be considering to control costs.
What is solar power?Solar power refers to the conversion of energy from sunlight into electricity, either directly using photovoltaics (PV) or indirectly using concentrated solar power, or a combination. Photovoltaic cells convert light into an electric current through photovoltaic effect. Concentrated solar power systems require lenses or mirrors and solar tracking systems to focus on a large area of sunlight to a hot spot, to drive a steam turbine.
Solar power function by converting energy from the sun into power. There are two forms of energy generated – electricity and heat. Both are generated using solar panels, which range in size from residential rooftops to ‘solar farms’ stretching over acres of rural land.
Solar energy is a renewable and unlimited source of energy that does not emit harmful greenhouse gases. As long as the sun shines, energy is released. The carbon footprint of solar panels is already quite low, as they last over 25 years without compromising efficiency. Also, the materials used in panels are increasingly recycled, further reducing our carbon footprint.
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In some cells , there are two types of endoplasmic reticulums ( ER ) known as the smooth ER and the rough ER as seen in the image below . Many illustrations of a cell show various locations for organelles like the Mitochondria , Golgi apparatus , or Vacuoles however when drawing the rough ER , the location is always the same .
How is the location of the rough ER related to its overall purpose for the cell ?
A)By being closely attached to the smooth ER the rough ER can easily sort , synthesize , and package lipids for the cell
B)The rough ER used as an extra layer of protection around the nucleus to prevent ribosomos from entering the nucleus
C)With ribosomes attached to its surface , the rough ER is near the nucleus which holds the instructions for making proteins
D)Being close to the nucleus helps the rough ER receive better direction on producing energy in the form of ATP for the cell
Answer:
C
Explanation:
A is wrong: making lipids is the SMOOTH ER's job, not the rough er
B is wrong: protecting the nucleus is the nuclear membrane's job
D is wrong: Producing ATP is mainly the mitochondria's job
C is right because the ribosome's main job is making proteins, and those instructions come from the nucleus, so there needs to be a close access.
There are 25 elements found in living things. How many of these elements are found in some organisms but not all?
Answer:
Six
Explanation:
All living things have six basic elements in common: carbon, hydrogen, nitrogen, oxygen, phosphorus, and sulfur, abbreviated as CHNOPS.
The number elements that are found in some organisms but not all is 19 in number. This is further explained below.
What are elements?Generally, elements are simply defined as compounds that cannot be broken down into smaller chemicals using standard chemical procedures.
In conclusion, Some of the elements found in living things are
Oxygen (O)Carbon (C)Hydrogen (H)Nitrogen (N)Read more about elements atoms
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What is the job of the cell membrane
Answer:
regulates the transport of materials entering and exiting the cell. In simpler terms, allows which materials can enter or exit the cell.
What molecule accepts and then carries the electrons produced when water is split?
O FAD+
O NAD+
O G3P
O ATP
Answer:
Chapter 9

B) NAD+ has more chemical energy than NADH. ... 7) The ATP made during glycolysis is generated by ... 8) The oxygen consumed during cellular respiration is involved directly in which ...
is more electron
The article "Human Impact on the Galapagos Islands" and the video "Long Line Fishing Threatens Wildlife of the Galapagos Islands” both discuss overfishing. Which source provides more information on how to fix the overfishing problem? What solutions does this source provide?
Answer:
The first one, "Human Impact on the Galapogos islands", the solutions it provides wont only help the islands, but help everywhere, and that there are much safer ways
Explanation:
Answer: Human Impact: While this unforgiving and uncontrollable force of nature has had a destructive impact on the Galapagos, many of the environmental issues facing the Galapagos originate from a potentially controllable source human beings. The presence of people in the Islands has two sources: migration from the mainland and tourism.
Explanation:
The bacterial flagellum moves _______. Multiple Choice by rotation that is powered by ATP by rotation that is powered by the proton motive force in a wave-like fashion that is powered by ATP in a wave-like fashion that is powered by the proton motive force in a wave-like fashion that is powered by enzymes
Answer:by rotation that is powered by the motive force
Explanation:
Scientists have produced a hybrid plant that was the result of the fertilization of gametes between one plant with a diploid number of 24 and another with a diploid number of 20. How many chromosomes would the diploid hybrid plant have?.
The diploid hybrid plant will have 22 chromosomes.
During fertilization, chromosomes of both parent plants are taken equally. First plant has 24 diploid chromosome. Second plant has 20 diploid chromosomes. Since fertilization involves the union of gametes from both parent plants, 12 diploid chromosomes are taken from the first plant while 10 diploid chromosomes are gotten from the second plant, hence, the hybrid plant will be made up of 22 diploid chromosomes.
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Biomagnification is... concentration of a contaminant stays the same as you move to higher trophic concentration of a contaminant increases as you move to higher trophic level concentration of a contaminant increases as an individual grows concentration of a contaminant stays the same as an individual grows
Answer: Biomagnification refers to the process by which the concentration of a contaminant increases as you move to higher trophic levels in a food chain or food web. In other words, as organisms consume other organisms, the contaminants present in the prey accumulate and become more concentrated in the bodies of the predators.
To understand this process, let's consider an example involving a water ecosystem. Suppose a pollutant is released into the water, such as a pesticide or heavy metal. The primary producers, such as algae or aquatic plants, absorb small amounts of the contaminant from the water. As herbivorous organisms consume these primary producers, they ingest the contaminants along with their food.
Since the contaminant is not easily broken down or eliminated from the organisms' bodies, it accumulates over time. As a result, the concentration of the contaminant becomes higher in the herbivores than in the primary producers. Now, when carnivorous organisms consume the herbivores, they not only accumulate the contaminant from their own food but also from all the prey they have consumed. This leads to an even higher concentration of the contaminant in the carnivores.
Therefore, biomagnification describes the phenomenon where the concentration of a contaminant increases significantly as you move up the food chain or trophic levels. The highest concentration of contaminants is often found in top predators, such as large fish, birds of prey, or mammals, which can have adverse effects on their health and reproductive capabilities.
It's important to note that biomagnification primarily occurs for persistent and non-biodegradable contaminants that cannot be easily metabolized or excreted by organisms. These contaminants are often lipophilic (fat-soluble), which allows them to accumulate in fatty tissues and remain in the organism's body for long periods, leading to biomagnification.
Explanation:
if glucose is in higher concentration outside the cell than inside, but the plasma membrane and other surface layers of the cell do not allow glucose to pass through, which is the most likely type of transport for glucose? and Why?
a simple diffusion
b Osmosis
c Facilitated diffusion via a gated channel
d Facilitated diffusion via an aquaporin
e Facilitated diffusion via an ion channel
Answer:
a
Explanation:
ok ok as you were saying you said it is hard for the glucose concentration in the body this also had to go out so but the plasma membranes and other surfaces layers cell layers of the layer of the soil do not allow to close glucose to pass through which is most likely type of transport type of transport for kids and you still said why it is because it gives energy to the body
how you feel about climate change?
Tell me how you feel on one page
Answer:
I feel negative against Climate Change.
Explanation:
Climate Change is trapping Co2 into the earth's atmosphere, raising the temperature of the Earth. Because of that, it's melting the Antarctic and killing millions of animals. Not only that, but it's also causing droughts, and usually droughts are the cause(s) of famine which kill millions of not only animals, but humans too. Therefore, I feel negative emotions about Climate Change.
A pesticide was introduced on a farm to kill insects eating the corn crop. The farmer realized that in week 1 after using the pesticide, most of the insects were killed but by week 3 the population of insects increased and the pesticide no longer kills the insects. What is the reason for that observation?
Hello,
The observation that the pesticide was effective in killing insects in week 1 but became ineffective by week 3 is likely due to the development of resistance in the insect population.
When a pesticide is introduced, it may be very effective in killing a large proportion of the target insects. However, some insects may have genetic variations that allow them to survive exposure to the pesticide. These insects then go on to reproduce, passing on the genes that allowed them to survive to their offspring. Over time, the proportion of insects in the population with these resistant genes increases, making the population as a whole less susceptible to the pesticide. This is known as pesticide resistance.
Insects can develop resistance to pesticides through a variety of mechanisms, including mutations that make them less susceptible to the toxic effects of the pesticide, increased detoxification of the pesticide by enzymes in their bodies, or changes in their behavior that allow them to avoid exposure to the pesticide.
To combat pesticide resistance, farmers may need to use different pesticides or alternative methods of pest control. They may also need to use pesticides in a targeted and judicious manner, rotating different types of pesticides to avoid overuse of any one type and minimize the selection pressure for resistance.
identify iron by its properties
Iron is a lustrous, ductile, malleable, silver-gray metal (group VIII of the periodic table). It is known to exist in four distinct crystalline forms. Iron rusts in damp air, but not in dry air. It dissolves readily in dilute acids.
Standard potential: - o.44 V (Fe2+/ Fe); 0.77 V ...
Density: 7.8 g.cm-3 at 20°C
Melting point: 1536 °C
Ionic radius: 0.076 nm (+2); 0.064 nm (+3)
Why do fish need to eat other organisms?
O A. to get energy
O B. to get oxygen
O c. to remove wastes
O D. to escape predators
The correct answer is A. To get energy.
They eat other organisms because they need food, and food is considered energy because it allows the fish to function more efficiently.
‼️WILL LIST BRAINLIEST‼️define prokaryote
Answer:
Microscopic single-celled organism that has neither a distinct nucleus with a membrane nor other specialized organelles. Prokaryotes include the bacteria and cyanobacteria.
Hope this helps! -xoxo
simple, not complex/ no nucleus
7. Since the allele for color blindness is located on the X chromosome, color
blindness
1 cannot be inherited
2 occurs only in adults
3 is sex-linked
4 none of the above
(HELP ME PLEASEEE!)
Hemophilia A and red-green color blindness are examples of X-linked recessive diseases. Color blindness to red and green. Red-green color blindness prevents a person from recognizing red and green hues (usually blue-green). Otherwise, though, they can see normally. Thus, option C is correct.
What allele for color blindness located on X chromosome?Females have two X chromosomes, while males have one X and one Y chromosome. The X chromosome is where the genes that might cause red-green color blindness are handed down. Men are more likely than women to have red-green color blindness, since it is X-chromosom-inherited.
One of the most prevalent genetic (inherited) disorders in the world is color blindness, which means it is typically inherited from your parents.
Therefore, the allele for color blindness is located on the X chromosome, color blindness is sex-linked.
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the fluid component of the blood that suspends all of the cellular constituents and is rich in electrolytes and proteins is the .
The fluid component of the blood that suspends all of the cellular constituents and is rich in electrolytes and proteins is the plasma.
Plasma is a pale yellow liquid component of blood that suspends blood cells and it is composed of 92% water, 7% proteins, and less than 1% other substances, such as electrolytes, nutrients, gases, and wastes.
Plasma is made up of approximately 92 percent water and 8 percent proteins, including albumin, globulins, and fibrinogen. It also contains electrolytes, nutrients, gases, and waste products.
The composition of plasma varies depending on the person's overall health and well-being. Plasma is the most abundant substance in blood and has a variety of essential functions, including transporting nutrients, hormones, and waste products throughout the body.
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