The glucose is then turned back into carbon dioxide, which is used in photosynthesis. While water is broken down to form oxygen during photosynthesis, the oxygen will be combined with hydrogen to form water. So no water does not get recycled only glucose is.
Photos (left to right) by Mehmet Karatay, Jens Buurgaard Nielsen, Furryscaly, and Walter Siegmund
What would occur if the snake population is removed from the ecosystem pictured above?
the hawk population increases
the mouse population increases
the leaf population increases
the mouse population is not affected
The mouse population increases. Snakes eat mice, so fewer snakes would mean more mice.
b.the mouse population increases
Teeth patterns in animals and thorns in plants are examples of characteristics which a taxonomist might observe for keying. True or False
The answer is true.
The process by witch gases trap heat near the earth is known as
Its called the greenhouse effect
What would happen to a cell if it had no access to oxygen for extended periods of time? *
Discuss the results of your research about the roles of nature versus nurture on human health. Share your opinion about how an individual’s genetic makeup interacts with nutrition, smoking, drug use, or exercise to affect the quality and length of life. Back up your opinion with facts from your research. Cite at least three sources to support your conclusions. Respond to at least two other student posts.
ONE OF THE OLDEST ARGUMENTS IN THE HISTORY OF PSYCHOLOGY IN THE NATURE VERSES NURTURE DEBATE EACH OTHER THESE SIDES HAVE GOOD POINTS THAT IT IS REALLY HARD TO DECIDE WHETHER A PERSON'S DEVELOPMENT IS PREDISPOSED IN HIS/HER DNA, OR A MAJORITY OF ITS INFLUENCED BY THIS LIFE EXPERIENCES AND HIS/HER ENVIRONMENT .........
What organelle functions primarily in the synthesis of protein
THE national average or per capital ecological footprint is equal to a nations ecological footprint divided by its population. All but one tactic will help reduce our national average
Answer:
D. Drink water from plastic bottles.
Explanation:
Was on USATestPrep
The replacement stage of B by stage C and the replacement of stage C by stage D in a particular location is known as A exploitation B covercropping C ecological succession D punctuated equilibrium
Its C i did the test im sure
Did you write several paragraphs describing the full carbon cycle in detail? Did you discuss all
components of your poster in this paper?
Did you describe the exchange of carbon through carbon-containing compounds between the
organism and the environment?
Did you describe the contributions of photosynthesis and cellular respiration within and among
the four spheres? Did you discuss how carbon enters and leaves each of the four spheres
and in what forms?
Did you discuss the role of carbon storage in organisms?
Did you explain how a model of the carbon cycle is different from the actual cycling of carbon
in an ecosystem?
Did you double check for correct sentence structure, punctuation, grammar, and spelling in your
The carbon cycle outlines the circulation of carbon through Earth's spheres via processes like photosynthesis and respiration. The cycle's model, while informative, does not capture every minor aspect. When writing about this, all aspects should be discussed, from the function of each component to the ways carbon enters and leaves each sphere.
Explanation:The carbon cycle is a process by which carbon moves through Earth's four spheres: the lithosphere, hydrosphere, biosphere, and atmosphere. Carbon enters the atmosphere primarily through the process of respiration, in the form of carbon dioxide. Plants uptake carbon dioxide during photosynthesis, converting it into organic compounds, which in return passes to animals when they consume these plants. Besides, carbon is stored in several ways, one of them being geologically, in the form of fossil fuels, and biologically, within the bodies of organisms.
The carbon cycle model captures this exchange between the organisms and the environment, illuminating the continuous transition of carbon from one form to another. However, the model is a simplification and doesn't capture every subtlety of the actual cycling of carbon in an ecosystem. For instance, it may not encompass all the smaller processes like volcanic activities or coastal erosion.
Reflecting on the components presented in a poster, each component should tie back to the function it plays in the carbon cycle, whether that involves processing, storage, or transfer of carbon. Also, a discussion should be made on how carbon enters and leaves each sphere, including the forms it takes in each sphere.
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The carbon cycle comprises the exchange of carbon compounds between organisms and their environment, key processes of which are photosynthesis and cellular respiration. The primary storages of carbon are in the biosphere, the atmosphere, oceans, and sediments. A model of the carbon cycle helps contextualize this process, but might not capture all of its complexity.
Explanation:The poster to which you're referring appears to be a detailed display of the carbon cycle. The carbon cycle is composed of a series of processes where carbon compounds are interconverted in the environment. Carbon enters these ecosystems via photosynthesis in the biosphere, becoming carbon dioxide and returning to the atmosphere through cellular respiration. There are four main carbon reservoirs on Earth we can concentrate on: the atmosphere, terrestrial biosphere, oceans and sediments, each with different ways of storing carbon.
The carbon cycle comprises exchanges through carbon-containing compounds between the organism and the environment, such as the intake of carbon dioxide by plants and the exhaling of carbon dioxide by animals. Photosynthesis and cellular respiration are central to the carbon cycle. Photosynthesizing plants take carbon dioxide from the atmosphere and turn it into organic compounds, while respiration returns carbon dioxide to the atmosphere.
Carbon storage in organisms is an essential part of this cycle. This is done through methods like sequestration, where carbon dioxide is absorbed by organisms like trees and stored in their tissues. It's important to remember also that a conceptual model of the carbon cycle might not account for all nuances present in nature. However, it provides a simplified understanding of these complex interactions.
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Suppose a bulldozer is being hauled at 50 km/h to a construction site on the back of a flatbed truck. From which reference point would the bulldozer not appear to be moving? a. the road b. a traffic light c. the truck driver d. a roadside tree
Answer:
The correct answer is c. the truck driver.
Any object is said to be the motion if its relative distance with respect to a reference point is keep on changing.
For example, a kid travelling through a train might seem to be stationary with respect to the seat. However, he would seem to be moving if we see him in respect to the railway track outside the train.
A reference point is anything (place, person or any object) used to determine if something or someone is in motion.
In the given situation, the distance between truck driver and bulldozer will remain the same throughout the journey as it is being placed on the back of the truck. Hence, the correct answer is truck driver.
The reference point where the bulldozer does not appear to be moving is:
C. the truck driver.
According to the given question, we can see that there is a bulldozer which is moving at a speed of 50km/h to the back of a flatbed truck.
As a result of this, we can see that the truck driver is in front of the bulldozer and as the object is in motion, then the reference point would keep changing.
The reason why the reference point of the driver would appear to be stationary is that he is placed at the back of the truck.
Therefore, the correct answer is option C
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Why could galileo be considered the father of modern science?
Galileo could be considered the father of modern science for several reasons:
1. Development of the scientific method: Galileo's work laid the foundation for the scientific method, which is still used today. He emphasized the importance of conducting experiments and making observations to test hypotheses, rather than relying solely on philosophical or religious beliefs.
2. Advancement of astronomy: Galileo made significant discoveries in the field of astronomy. By using a telescope to observe celestial bodies, he provided evidence to support the heliocentric model of the solar system proposed by Copernicus. His observations of the moons of Jupiter and the phases of Venus challenged the prevailing geocentric view.
3. Promotion of empirical evidence: Galileo emphasized the importance of empirical evidence in scientific inquiry. He advocated for the use of experimentation and observation to gather data and draw conclusions. This approach shifted the focus from relying solely on theoretical reasoning to actively testing hypotheses.
4. Popularization of scientific ideas: Galileo's works, such as "Dialogue Concerning the Two Chief World Systems," played a significant role in popularizing scientific ideas among the general public. By writing in Italian instead of Latin, he made scientific knowledge more accessible to a wider audience, which helped to spread scientific thinking and knowledge.
5. Influence on future scientists: Galileo's contributions to science inspired future generations of scientists. His methods and ideas influenced notable figures like Isaac Newton, who built upon Galileo's work to develop the laws of motion and universal gravitation.
In summary, Galileo's role in developing the scientific method, advancing astronomy, promoting empirical evidence, popularizing scientific ideas, and inspiring future scientists make him a key figure in the emergence of modern science.
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A botanist discovers a plant growing in her yard. It does not have leaves or roots, but it does have vascular tissue There are yellow sporangia growing on the green, branching stems. Which of the following is the most logical conclusion about the classification of this plant?
It is a whisk fern, and belongs to the phylum Psilophyta.
It is a liverwort, and belongs to the phylum Hepatophyta.
It is a hornwort, and belongs to the phylum Anthocerophyta.
It is a horsetail, and belongs to the phylum Sphenophyta.
Answer:
The correct answer would be - whisk fern that belongs to the phylum psilophyta.
Explanation:
The whisk fern belongs to the division psilophyta. It is the lower vascular fern or primitive fern. It has vascular tissue or water conducting tissue but they lack true leaves and roots.
The water mineral absorption occurs or initiates in the root like stem called rhizome. Photosynthesis process takes place in the aerial part of the plant. Rhizome receives water from fungus through a mycorrhizal association.
Thus, the correct answer is option C.
How do animals return water to their environment from their bodies?
Animals excrete water by respiration and by passing urine.
What statement holds true for the amount of matter in a successful food web? A) Amount of matter contained in the producers and consumers should be equal. B) Amount of matter produced by the producers should be more than that of the consumers. C) Amount of matter contained in the consumers should be more than that of the producers. D) Amount of matter produced by the producers should be negligible when compared to the consumers.
Answer: B. Amount of matter produced by the producers should be more than that of the consumers.
Food web defines a interconnection between different food chains and transfer of energy at each trophic level. According to the ten percent law 10% energy is lost from each trophic level. At the first trophic level there are producers. Producers occupy the only one level in the trophic levels the rest is occupied by consumers this shows the category of consumer is more than producer. Therefore, for successful food web food availability should be more at initial trophic level hence amount of matter produced by the producers should be more than that of the consumer.
Amount of matter produced by the producers should be more than that of the consumers because matter and energy are lost with each successive step of the food chain. Therefore, for a food web to be functional and successful, the total amount matter produced by the producers be more than that of the consumers they support.
If a physician tells you that Staphylococcus aureus can cause an asymptomatic infection, what effect will that infection have on a patient?
The patient will feel no symptoms from that infection.
Red bumps on skin and blisters are usually observed on skin in S.aureus infection.
What is Staphylococcus aureus?Staphylococcus aureus is the sphere shaped bacteria. It stains positively with Gram's stain.
Staphylococcus aureus is a pathogenic bacteria residing primarily in the human nares. It is mostly asymptomatic.
Staphylococcus aureus is responsible for causing abscess in the skin and tissues in humans when it migrates to blood stream.
It can also lead to pneumonia and other severe infections in the body if not managed to treat on time.
MRSA (Methicillin resistant Staphylococcus aureus) infection is one such in which the person does not show any visible signs and symptoms for the infection.
Such asymptomatic people are able to pass the infection to the healthy individuals. They are regarded as the carriers of the infection.
Staphylococcus aureus infection can be diagnosed through special culture techniques. Suitable antibiotics are prescribed to treat S. aureus infection.
Thus, Staphylococcus aureus is a serious disease causing bacteria in humans.
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Eye color is a polygenetic trait that involves multiple genes and alleles. How many genes and alleles are involved in determining eye color?
1.
4 genes and 8 alleles
2.
8 genes and 4 alleles
3.
1 gene and 1 allele
4.
2 genes and 2 alleles
_____ increases the frequency of adaptive mutations in a population over time a. Fitness b. Natural selection c. Artificial selection d. Adaptive radiation
For survival a hummingbird uses a considerable amount of energy . This energy most directly results from the life activity of ?
This energy most directly results from the life activity of respiration.
The hummingbirds have very high energy expenditure (have the highest oxygen requirements of all vertebrae) with a fast heart rate, very fast wing beats and sustained hovering. So the hummingbird is nearly always on the edge of starvation, needing to take in more nectar than its body weight each day.
The respiratory system of these birds is highly adapted for the high oxygen needs. So, the muscles of the hummingbird cause pressure changes within the air sacs. As a result, more oxygen can enter the respiratory system. Also, they have the highest density of red blood cells which allows them to rise heart beat to around 500 breaths per minute during flight.
Answer: Cellular respiration
Explanation:
The process by which the living organism derive energy for the various metabolic processes of the body is known as cellular respiration.
This process allows the body to obtain energy from the food that they eat. Humming bird usually feeds on the nectar of flowers as a source of energy.
The cellular respiration is the process by which this food will be transformed into adenosine triphosphate which is a high energy molecule required for various processes of the body.
A well is a structure created to obtain water from deep in the geosphere. From which stage of the water cycle does the well obtain water?
Wells access groundwater, which is part of the water cycle's groundwater storage stage. They must be deep enough to reach the aquifers and are sometimes used with observation wells to monitor aquifer health. Pumping water creates a cone of depression around the well, which allows water to flow towards it.
A well is a structure created to access water from beneath the Earth's surface, tapping into what we call groundwater. The water obtained through wells is part of the water cycle, specifically from the groundwater storage stage. When a well is dug or drilled, it reaches into aquifers, which are the underground layers of water-bearing rock or materials such as gravel, sand, silt, or clay. Groundwater contained in these aquifers is replenished by precipitation that infiltrates the ground, a process known as recharge.
To maintain a reliable water supply and monitor the health of an aquifer, wells may be used in conjunction with observation wells. These are important for observing short-term and long-term changes in water levels, which might indicate the health status of an aquifer. Wells are essential in areas without natural springs, as they provide a means of extracting water that otherwise would remain inaccessible within the geosphere.
While drilling, wells might pass through various aquifers and must be cased to prevent leakage and contamination. Pumping water from the well creates a cone of depression in the water table around the well, which allows water from the surrounding aquifer to flow towards the pump. Excessive pumping, however, can cause nearby wells to run dry or deplete the aquifer, especially during periods of prolonged drought or overuse.
Answer:
groundwater
Explanation:
When precipitation becomes groundwater, wells take the water stored in the ground and utilize it in the well space.
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Based upon the molecular data in the table below which speices is most closely related to humans?
1.
Bird
2.
Frog
3.
Shark
4.
Mouse
5.
Horse
which layer of earth acts as a very effective “insulator,” because it’s made of rock? Mantle crust outer core inner core
Correct answer: Mantle
Earth is composed of three layer called as crust, mantle,core. Crust is the outer layer of the earth and mantle is the middle layer and core is known as the inner layer of the earth surface.
Mantle is a layer which found in between the crust and core, it is made up of silicate rocky shell with a thickness of 2886 kilometers. It covers the 84% of the earth's volume.
The mantle layer of earth encompasses core layer of the earth which is made up of iron and nickel which covers 15% of the earth's volume. Mantle layer of the earth trap the heat which is being generated inside the core layer of the earth and act as a insulator.
Earlier in the passage this question was provided for, you should be able to find the fallowing text: "The mantle, being made of rock, acts as a very effective insulator."
Answer: Mantle
Why are populations with high levels of genetic diversity more stable than populations with low levels of genetic diversity?
A. Populations with high levels of genetic diversity are more likely to have individuals with traits that help them survive if conditions change.
B. Populations with high levels of genetic diversity are less likely to interbreed with other populations.
C. Populations with high levels of genetic diversity are less likely to have high levels of variation in alleles.
D. Populations with high levels of genetic diversity are more likely to have individuals that will undergo natural selection if conditions change.
A. Populations with high levels of genetic diversity are more likely to have individuals with traits that help them survive if conditions change.
Populations with high levels of genetic diversity are more likely to have individuals with traits that help them survive if conditions change. The correct option is A.
What is genetic diversity?The range of different inherited traits within a species is referred to as genetic diversity.
There probably be various individuals with a wide range of different traits in a species with high genetic diversity. For a population to adapt to changing environments, genetic diversity is essential.
Genetic diversity allows populations to adapt to changing environments. More variation increases the likelihood that some individuals in a population will have allele variations that are suited to the environment.
Those people are more likely to survive and have children with that allele.
Individuals with traits that help them survive if conditions change are more likely to exist in populations with high levels of genetic diversity.
Thus, the correct option is A.
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A trait is a feature or quality of an organism. All organisms have a unique set of traits that they inherit from their parents. Each parent supplies one half of the __________ needed to determine the traits of their offspring. A) centromeres IN) chromosomes C) karyotypes D) nuclei
each parent supplies one half of the ( chromosomes)
A trait is a feature or quality of an organism. All organisms have a unique set of traits that they inherit from their parents. Each parent supplies one half of the chromosomes needed.
Each person inherits 23 chromosomes from each parent and get the other from the next parent.
3. What event within the food chain might lead to the graph shown below?
A. A disease in the population of rabbits.
B. A disease in the population of snakes.
C. A disease in the population of hawks.
D. It is impossible to tell which of the above occurred.
A. A disease in the population of rabbits. The rabbits dying off would mean that the grass population would increase because there are less rabbits to eat it. The snake and hawk population drop because they are both predators of rabbits, meaning that they eat rabbits. Since the rabbits are dying off, the snakes and hawks have less food source so the limit on how many snakes and hawks that can be sustained by eating the rabbits decreases.
An organism which is capable of moving around its environment is considered to be: a plant an animal possibly both not diagnostic
The correct answer is an animal.
The locomotion of an animal refers to any of the methods or a variety of movements, which animals use to wander from one place to another. Some locomotion modes are self-propelled like swimming, running, hopping, and flying, gliding, and soaring, while others are passive locomotion like kiting, sailing and rolling.
Animals move for numerous reasons like to find a mate, food, and a suitable microhabitat, or to escape from predators. For various animals, the tendency to move is important for survival, and as a consequence natural selection has evolved the locomotion mechanisms and methods used by moving organisms.
Answer:
The answer is an animal.
Which neuromarketing technique looks for active areas in the brain by measuring the amount of oxygenated blood flowing through the body?
Functional magnetic resonance imaging (fMRI) is the neuromarketing technique that looks for active areas in the brain by measuring the amount of oxygenated blood flowing through the body.
Functional magnetic resonance imaging (fMRI) is a noninvasive technique for measuring the activities of the brain. This technique is used to observe the brain’s functional anatomy as it reveals the parts of the brain that are involved in a certain mental process. fMRI functions by using magnetic resonance imaging to measure the small changes in blood oxygenation and flow that take place as a result of activities of nerve cells in the active areas of the brain.
The body monitors the levels of oxygen in the blood to regulate breathing. Isabel is running in a marathon and is near the finish line. She feels out of breath. How will her nervous system work to generate a reaction? Arrange the tiles in chronological order.sensory neurons generate an impulse.the brain sends signals throughmotor neurons.sensory receptors in the arteries detect low oxygen levels.the central nervous system relays animpulse to certain brain regions.isabel's breathing rate increases.
The path way to regulate the low oxygen level in blood is;
Sensory receptors in the arteries detect low oxygen levels: First of all receptors near blood vessels detect low oxygen level.Sensory neurons generate an impulse: Then neurons generate the impulse of low oxygen level which moves to central nervous system.The central nervous system relays an impulse to certain brain regions: After reaching the impulse to central nervous system, another impulse is generated which is sent to corresponding regions of brain.The brain sends signals through motor neurons: A impulse of recovery is sent to lungs via motor neurons.Isabel's breathing rate increases: Blood in lungs get more oxygen by increasing breathing rate.Isabel's nervous system detects low oxygen levels in her blood through sensory receptors in her arteries, which then triggers an impulse relayed to the brain via sensory neurons. Subsequently, the brain sends signals through motor neurons, leading to an increase in Isabel's breathing rate as a reaction to the low oxygen levels.
What happens when Isabel's nervous system detects low oxygenWhen Isabel is near the finish line of a marathon and feeling out of breath, her body's intricate nervous system steps into action to regulate her breathing. Specialized sensory receptors in her arteries detect low oxygen levels in her blood, signaling the need for increased oxygen intake. Sensory neurons transmit this information as electrical impulses to the central nervous system (CNS), specifically certain brain regions responsible for regulating respiration.
Upon receiving the sensory input, the CNS processes the information and sends signals through motor neurons to the muscles involved in breathing. These motor neurons stimulate the respiratory muscles, such as the diaphragm and intercostal muscles, prompting Isabel's breathing rate to increase. This enhanced respiration aims to replenish the oxygen supply to her body and ensure she can meet the demands of her physical activity, helping her finish the marathon strong.
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What type of bonding is responsible for water's' ability to absorb some much heat?
The type of bonding responsible is Hydrogen Bonding
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How do plate tectonics explain the formation of metamorphic rocks?
What is the difference between mechanical weathering and chemical weathering?
Question 1
This is a fascinating topic. Tectonic plates can be thought of something that is an enlarged form of a kitchen plate. When two of these huge plates meet, one forces another to go lower into the earth's mantle (a below surface geologic location made of rocks and molten (soupy or liquid) rocks.
This process of one plate forcing another to go lower is called subduction. The rocks grind away on each other. They are subjected to 6 different forces, the most common of which are friction, compression and folding. Add heat and you get metamorphic rock. It's like a kitchen recipe but on a much bigger scale. That's the cook's tour of Metamorphic rock.
Question 2
Mechanical weathering is a process similar to what is written above. If the sea pounds against the shore, eventually the rock will break down. Where I live, if water gets into a rock's cracks, when it freezes and the ice expands it will eventually break the rock apart. In short, big rocks become little pebbles.
Chemical weathering: water and minerals combine to react with the minerals contained in rocks. I'm not well versed in this area, so I'm not sure I could give you a good example other than this one. One of the biproducts of refining oil is sulfur dioxide, especially with Alberta oil which is very "heavy" and tar like. This combines with water to produce H2SO3 which is not an extremely strong acid, but it is still an acid. It can react with the minerals in a rock and you have the break down of a rock.
Earth is not at the center of the moon’s orbit. Describe the exact position of the Earth in the orbit of the moon.
Earth is not at the center of the moon's orbit. Objects in space do not orbit in circles. The orbit in ellipses, or, ovals. Geometrically, an ellipse is formed by two focus points. Much like the sun is at one focus point of the Earth's orbit, the Earth is at one focus point of the moon's orbit.
(I do not own the image.)
Earth and the Moon share a common center of gravity, known as the barycenter, located around 1700 km beneath Earth's surface. The Moon orbits this point and is approximately 30 Earth-diameters away from Earth. Earth's gravitational pull governs this orbit and causes lunar eclipses when specific alignments occur.
Explanation:The exact position of the Earth in the orbit of the Moon is not at the center, instead Earth and Moon both orbit a common center of mass, known as the barycenter. This barycenter is positioned about 1700 km below Earth's surface due to Earth's larger mass in comparison to the Moon.
The Moon is approximately 30 Earth-diameters away from us, and because its orbit is tilted relative to Earth's orbital plane, and not perfectly circular, Earth's shadow only intersects the Moon during specific alignments, resulting in lunar eclipses. Earth's gravitational force is responsible for the Moon's orbit around this barycenter, which is evident from the centripetal accelerations observed.