What happens to Earth when large magnetic storms from the sun bombard our atmosphere?

Answers

Answer 1

Answer:

The solar wind's magnetic field interacts with the Earth's magnetic field and transfers an increased energy into the magnetosphere. ... The frequency of geomagnetic storms increases and decreases with the sunspot cycle.

Explanation:

Answer 2

Answer:

The answer to the question: What happens to Earth when large magnetic storms from the sun bombard the atmosphere? would be: most of the radiation from the sun´s magnetic storm hits the Earth´s own magnetic fields and is reflected from the atmosphere, otherwise life on Earth would not be possible, and the energy charges the magnetosphere and can damage certain devices such as satellites, and can damage communication systems, as well as electrical systems.

Explanation:

These magnetic sun storms, are called solar flares, and could be deadly were it not for the Earth´s powerful magnetic fields. These fields, called magnetosphere, are entrusted with the task of reflecting back most radiation from the sun and space itself, protecting life. In the poles, for example, it is possible to see the interaction between solar flares and the magnetic shields of Earth in the boreal lights. However, one problem for us is that the energy released by the interaction can bring down satellites and most oftenly knocks down communication systems on Earth. This energy can also overcharge electrical systems.


Related Questions

mitohondria is responisble for ?

a. DNA maintance
b. storage
c. protein production
d. procviding energy for the cell

Answers

The mitochondria is responsible for providing energy for the cell.
The mitochondria’s function is to provide energy for the cell since it is the powerhouse

In humans, having wet earwax is a dominant trait. Having dry earwax is recessive. The man has one recessive allele and one dominant allele and his phenotype is that the man would be dominant with wet earwax.

a) A woman has two dominant alleles. What is her phenotype?

B) if this man and woman have a child, is it possible for their child to have dry earwax? explain.

Answers

Her phenotype is to have wet earwax

No, the woman has 2 dominate traits and the man has 1 recessive, they need atleast 1 each

Answer: what type of question is this but the answer would be be because he still has one recessive trait if the woman has a dominant trait both dominant traits and he has one dominant trait and recessive trait they have a 75% chance of coming out with wet earwax and a 25% chance coming out with dry earwax because there's always that possibility because of that recessive trait it's rare but a possibility

Explanation:

Which of the following is true about the flow of energy within ecosystems?

Answers

Sorry, but there are no any options.

Hello. This question is incomplete. The full question is:

"Which of the following is true about the flow of energy within ecosystems? A. Energy flows from living systems into the physical environment only. B. Energy flows both ways between living systems and the physical environment. C. Energy flows from the physical environment into living systems only. D. Energy does not flow between living systems and the physical environment."

Answer:

B. Energy flows both ways between living systems and the physical environment.

Explanation:

Energy lives in a constant flow within ecosystems. This energy flows in both directions between living systems and the physical environment.

An important aspect to understand the transfer of energy within an ecosystem is the understanding of the first fundamental law of thermodynamics that says: "Energy cannot be created or destroyed, but transformed". As an illustrative example of this condition, we can mention sunlight, which as a source of energy, can be transformed into work, heat or food depending on photosynthetic activity; but in no way can it be destroyed or created.

Another important aspect is the fact that the amount of energy available decreases as it is transferred from one trophic level to another. Thus, in the examples given above of food chains, the grasshopper obtains, by eating the leaves of the tree, chemical energy; however, this energy is much less than the solar energy received by the plant. This loss in transfers occurs successively until the decomposers are reached.

Which of these formulas is the formula for the base calcium hydroxide?

A. CaOH2
B. Ca OH
c. Ca(OH)2
D. Ca (OH)2

Answers

Ca(OH)2

HOPE IT HELPS U

Answer:

Ca(OH)2

Explanation:

What type of industry produces two-thirds of all sulfur dioxide that pollutes the air?

Answers

Answer:

Electric power plants

Describe how a fossil would form through mineral replacement.

Answers

A fossil would from through mineral replacement by replacing the existing material of the animals bones with minerals, to become petrified. The Minerals will keep the fossil preserved longer.

Have a good day!!

Final answer:

A fossil can form through mineral replacement when the original organism's material is replaced by a secondary mineral, preserving detailed structures and aided by sediment accumulation and permineralization.

Explanation:

A fossil forms through mineral replacement when the original skeletal material of an organism is substituted molecule-by-molecule by a secondary mineral, such as silica (quartz), pyrite, dolomite, or hematite.

This process can preserve the fine cellular details of the original organism, despite a change in its composition.

Sediment accumulation is crucial in providing the minerals and pressure necessary for mineralization.

During permineralization, the sediments' minerals fully replace the organism, creating a mineral copy of the original organism, which can occur with or without replacement.

how do whales differ from fish​

Answers

Hello There!

Information Provided In Image Below

Answer: whales use a blowhole to breath were fish use gills

Explanation:

Why is there so little wind in the location where the atmosphere circulation cells meet? ​

Answers

Answer:

they are close together

Explanation:

an increase in skin cancer can be traced to a decrease in atmospheric

Answers

Answer:

an increase in skin cancer can be traced to a decrease in atmospheric ozone.

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An increase in skin cancer can be traced to a decrease in atmospheric Ozone.

Explanation:

Exposure of the skin to ultraviolet rays is a major risk factor that triggers skin cancer and is one of the growing concerns in recent times. BCCs or basal cell carcinoma is also known as rodent ulcers and occur generally in the areas exposed in the sun which damages the local tissue in human beings. Patients with this disease are usually fair skinned and burn more than dark skinned people in sunlight.

It may also develop during childhood, when a child is exposed in the sun for long periods. One of the most serious forms of skin cancer is Malignant melanoma which happens due to exposure of the body to the harmful UV radiations which in turn happens due to the ozone layer depletion, which stops the harmful rays of the sun from coming to the earth.

Identify what happens to light in this model of the greenhouse effect.

Answers

Final answer:

The greenhouse effect describes how light from the sun is absorbed by the Earth's surface, then reradiated back into the atmosphere as infrared radiation. This radiation is trapped by greenhouse gases, warming the planet. Human activities are increasing greenhouse gas concentrations, intensifying this effect.

Explanation:

In the model of the greenhouse effect, light from the sun enters the Earth's atmosphere and is absorbed by the surface of the planet. This energy is then reradiated back into the atmosphere, in the form of longer-wavelength infrared radiation. Much of this infrared radiation is then trapped by greenhouse gases in the atmosphere, including water vapor, methane, and CO₂. This trapped heat energy warms the planet, a process which is similar to how a greenhouse works, hence the term 'greenhouse effect'.

An aspect important to note is that the greenhouse effect is essential for life on Earth, as without it, the planet would be too cold. However, human activities that increase the concentrations of greenhouse gases are intensifying this effect, leading to global warming and subsequent climate change consequences.

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Which statement best describes the domain of the function represented in the graph?

Answers

Answer:

Another way to identify the domain and range of functions is by using graphs. Because the domain refers to the set of possible input values, the domain of a graph consists of all the input values shown on the x-axis. The range is the set of possible output values, which are shown on the y-axis.

Which substance is a compound? water gold oxygen hydroge

Answers

Answer:

Water

Explanation:

An element is a substance which cannot be split into further elements. Such substances contain single type of atoms. For example, gold, oxygen and hydrogen etc.

A compound is formed of chemical combination of two or more elements. For example water is a compound formed by chemical combination of hydrogen and oxygen elements.

Final answer:

Water is a compound made up of two elements, hydrogen and oxygen, chemically bonded together.

Explanation:

Out of the given options, water is a compound. A compound is a substance made up of two or more elements chemically combined in a fixed ratio. Water (H2O) is made up of two elements, hydrogen (H) and oxygen (O), chemically bonded together. In contrast, gold, oxygen, and hydroge (assuming it was meant to be hydrogen) are elements, not compounds. Gold (Au) is an element, oxygen (O2) is composed of two oxygen atoms and is also an element, and hydrogen (H2) is also made up of two hydrogen atoms and is an element as well.

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What is ATP?. What does it do?. How do organisms get ATP?.

Answers

ATP is the energy currency in life. It’s the high energy molecule that stores the energy we need. Organisms get ATP by consuming food.

ATP, or adenosine triphosphate, is the primary energy cash in cells. It discharges energy upon hydrolysis, which is utilized for different cell capabilities. Through cellular respiration of carbohydrates, organisms generate ATP.

ATP is basic for different cell works and goes about as a power hotspot for cycles like muscle withdrawal, nerve drive engendering, and substance union. ATP stores and transports compound energy inside cells. At the point when the cell requires energy, ATP goes through hydrolysis, delivering one of its three phosphate gatherings. As a result of this reaction, ATP is transformed into adenosine diphosphate (ADP) or adenosine monophosphate (AMP), both of which can be utilized for cellular functions. Life forms produce ATP essentially through an interaction called cell breath. In order to produce ATP, carbohydrates like glucose must be broken down in the presence of oxygen in this process. Cell breath incorporates a few phases: glycolysis, the citrus extract cycle, and oxidative phosphorylation, each adding to the union of ATP.

The atomic bomb resulted from a nuclear _____.

Answers

Answer:

chain reaction

Explanation:

The atomic bomb resulted from a nuclear chain reaction. The atomic bomb is produced by a chain of nuclear fission reactions. 

Nitrogenous bases are located on both strands of the DNA double helix. What is the significance of the nitrogenous bases?

Answers

Answer:

Nitrogenous bases bind nucleic acids together. Hope this helps!

Explanation:

Final answer:

Nitrogenous bases in DNA provide the genetic code and determine the sequence of amino acids in proteins.

Explanation:

The significance of the nitrogenous bases in DNA is that they provide the genetic code and determine the sequence of amino acids in proteins. There are four nitrogenous bases in DNA: adenine (A), thymine (T), cytosine (C), and guanine (G). The order and combination of these bases along the DNA strand determine the genetic information and traits of an organism.

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Which one of the following pair of alleles shows homozygous dominate genotype TT Tt tt​

Answers

Answer:

TT

Explanation:

Dominant alleles are the ones in uppercase and recessive in lowercase, but we see one that has uppercase and lowercase. Well, it is heterozygous. Homozygous are genotypes that have two equal alleles, like tt or TT. Heterozygous have two different. Tt is heterozygous TT is homozygous dominant. Also tt are homozygous recessive, which means that it has both non-dominant alleles.

The allele is defined as the variant form of the gene, which is present on the same locus of chromosome as the gene.

Alleles and Their Makeup Alleles codes for two or more different traits. The combination of alleles can be heterozygous or purebred.

The heterozygous pair includes one dominant and one recessive allele, whereas the purebred genotype involves either both dominant or both recessive.

In the following pair of alleles, the genotype of the purebred dominant trait is TT.

Thus, the genotype of the allelic pairs is used to study the traits of generations. TT is the dominant purebred genotype of the given allele.

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Compare the two theories regarding the evolution of dinosaurs and then consider the cladogram above. Although the two theories differ on the evolutionary path of dinosaurs, they agree that
A) dinosaurs, reptiles, and birds had a common ancestor.
B) dinosaurs evolved much later than birds or reptiles.
C) the branch containing dinosaurs evolved before either reptiles or birds.
D) dinosaurs should be on the same main branch as snakes, lizards and crocodiles.

Answers

Answer:

A) dinosaurs, reptiles, and birds had a common ancestor

Explanation:

The dinosaurs have not evolved as a separate phylum that has not close relations with other animals, but instead they share a common ancestor with the likes of the reptiles and the birds. The reptilians have actually emerged before the dinosaurs, but the dinosaurs managed to take up the top niches in the food chain after they appeared never the less. The birds on the other hand are actually an evolutionary product of the diversification of the dinosaurs. the birds have actually evolved from small bipedal dinosaurs, that over time started to take up new way of life and appearance in order to conquer the skies.

Answer:

A

Explanation:

are predator-prey relationships density-dependent or density-independent limiting factors explain

Answers

Answer: Density dependent

Explanation: It is a density dependent because there has is a direct correlation between the ratio of predatory animals to prey animals for an ecosystem to function properly. Otherwise the ecosystem begins to die.  

Final answer:

Predator-prey relationships act as density-dependent limiting factors in ecosystems, affecting population sizes based on the density of the populations involved. These biological interactions include predation and competition, which can increase mortality or decrease reproductive rates.

Explanation:

Predator-prey relationships are typically considered density-dependent limiting factors in ecosystem dynamics. This means that the effects of these relationships on population sizes vary with the density of the population. For instance, as the prey population increases, it provides more food for predators, which can result in an increase in the predator population. However, as the predator population grows, it starts to reduce the prey population through increased predation. Conversely, when prey becomes less abundant, predator numbers may decline due to the scarcity of food.

Density-dependent factors such as predation, competition for food, disease, and waste accumulation are biotic factors that often lead to increased mortality or reduced reproduction rates within populations, thus regulating their sizes. These factors intensify as the population density increases, demonstrating a direct correlation between the impact of these factors and the number of individuals in a population.

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why must gametophyte cells divide by mitosis

Answers

Answer:

Haploid spores grows by mitosis and develops into gametophytes. In plants, there’s a little break between meiosis and the production of sperm and eggs. During that break, a separate little haploid plant grows.

In plants, meiosis occurs to produce the gametophyte. The gametophyte is already haploid, so it produces sperm and egg by mitosis.

So in other words it is important.

Hope this helps and have a great day!!!

[tex]Sofia[/tex]

The gametophyte cells must divide by mitosis because it lead to the formation of gametes cells which are haploids.

What is mitosis?

Mitosis is the type of cell division that involves that involves the production of two identical daughter cells after division.

The plant is made up of gametophyte, which is formed from the spore and give rise to the haploid gametes through mitotic cell division.

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Find the missing value to the nearest hundredth tan =26

Answers

Answer:

delete this answer.

Explanation:

Tangent of 26 is about 0.49 in the nearest hundredth.

Which kingdom of organisms is most closely related to fungi?

Answers

Answer:

Kingdom Animalia

Explanation:

Answer:

Animalia kingdom is most closely related to fungi

Explanation:

The fungi kingdom was considered as a close relative to plants. The DNA and phylogenetic analysis shows that the fungi kingdom is more similar to kingdom animalia.

The both the kingdoms are not able to make their own food. The animalia and fungi are are consumers. Thus, fungi is closely related to animalia.

Which statements describe earths continents?

Answers

Answer:

It is made up of living things.

It is mostly solid.

It includes liquid water.

It includes Earth's surface.

It includes Earth's interior.

It is made up of gases and airborne particles.

Explanation:

is heat carried by the blood to the cells or away from the cells?

Answers

Answer:

excessive heat carried by the blood away from the cells..

Explanation:

because the heat would cause cell destruction, depending on circumstance..think of homeostasis..the body's way of keeping the body at a normal level...

Excessive heat is carried away from the cells. If heat is carried to the blood cells it would lead to cell destruction.

What is Heat?

Heat is a form of energy. It is transferred from higher body temperature to lower body temperature. Heat transfer is the process of thermal energy exchange due to temperature differences.

Heat transfer takes via three modes conduction, convection, and radiation. In the human body, heat transfer takes place via conduction. The organisms maintain the body temperature of the body by thermoregulation.

Thermoregulation is a biological mechanism by which organisms maintain their internal body temperature.

Therefore, Excessive heat is carried away from the cells. If heat is carried to the blood cells it would lead to cell destruction.

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Natural selection of favorable adaptations in organisms often results in A. the inheritance of acquired traits. B. the evolution of a species. C. the elimination of favorable traits. D. an increase in genetic mutations.

Answers

Answer:

B. The evolution of species.

Explanation:

Answer:

B

Explanation:

Which sentence describes an example of a positive feedback loop?

A: Warm blooded animals were when they get too hot. Sweating as a method by which the body close itself.
B: A thermostat regulates. Temperature by turning a furnace or air conditioner on and off.
C: When blood flows from a mild cut, blood clots form to prevent excessive bleeding.
D: As oceans get hotter, they release more CO2, which then increases atmospheric and ocean temperatures.

Answers

Final answer:

The example of a positive feedback loop from the provided options is D: As oceans get hotter, they release more CO2, which then increases atmospheric and ocean temperatures.

Explanation:

The question relates to the concept of feedback loops in biological systems, particularly the difference between negative and positive feedback loops. The sentence that describes an example of a positive feedback loop is: As oceans get hotter, they release more CO2, which then increases atmospheric and ocean temperatures (option D). This example illustrates how a change in the system leads to an increase in the response, further promoting the initial stimulus, which is characteristic of a positive feedback loop. In contrast, negative feedback loops involve actions that counteract a change, aiming to maintain or reduce the response.

Testosterone, estoregen, semen, testis is the hormone that triggers the production of sperm​

Answers

I didn’t learn this yet but I think it’s testosterone.

Semen is the right answer to your question, you’re welcome and I’m trying to get this 20 word limit over with

A boundary between nonsedimentary and sedimentary rocks is an example of which type of unconformity?

A. Nonconformity
B. Angular unconformity
C. Paraconformity
D. Disconformity

Answers

Answer:

A boundary between non-sedimentary and sedimentary rocks is an example of nonconformity.

Explanation:

Nonconformity happen when sedimentary rocks are deposited on igneous and metamorphic rocks.

This sedimentation forms a boundary between the surfaces of the two rocks.

This gap that is formed is what is referred to as an unconformity, the specific unconformity above is non-conformity.

Answer:

A. Nonconformity

Explanation:

5. _______ is the process where plastic-eating fungi are sent to landfills.

A. Biodiversity expansion
B. Biological augmentation
C. Pollution cleanup
D. Bioremediation

Answers

Biological agumentation is the process where plastic-eating fungi are sent to landfills.

Answer: Option B

Explanation:

The process of using living microbes to clear the landfills is called as biological agumentation or bioaugmentation. Bioaugmentation, for the most part, requires concentrating the indigenous assortments present in the area to decide whether biostimulation is conceivable.

Usually in this process, microbes such as bacteria, fungi etc are utilized. In case of landfills filled with plastics, fungi species which has the ability to degrade the plastic are used in this process.

Bioremediation is the correct term for the process where plastic-eating fungi are used in landfills to break down plastic waste into less toxic or non-toxic substances. The correct option is D.

The process where plastic-eating fungi are sent to landfills to break down the plastic materials is known as bioremediation. This is a waste management technique utilizing organisms such as fungi to remove or neutralize pollutants from a contaminated site, thus transforming hazardous substances into less toxic or non-toxic substances. An example of bioremediation is the use of certain plants to extract toxic metals from soils contaminated by mining operations, or using fungi to degrade plastics in landfills.

Which of the following best explains why clear-cutting forests is more destructive than selectively cutting down trees in forests? a. Clear-cutting eliminates all trees leaving none behind to maintain soil fertility or house native animals. b. Clear-cutting places the land at greater risk for wildfires. c. Clear-cutting makes land more attractive for human development. d. Clear-cutting causes less soil erosion than selective cutting.

Answers

Answer:

a. Clear-cutting eliminates all trees leaving none behind to maintain soil fertility or house native animals

Explanation:

The clear-cutting is a process that is very dangerous and harmful for the environment, but also for the humans on the long term. Through this process, the vegetation is totally removed, all trees and shrubs are eliminated. This leaves the soil barren and vulnerable, as it doesn't have a protection from the erosion, thus it is eroded very quickly. Also, the soil losses the plants that have been keeping its fertility at a certain level, so it become infertile very quickly. There's no trees left so that the area can recover, and it will take a very long period that the nature can recover at those places. The animals lose their habitats, so they die out, and the ones that are endangered may even go extinct.

Answer:

its a did the test

Explanation

11. The behaviors and physical characteristics of
species that allow them to live successfully in their
environment are called ____.

Answers

Answer:

11. The behaviors and physical characteristics of  species that allow them to live successfully in their  environment are called adaptations.

Explanation:

Adaptations are a process that organisms go through to become better suited for their environment to help them be better suited to survive.

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