In Cellular Respiration, the Electric Transport Chain is responsible for the bulk of ATP production. What is it about this process that results in so much energy and how does it create the waste products needed to fuel Photosynthesis in plant cells?

Answers

Answer 1

The electron transport chain uses the energy of electrons to drive proteins across the mitochondrial membrane and the backward flow of the protons down their concentration gradient is used to drive ATP synthesis.

The product of the electron transport chain produces water and ATP  needed to fuel Photosynthesis in plant cells.

What is the electron transport chain?

An electron transport chain is a collection of protein complexes and other molecules that associate protons across a membrane with the transfer of electrons from electron donors to electron acceptors through redox processes.

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Related Questions

acoustic energy (ear) to mechanical energy (bones) to hydrolic energy
what is the transmission path?

Answers

The transmission path is from the ear, to the bones in the middle ear, to the fluid in the cochlea, where the mechanical energy is transformed into hydraulic energy.


The ear is responsible for detecting sound waves in the environment and transforming them into neural signals that can be interpreted by the brain. The first step in this process is the conversion of acoustic energy (sound waves) into mechanical energy, which occurs when the sound waves reach the ear and cause the eardrum to vibrate. These vibrations are then transmitted through the middle ear via a chain of three small bones (the malleus, incus, and stapes) that amplify the vibrations and transmit them to the inner ear.In the inner ear, the mechanical energy is converted into hydraulic energy, as the vibrations of the middle ear bones cause fluid in the cochlea to move. This movement stimulates tiny hair cells in the cochlea, which convert the hydraulic energy into electrical signals that are transmitted to the brain via the auditory nerve. The brain then interprets these signals as sound.

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the ___ stain provides critical information about the peptidoglycan structure of the cell wall

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The Gram stain provides critical information about the structure of the cell wall.

The stain works by first adding crystal violet, which stains all bacterial cells, and then iodine, which forms a complex with the crystal violet, making it more difficult to remove. In the next step, a decolorizing agent is applied to remove the crystal violet-iodine complex from the layer of the Gram-negative bacteria, leaving them colorless. The thicker layer of the Gram-positive bacteria retains the crystal violet-iodine complex and appears purple.

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A dense forest, found around 0-10 degrees latitude is called?

Answers

Answer:

It's called a tropical rainforest

An organism that can exist in both oxygen and oxygenieses environments is a/an _______.

Answers

It is an facultative anaerobe.

Analyzing Relevant Current Status Items for Geographers
Identify the current status items that would be most helpful toward becoming a Geographer. Check all that apply.

I am able to stand and work on my feet for many hours in a row.

I have completed high school, and been accepted to a college.

I am a good speaker, and enjoy giving presentations.

I have strong reading and writing skills.

I am good at using computers.

I am strong, and able to lift heavy objects.

I have participated in a summer art camp.

Answers

Geographers are experts who study the Earth's physical and cultural features, including the distribution of resources, human settlement patterns, and the impact of humans on the environment.

The current status items that would be most helpful toward becoming a Geographer are:

I have strong reading and writing skills.

I am good at using computers.

I have completed high school, and been accepted to a college.

I am a good speaker, and enjoy giving presentations.

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You alter the potassium leak channels in a typical neuron so that they are unable to allow as many potassium ions to pass through.
Which of the following would result?

(More than one correct answer. Please mark ALL CORRECT ANSWERS for full credit.)

A. The resting membrane potential would become more positive

B. The resting membrane potential would be farther from threshold.

C. The resting membrane potential would become more negative

D. The resting membrane potential would be closer to threshold

E. The resting membrane potential would be unaffected.

F. There would be no difference in the change in voltage needed to reach threshold

Answers

When the potassium leak channels in a typical neuron they are unable to allow as many potassium ions to pass through the resting potential of the membrane will be negative.

The generation of the resting potential when there are potassium leaks from inside of the cell. When the potassium leak out of the cell happens the generation of a negative charge takes place inside. This result in negative potential inside than outside. When the membrane of the neuron is at rest, it becomes impermeable to sodium ions and the channels become closed.

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Both bacteria and archaea have cell walls, but the cell walls are chemically different between the two. Which describes the cell wall of the Archaea?
a) They have glycerol linked to hydrocarbon.
b) They contain phospholipids.
c) They have peptidoglycan.
d) They lack peptidoglycan.

Answers

The cell wall of Archaea is best described by option d) They lack peptidoglycan.  The correct explanation is that the cell wall of Archaea does not peptidoglycan, however, it is a very key component of bacterial cell walls.

Instead, the cell wall of Archaea is composed of various types of proteins and glycoproteins, as well as some unique lipids such as ether-linked phospholipids and glycerol linked to hydrocarbon chains. This chemical difference is one of the ways that Archaea are distinct from bacteria and is an important factor in their ability to survive in extreme environments.
While both bacteria and archaea have cell walls, they differ in composition. Bacterial cell walls typically contain peptidoglycan, whereas archaeal cell walls do not. Instead, archaeal cell walls are composed of other materials, such as pseudo peptidoglycan.

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the dispersive method of dna replication was disproved when the scientists observed... two separate bands of dna of different densities. one band of dna of lowest possible density. three separate bands of dna of different densities. one band of dna of intermediate density. one band of dna of highest possible density.

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The dispersive method of DNA replication was disproved when scientists observed two separate bands of DNA of different densities. This observation supported the semi-conservative replication model, where each new DNA molecule consists of one original and one newly synthesized strand.

The dispersive method of DNA replication was disproved when the scientists observed three separate bands of DNA of different densities. This observation was made through an experiment where DNA was labeled with radioactive isotopes and allowed to replicate. After centrifugation, the DNA was separated into three bands: one band of lowest possible density, one band of intermediate density, and one band of highest possible density. This provided evidence for the semiconservative method of DNA replication, where the two strands of the double helix separate during replication and each strand serves as a template for the synthesis of a new complementary strand. The resulting two daughter molecules each have one original strand and one newly synthesized strand.

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which of the following is not an essential condition that must be met for adaptations to evolve for initiating coalitional aggression?

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The term "not an essential condition" means that it is not necessary or required for the adaptation to evolve for initiating coalitional aggression. Therefore, the answer to your question would be the specific term or condition that is not necessary for the evolution of coalitional aggression.

Without more context or information about the potential conditions, it is difficult to provide a specific answer. However, in general, some possible conditions that could be essential for the evolution of coalitional aggression include factors such as social complexity, resource scarcity, or the need for protection or defense against outside threats.

To further explain, adaptations are traits or behaviors that have evolved over time to better suit an organism's environment and improve its chances of survival and reproduction. Coalitional aggression, or aggression between groups of individuals, is one such adaptation that may have evolved in certain species as a means of gaining access to resources, protecting against threats, or increasing reproductive success.

In order for such adaptations to evolve, certain conditions must be met, such as the need for cooperation or coordination among individuals, or the ability to recognize and respond to social cues or signals. However, not all conditions may be essential for the evolution of a given adaptation, and some may be more or less important depending on the specific species or context.

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Inductive or deductive reasoning? You dissect ten frogs and observe that each one has one heart and two kidneys. Therefore you hypothesize that all frogs have one heart and two kidneys.

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The reasoning used in this scenario is inductive reasoning. Inductive reasoning involves drawing conclusions based on observations or patterns that are observed through experiences.

In this case, after dissecting ten frogs and finding that they all have one heart and two kidneys, the observer hypothesizes that all frogs have one heart and two kidneys.

The observer has used inductive reasoning to make this hypothesis. The reasoning is based on a limited number of observations, which is the ten frogs that were dissected. Therefore, the hypothesis may not be entirely accurate as it is based on a limited sample size.

However, the observer has dissected enough frogs to observe a pattern, and therefore has formed a hypothesis based on that pattern. This is the essence of inductive reasoning.

Overall, inductive reasoning involves making conclusions based on a pattern that is observed in a limited number of experiences. It is useful in situations where there are limited data or where patterns are difficult to discern. In this scenario, the observer has used inductive reasoning to hypothesize that all frogs have one heart and two kidneys based on the observation of ten dissected frogs.

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a. Which of the fish's fundamental needs is being met as it swims away from a predator? Which
organ system performs the main functions that allow it to meet this need? Identify the organs
of this system that are included in the model. (2 points)
b. What are three other organ systems that help the fish meet the need described in part a?
Identify an organ in the model that belongs to each of these organ systems. (3 points)
c. Describe how all four organ systems and their parts work together to meet the need
identified in part a. (5 points)

Answers

The locomotory organs of fish are fins. The fins are appendages that enable fishes to maintain their position and commute.

Fins are also present in the body which help in movement and balance of the body. Fish also have strong muscles which make the front part of the body curve to one side and the tail fins part swing on the opposite side in the water.

Fins present in the body of fish help them maintain their body balance. It also helps them change their direction while swimming.

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How can you determine whether a culture that you have been provided with is a "pure" culture?

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Answer:

A pure culture contains only one single type; a mixed culture contains two or more different bacteria. If a bacterial culture is left in the same media for too long, the cells use up the available nutrients, excrete toxic metabolites, and eventually the entire population will die.

What sturctures associated with prokaryotic and eukariyotic cells carry out protein synthesis

Answers

In prokaryotic cells, protein synthesis occurs in the cytoplasm on ribosomes that are free-floating or attached to the cell membrane, while in eukaryotic cells, it occurs in the cytoplasm on ribosomes that are free-floating or attached to the endoplasmic reticulum.

Proteins are essential components of cells and are involved in various cellular functions. Both prokaryotic and eukaryotic cells have structures that carry out protein synthesis, which is the process of assembling amino acids into proteins.

In prokaryotic cells, protein synthesis occurs in the cytoplasm on ribosomes that are free-floating or attached to the cell membrane. In contrast, in eukaryotic cells, protein synthesis occurs in the cytoplasm on ribosomes that are free-floating or attached to the endoplasmic reticulum (ER).

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Explain why you might have an oxygen debt to your body.

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During intense exercise, your body may not be able to provide enough oxygen to your muscles, leading to the accumulation of lactic acid and an oxygen debt.

During intense exercise, your muscles need more energy to contract and maintain movement. This energy is generated through a process called cellular respiration, which requires oxygen. However, during intense exercise, your body may not be able to provide enough oxygen to your muscles to keep up with the demand. This leads to the accumulation of lactic acid, which can cause fatigue and a burning sensation in your muscles. To compensate for the lack of oxygen, your body may continue to consume oxygen even after exercise has ended, leading to an "oxygen debt" that must be repaid through continued breathing and increased blood flow.

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In the presence of oxygen, the complete breakdown of glucose through cellular respiration results in the production of _______________________.

Answers

Answer:

2ATP, 2NADH and 2 pyruvate

Explanation:

The breakdown of glucose occurs in glycolysis. This results in 2ATP, 2NADH and 2 pyruvate being produced.

if you can only put one answer down, put pyruvate.

Which type of circulation takes deoxygenated blood to the lungs for oxygenation?â
âA) local
B) âlymphatic
C) âpulmonary
âD) systemic

Answers

The type of circulation that takes deoxygenated blood to the lungs for oxygenation is known as pulmonary circulation. This circulation system is responsible for transporting blood between the heart and the lungs.

The deoxygenated blood from the body is transported to the right atrium of the heart, which then contracts to push the blood into the right ventricle. The right ventricle then pumps this deoxygenated blood through the pulmonary artery and into the lungs.In the lungs, the blood is oxygenated through the process of oxygenation, where the oxygen from the air we breathe binds to the hemoglobin in the red blood cells. Once oxygenated, the blood flows back to the heart through the pulmonary vein, which then empties into the left atrium. From the left atrium, the blood flows into the left ventricle, which pumps the oxygen-rich blood out to the rest of the body through the systemic circulation system.
Overall, pulmonary circulation is vital to the body's oxygenation process, ensuring that our vital organs and tissues receive the necessary oxygen to function properly.

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Scientists who study changes in the diversity of a population at the level of the gene are called _____ geneticists.

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Scientists who study changes in the diversity of a population at the level of the gene are called population geneticists.

Population genetics is the branch of genetics that focuses on the study of genetic variation and the mechanisms that can change the frequency of genes and alleles within populations over time.

Population geneticists use mathematical models and statistical methods to understand how genetic variation arises and is maintained in populations, how it is influenced by factors such as mutation, migration, genetic drift, natural selection, and non-random mating, and how it can lead to evolutionary change.

They also use genetic data to reconstruct the history of human populations and to infer evolutionary relationships among species.

Population genetics is an important tool for many fields of biology, including ecology, conservation biology, medicine, and agriculture.

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Where did clusters of galaxies form in the early universe?
Select one:

a.
Where there were black holes present


b.
Wherever; they formed in a completely randomized manner


c.
Where matter density was the highest


d.
Where temperature was the coolest

Answers

Answer:

C. where matter density was the highest.

5) Ribozymes are enzymes that cleave the subunits of the ribosome.
a. true
b. false

Answers

b. false. Ribozymes are RNA molecules that can act as enzymes, catalyzing specific biochemical reactions, including RNA splicing and RNA replication. They do not cleave the subunits of the ribosome.

The given statement is false. Ribozymes are enzymes that have the ability to catalyze chemical reactions in RNA molecules. They are not involved in cleaving the subunits of the ribosome, which is a large molecular complex consisting of RNA and protein molecules that is responsible for protein synthesis in cells. Ribozymes can act as catalysts in various cellular processes, including RNA splicing, translation, and replication. Some ribozymes have been shown to have potential therapeutic applications, including as targets for new drugs or as tools for gene therapy. However, the statement that ribozymes cleave the subunits of the ribosome is not accurate.

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a. Based on the diagrams, identify which organism is able to perform photosynthesis. Explain your reasoning.

b. Identify the two reactants for photosynthesis.

c. At times, this photosynthetic organism can switch to being heterotrophic. Describe a condition that would favor this organism being heterotrophic. Explain your answer.

Answers

Euglena is the species of organism capable of photosynthesis. Chlorophyll, a green pigment found in euglena, is employed to absorb light energy for photosynthesis. Bacteria and paramecium cannot perform photosynthesis because they lack chlorophyll.

Carbon dioxide and water act as the photosynthesis' two reactants. Using light energy, the process of photosynthesis transforms carbon dioxide and water into glucose, a type of sugar, and oxygen.

The Euglena may become heterotrophic if the habitat in which it is living has low light intensity. Euglena will in this instance use its flagellum to look for organic material that it may ingest in order to get the energy it needs to survive. Because of this circumstance, Euglena would be more likely to be heterotrophic.

Therefore, the correct option is B.

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How does the skin help to regulate body temperature? describe two different mechanisms

Answers

Both mechanisms work together to maintain a stable body temperature, ensuring the proper functioning of vital organs and systems.

Hi! The skin plays a vital role in regulating body temperature through two primary mechanisms: vasodilation and sweating.1. Vasodilation: This mechanism involves the widening of blood vessels near the skin's surface. When the body temperature rises, the blood vessels in the skin expand, allowing more blood flow and heat to be dissipated into the surrounding environment. This process helps to cool the body down. Conversely, when the body temperature drops, the blood vessels constrict, reducing blood flow and retaining heat within the body.2. Sweating: Sweat glands in the skin produce sweat in response to increased body temperature. When sweat evaporates from the skin's surface, it absorbs heat energy, cooling the skin and, in turn, lowering the body temperature. This is an effective way to regulate temperature, especially during physical activity or in hot environments.

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what should be seen in quadrant four that isn't always present in quadrant one

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Quadrant four of a graph typically represents low levels of urgency and importance.

In contrast, quadrant one represents high levels of both urgency and importance. Therefore, what should be seen in quadrant four that isn't always present in quadrant one is a lack of urgency. This means that the tasks or activities in quadrant four can often be put off or delayed without major consequences.

It may still be important to complete those tasks eventually, but they may not require immediate attention. It's important to prioritize tasks based on their level of urgency and importance, but also to recognize that there may be tasks in quadrant four that are still necessary to accomplish.

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Because so few organisms can be successfully cultivated in the laboratory, studying only those that have been isolated often does not give an accurate picture of what actually happens in nature. Discuss why is that so and give an alternative approach to study the microbial community.

Answers

Because so few organisms can be successfully cultivated in the laboratory, studying only those that have been isolated often does not give an accurate picture of what actually happens in nature. The reason that studying only isolated organisms does not give an accurate picture of what happens in nature is that microbial communities are complex and diverse.

How to study microbial communities?
An alternative approach to studying microbial communities is to use techniques that allow for the analysis of complex microbial communities directly in their natural environment. These techniques, such as metagenomics and amplicon sequencing, enable researchers to study the genetic material of all the microorganisms present in a sample, without the need for isolation or cultivation.

This approach provides a more accurate picture of the diversity and interactions of microbial communities in their natural environment, allowing researchers to better understand the role of microorganisms in ecosystems and their potential applications in Biotechnology. As a result, studying only isolated organisms may miss important interactions that occur in nature and fail to capture the true complexity of microbial communities.
and medicine.

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*psych question*
Conscious and voluntary movements are associated with the ________ nervous system.
Group of answer choices
parasympathetic
somatic
autonomic
sympathetic

Answers

Conscious and voluntary movements are associated with the somatic nervous system, which is the second option, as the somatic nervous system is responsible for controlling the voluntary movements of skeletal muscles and receives sensory information from the skin, joints, and muscles.

The somatic nervous system is responsible for controlling the voluntary movements of the skeletal muscles. This includes movements like walking, talking, and reaching for objects. The somatic nervous system receives sensory information from the skin, joints, and muscles, which allows the body to sense and respond to its environment.

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oxygen diffuses across the respiratory membrane from the alveoli into the capillaries because of the p(o2) partial pressure gradient. group startstrue or falsetrue, unselectedfalse, unselected

Answers

Oxygen diffuses across the respiratory membrane from the alveoli into the capillaries because of the p(O2) partial pressure gradient. This is true.

How does oxygen diffuse across the respiratory membrane?

True. Oxygen moves from an area of high partial pressure in the alveoli to an area of lower partial pressure in the capillaries due to diffusion. This process occurs across the respiratory membrane, which includes the thin walls of the alveoli and capillaries. The oxygen is then carried by the bloodstream to the body's tissues where it is used for cellular respiration.

This process occurs due to the difference in partial pressure between the oxygen-rich air in the alveoli and the lower partial pressure of oxygen in the capillaries. Oxygen moves down its concentration gradient, allowing efficient gas exchange and ensuring the continuous supply of oxygen to the body's tissues.

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The ---artery courses along the lateral margin of the crest of the tibia, passes through the center of the anterior surface of the ankle joint and becomes the dorsal pedis artery.

Answers

This artery supplies blood to the muscles in the anterior compartment of the leg and eventually becomes the dorsal pedis artery as it passes through the center of the anterior surface of the ankle joint. It is responsible for supplying blood to the foot and ankle.

The margin of the tibia refers to the outer edge of the bone, which is where the anterior tibial artery courses. This artery is one of the main arteries that supply the lower leg, and any damage or injury to it can have serious consequences for the blood supply to the foot.

In terms of courses, the anterior tibial artery follows a specific route through the leg, starting at the knee and traveling down the front of the leg towards the ankle. It is important to understand the course of this artery for medical professionals who need to diagnose and treat injuries or conditions related to the leg.

The tibia is one of the two bones in the lower leg, and it plays an important role in supporting the body's weight and connecting the knee to the ankle. Understanding the anatomy of the tibia is essential for understanding how the anterior tibial artery courses along its lateral margin.

In summary, the anterior tibial artery courses along the lateral margin of the crest of the tibia passes through the center of the anterior surface of the ankle joint and becomes the dorsal pedis artery. Understanding the course of this artery and the anatomy of the tibia is essential for medical professionals and anyone interested in learning about the lower leg.

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Rank these three points of divergence according to how genetically similar the lineages that resulted should be to each other in the present day, from most to least similar.
1. Allopatric
2.Geograhic
3. Sympatr

Answers

1. Sympatric
2. Geographic
3. Allopatric
The most genetically similar lineage would be from sympatric divergence, as the populations are in the same geographic area and have the opportunity for gene flow.

The second most similar would be geographic divergence, where populations are separated by a physical barrier but may still have some limited gene flow. The least genetically similar would be from allopatric divergence, where populations are completely isolated and have no opportunity for gene flow.

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What are second step in a blow fly life cycle?

Answers

The second step in a blow fly life cycle is the larval stage. After the eggs hatch, the larvae emerge and feed on the surrounding organic matter, which can include decaying flesh. During this stage, the larvae undergo multiple molts and grow in size until they are ready to pupate and transform into adult flies.
The second step in a blow fly's life cycle is the larval stage. After the adult blow fly lays its eggs on a suitable food source, the eggs hatch into larvae, commonly known as maggots. During this stage, the larvae consume the food source and grow rapidly, undergoing several molts before moving on to the next stage of the life cycle, which is the pupal stage.

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Select the correct statement about capillary beds.A. Capillary beds are the site of nutrient and oxygen delivery to tissues.B. Capillary beds have the highest blood pressure of all blood vessels.C. Capillary beds join arteries and veins.D. Capillary beds have a total cross-sectional area much smaller than the total cross-sectional area of major arteries

Answers

The correct statement about capillary beds is :-  Capillary beds have a total cross-sectional area much smaller than the total cross-sectional area of major arteries, because  capillary beds have a total cross-sectional area much smaller than the total cross-sectional area of major arteries.

The correct option is :- (D)

capillaries are very small in diameter and highly numerous, which results in a large total cross-sectional area. This slow flow through capillary beds allows for efficient exchange of substances between the blood and the surrounding tissues.

Capillary beds are networks of tiny, thin-walled blood vessels that connect arterioles (small arteries) to venules (small veins) in tissues throughout the body. They are responsible for the exchange of nutrients, oxygen, waste products, and hormones between the blood and the surrounding tissues.

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Help meeee please!!!!!

Answers

The effect of global climate change

Warmer temperatures over time are changing weather patterns and disrupting the usual balance of nature. This poses many risks to human beings and all other forms of life on Earth.

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