Answer:
The first answer is "Cellular Respiration" and the second answer is "Photosynthesis".
Explanation:
If we start tracking the carbon in the cycle starting from the atmosphere, we can say that the order it goes through looks like this:
First it gets passed into the plants through photosynthesis.Then it passes to the other organisms that consume the plant or if the plan decomposes it gets passed onto the soil.Then as the organisms that consume the plants die, it finally gets passed to the soil and either helps other plants grow or turns into fossil fuels.For the first part, the next phase after open atmosphere for the carbon is going to be photosynthesis by the plants leaves.
For the second part, the next phase after trees and vegetation is going to be decomposition.
I hope this answer helps.
The labeled C and Labeled B in the given carbon cycle are:
1. cellular respiration
2. photosynthesis
1. The next phase of the carbon cycle for the carbon source labeled C:It will be photosynthesis, as this process is associated with trees and vegetation, in Label B.fossil fuels which is labeled under ADecomposition of organic matter will either take place on land or in water.CO2 released from respiration will add to the atmospherethus, the next phase: cellular respiration.
2. The next phase of the carbon cycle for the carbon source labeled B:it will be photosynthesis, as this process is associated with trees and vegetation, in Label B.fossil fuels which is labeled under ADecomposition of organic matter will either take place on land or in water.CO2 released from respiration will add to the atmosphereThus, the next phase: photosynthesis
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2. Why must the satellite use electromagnetic
waves instead of sound waves?
Answer:
Since electromagnet waves do not need a medium they can travel through space. Sound waves can't travel through space because they need a medium.
Explanation:
The satellite uses electromagnetic waves instead of sound waves these types of waves do not require any medium for the transmission of the information.
What types of electromagnetic waves are used by Satellites?The types of electromagnetic waves that are used by satellites are known as radio waves. These waves are utilized in order to carry out satellite signals with a speed of 3000,000km/sec.
Electromagnetic waves facilitate the required amount of speed and characteristics which ease the transmission of information required by the satellites. Radio waves are traveling through the vacuum of space with the fastest speed at which the information via the satellite can be transmitted. Radiowaves are also used for spacecraft communications as well.
Therefore, the satellite uses electromagnetic waves instead of sound waves these types of waves do not require any medium for the transmission of the information.
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PLEASE HELP!!! (I will mark brainliest)
All energy resources have an impact on our environment. Fossil fuels do substantially more harm than renewable energy sources by most measures, including air and water pollution, damage to public health, wildlife and habitat loss, water use, land use, and global warming emissions. It is important to understand the environmental impacts associated with producing power from renewable sources such as wind, solar, geothermal, biomass, and hydropower. The type and intensity of environmental impact from each resource varies depending on the technology used, the geographic location, and several other factors specific to each resource. 9) Harnessing wind power is one of the cleanest and most sustainable ways to generate electricity as it produces no toxic pollution or global warming emissions. Wind is also abundant and inexhaustible. But it has its disadvantages.
All BUT ONE could be considered a disadvantage to using wind power as a sustainable energy resource. A) Wildlife - Wind turbines negatively impact wildlife, most notably on birds and bats. B) Public health - People living close to wind turbines have complained about sound and vibration issues. C) Land use - Wind turbines can be sited on brownfields: abandoned or underused industrial land which significantly reduces concerns about land use. D) Competition - Off-shore wind facilities may compete with a variety of other ocean activities, such as fishing, recreational activities, and aquaculture.
Answer:
Wind, solar, geothermal, biomass, and hydropower also have environmental impacts, some of which are significant. Fossil fuels do substantially more harm than renewable energy sources by most measures. By understanding the potential environmental issues associated with each renewable energy source, we can takes steps to effectively avoid or minimize these impacts. Biomass power plants generate electricity from biomass that can be sustainably produced and utilized in the United States for energy and fuel, focusing on agricultural residues, waste materials, and forest biomass. In other regions enhanced geothermal systems (or hot dry rock geothermal), which involve drilling into the earth's surface to reach deeper geothermal resources, can allow broader access to geothermal energy.
Future of hydroelectric power in the United States will likely involve increased capacity at current dams and new run-of-the-river projects. Large-scale hydroelectric dams continue to be built in many parts of the world (including China and Brazil) There are environmental impacts at both types of plants. While actual impacts of large-scale operations have not been observed, a range of potential impacts can be projected.
Answer:
All energy sources have some impact on our environment. Fossil fuels—coal, oil, and natural gas—do substantially more harm than renewable energy sources by most measures, including air and water pollution, damage to public health, wildlife and habitat loss, water use, land use, and global warming emissions.
What carbohydrates provide energy for living things?
Carbohydrates are one of the three main macronutrients that provide energy for living things, with the other two being proteins and fats
Carbohydrates are the most efficient energy source for the body, and they are essential for the proper functioning of the brain and nervous system.
The main carbohydrate that provides energy for living things is glucose, which is a simple sugar that is easily broken down by the body to release energy. Glucose is the primary source of fuel for the brain and muscles, and it is stored in the liver and muscles in the form of glycogen. When energy is needed, glycogen is broken down to release glucose, which is then used by the body to produce ATP, the main energy currency of the cell.
In addition to glucose, other carbohydrates such as fructose, galactose, and sucrose can also provide energy for living things. However, the body must first convert these carbohydrates into glucose before they can be used as a source of energy.
Overall, carbohydrates play a critical role in providing energy for living things and are an essential part of a healthy diet.
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guys what fruit hasa lot of it with a stem? WILL GIVE BRAINLIEST
Answer:
Fruits such as apples and pears grow on trees, while melons, such as honeydew and watermelons, grow along large vine-like stems. Berries such as strawberries, blueberries and gooseberries grow on shrubs.
Explanation:
In what molecule does the energy from these high-energy electrons end up
The energy from these high-energy electrons ends up in ATP molecules.
What is the energy currency of the cell?The main molecule for storing and transferring energy in cells is adenosine 5'-triphosphate (ATP). It is frequently referred to as the cell's energy currency and is like the money that is kept in a bank. When the cell needs energy, ATP can be taken out and used to fuel processes or stored for use in later ones. Animals use ATP to retain the energy released during meal digestion.Plants use photosynthesis to absorb light energy, which they then store in ATP molecules. An adenine base is joined to a ribose sugar, which is joined to three phosphate groups, to form the nucleotide ATP. Two phospho-anhydride bonds, which have high energy, connect these three phosphate groups. Energy is released and ATP is changed into adenosine diphosphate when one phosphate group is removed by breaking a phosphoanhydride bond during a procedure known as hydrolysis (ADP).When phosphate is taken out of ADP to create adenosine monophosphate, energy is also released (AMP).In order to make unfavorable reactions in a cell favorable, this free energy can be transferred to other molecules. By creating fresh phosphoanhydride bonds, AMP can subsequently be converted back into ADP or ATP and used to store energy once more. As they take part in biological reactions, AMP, ADP, and ATP constantly undergo interconversion within the cell.To learn more about ATP molecules, refer to
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the creation of glucose from noncarbohydrate sources (primarily proteins) is called Triglycerides
Fructose
Glycogen
Glucose
The creation of glucose from noncarbohydrate sources (primarily proteins) is called gluconeogenesis
Gluconeogenesis is a metabolic pathway in which glucose is synthesized from noncarbohydrate sources, such as amino acids derived from proteins and certain molecules from lipid metabolism. This process primarily occurs in the liver but can also take place in the kidneys and to a lesser extent in other tissues.
During gluconeogenesis, various precursors, including amino acids and intermediates from the breakdown of fatty acids, are converted into glucose. This process involves a series of enzymatic reactions that bypass the irreversible steps of glycolysis, allowing for the synthesis of glucose from noncarbohydrate sources.
Gluconeogenesis plays a vital role in maintaining blood glucose levels, especially during periods of fasting, prolonged exercise, or when dietary sources of carbohydrates are limited. It helps to ensure a continuous supply of glucose to organs and tissues, particularly those with high glucose demands, such as the brain.
Triglycerides, fructose, and glycogen are not directly involved in the process of creating glucose from noncarbohydrate sources. Triglycerides are a form of stored energy in the body, primarily found in adipose tissue and used for energy production through lipolysis.
Fructose is a type of sugar found in fruits and some sweeteners. Glycogen is a storage form of glucose, primarily stored in the liver and muscles, and serves as a readily available source of glucose when needed. However, gluconeogenesis is the specific term used to describe the creation of glucose from noncarbohydrate sources.
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theobroma, the genus name for the cacao tree, is latin for
Theobroma, the genus name for the cacao tree, is derived from Latin and translates to "food of the gods."
The term is composed of two parts: "theo," meaning god, and "broma," meaning food. Theobroma is a genus within the family Malvaceae, and its most famous species is Theobroma cacao, which is the primary source of chocolate.
Cacao trees are native to the tropical regions of Central and South America, and their seeds, commonly known as cocoa beans, have been used by indigenous cultures for thousands of years. These beans were initially consumed as a bitter beverage, often mixed with spices and other ingredients, before the arrival of Europeans in the Americas. The Spanish explorers, fascinated by the unique flavor and potential benefits of the beans, brought them back to Europe, where they became a sought-after luxury item.
Over time, the process of refining and sweetening cocoa beans led to the creation of modern chocolate, which is now enjoyed by millions of people worldwide. The cacao tree's significance in the culinary and cultural spheres, as well as its association with divine and mystical qualities, likely contributed to its Latin name, "Theobroma." Today, the cultivation and processing of cacao beans play a vital role in the global economy, providing livelihoods to farmers in many tropical countries and delighting consumers with a wide variety of chocolate products.
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3. How are frog eggs being used in research involving human cells?
the area that a receptor cell gathers information from is called the ______.
Answer:
the area that a receptor cell gathers information from is called the receptive field
hope it help u
itz by Riddhi
Is 28 weeks pregnant considered 7 months?
Yes, 28 weeks pregnant is considered 7 months pregnant. Pregnancy is typically measured in weeks, with each month having approximately 4 weeks.
Therefore, at 28 weeks, a pregnant person is in their 7th month of pregnancy. It is worth noting that pregnancy is often divided into trimesters, with the 3rd trimester beginning at 28 weeks (or sometimes at 27 weeks). During the 7th month of pregnancy, which is around weeks 25-28, the fetus undergoes several important developments and the pregnant person experiences a number of physical and emotional changes. Here are some common developments and changes that occur during the 7th month of pregnancy. The pregnant person's belly is becoming noticeably larger, and they may experience back pain, swollen feet and ankles, and difficulty sleeping.
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In a hypotonic solution, an animal cell will
A. neither gain nor lose water.
B. lyse.
C. experience turgor.
D. shrivel.
In a hypotonic solution, an animal cell will gain water, leading to an increase in turgor pressure. Therefore, the correct answer is C. experience turgor.
In a hypotonic solution, the concentration of solutes outside the cell is lower than inside the cell. This causes water to move into the cell by the process of osmosis, leading the cell to gain water. As the cell gains water, it swells and can eventually lyse (burst) due to the increased pressure. Turgor is a term typically used for plant cells and not animal cells, so option C is correct in this context.
Turgor is the force inside the cell that pushes the cell membrane against the cell wall. It is also called hydrostatic pressure and is defined as the pressure of a liquid measured at one point in itself when in equilibrium. Usually turgor results from the osmotic flow of water and is found in plants, fungi, and bacteria. This phenomenon has also been observed in protists with cell walls. This system is not found in animal cells because the absence of a cell wall causes cells to rupture under stress.
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A large number of dopamine-releasing neurons are found in the __________. A. Brainstem B. Hindbrain C. Midbrain D. Forebrain Please select the best answer from the choices provided A B C D.
The substantia nigra (SN) and ventral tegmental region have the most midbrain dopaminergic neurons (VTA). Therefore, option (C) is correct.
Where is dopamine most active in the brain?Dopamine (DA) neurons in the middle brain are absolutely necessary for the control of fundamental aspects of the brain, including the processing of rewards, voluntary movement, and working memory. The substantia nigra (SN) and the ventral tegmental region have the biggest populations of dopaminergic neurons in the midbrain. These two nuclei are located in close proximity to one another (VTA).
As a component of the brain's reward system, dopamine is most prominently responsible for assisting humans in experiencing pleasure. Dopamine can be released in response to a number of different stimuli, including sexual activity, retail therapy, or even the aroma of freshly baked cookies.
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What is the name of the combining form for the gland in which the islets of Langerhans are located?
A) pancreat/o
B) thym/o
C) calc/o
Pancreat/o is the name of the combining form for the gland in which the islets of Langerhans are located. In this case, option, A is correct
It aids the body's ability to fight infection. In genes that regulate dendritic cell function, mutations (changes) can occasionally occur. The BRAF, MAP2K1, RAS, and ARAF genes are among those that have mutations. In some regions of the body, these mutations may cause an excessive number of LCH cells to accumulate and grow, which can harm tissue or result in lesions.
LCH may be a cancer type or a condition that resembles cancer, but this is unknown.
Cancer-related therapies are occasionally used to treat LCH by physicians who also treat cancer. The sections on treating LCH in children and treating LCH in adults both contain more information.
Having a parent who was exposed to certain chemicals or having a history of cancer in the family.
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A student recorded the height of each student in the school. She then made a bar graph of her results. She observed that the results form a bell-shaped curve. The student could use her graph as evidence to support which argument?
Answer:
That height was affected by multiple pairs of genes on different chromosomes.
Which of the following is NOT considered a scientific property of water?
-Carbon bonding
-Cohesion
-Surface tension
-Adhesion
the first one carbon bonding
What is the main function of the nervous system?
Answer:
The correct answer is to Transport blood to all parts of the body so that gases, nutrients, and waste products are transported to and from the cells.
Explanation:
The nervous system does not do any of the other functions that are in the blue and orange squares. Hope this helps!
Which of these types of fertilizers is the best for maintaining the long-term health of farm soil? (select all that apply) organic matter compost chemical fertilizers water, i have no idea what subject this is in so i put biology.
Answer:
water, compost , and chemical fertilizer
Water, compost , and chemical fertilizers is the best for maintaining the long-term health of farm soil.
What do you mean by chemical fertilizers?Chemical fertilizers, such as urea, diammonium phosphate (DAP), and single superphosphate (SSP), are used to maintain the shortage of nitrogen, phosphorus, and potassium in the soil.
Most fertilizers that are commonly used in agriculture contain the three basic plant nutrients: nitrogen, phosphorus, and potassium. Some fertilizers also contain certain "micronutrients," such as zinc and other metals, that are necessary for plant growth.
Chemical fertilizers will nourish your plant, but the minerals will not linger in your soil. By creating rich, nutrient-dense soil with organic materials, your lawn will have a better chance of thriving on its own tapping into stored minerals when needed.
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Which statement best describes natural selection?
A. Random assortment of genes results in better characteristics in the following generations
B. Some live and some die in each generation Only the largest and strongest survive
C. The most intelligent organisms in a population will evolve and form new characteristics
D. The best adapted individuals survive and reproduce, which passes their genes onto the next
generation
Answer:
d
Explanation:
trust me
Answer:
c
Explanation:
Natural selection is the process through which populations of living organisms adapt and change
It is wise to study anatomy alongside with physiology because ________. to understand anatomy requires complete understanding of physiology physiology is only explainable in terms of the underlying anatomy it makes for more efficient use of students' and teachers' time anatomy and physiology are practically the same thing
It is wise to study anatomy alongside with physiology because physiology is only explainable in terms of the underlying anatomy.
What do you study in anatomy and physiology?Anatomy is the analysis of the structures associated with the human body. Physiology is the analysis of the function of each of these systems. The human body is often thought of as a complex machine.
Thus, option "B" is correct, physiology is only solvable in terms of the underlying anatomy.
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PLS HELP :"(
I dont think what I wrote down is correct just ignore it :")
Answer:
Facilitated diffusion and phosphate
Explanation:
For the second one, ATP stands for adenosine triphosphate, and ADP stands for adenosine diphosphate. "Tri" means three, so when ATP turns into ADP, it loses one phosphate.
Answer:
Facilitated diffusion & phosphate
give other person brainliest :)))
Explanation:
what is members of this phylum have cells that are a non-walled, multinucleate mass called a plasmodium.
The Myxomycota, or slime moulds, are a phylum that includes organisms with cells that are a multinucleate, non-walled mass known as a plasmodium.
The term "muscle tissues of the heart" refers to a collection of cells that serve comparable purposes in the heart. Skeletal, cardiac, and smooth muscles are the three distinct categories of muscles. The contractile wall of the heart is made up of the cardiac muscles, which are located there. These small, single-nucleus muscles are striated and contract involuntarily (that is, without any external stimulus).
An obligatory parasite of insects and vertebrates, Plasmodium is a genus of unicellular eukaryotes. In the course of their life cycles, Plasmodium species mature in blood-feeding insect hosts before injecting parasites into vertebrate hosts during a blood meal.
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Name the early-twentieth-century hypothesis that was at first rejected by geologists and the more comprehensive theory that later replaced it.
The theory of plate tectonics was at first rejected by geologists and the more comprehensive theory later replaced it.
What is continental drift theory?The continents were "drifting" over the surface of the planet, occasionally crashing into one another and into seas.
As we know,
Wegener's theory was largely rejected since he offered no explanation for how the continents may move.
The name of the theory was theory of plate tectonics.
Thus, the theory of plate tectonics that was at first rejected by geologists and the more comprehensive theory that later replaced it.
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plant species a has a diplod of 12. plant speciesi b has a diploid number of 16. a new species c is an allopolyploidy from a and b. what is cs diploid
Species C, which is an allopolyploidy from species A and B, has a diploid number of 28 chromosomes. This number is the sum of the diploid numbers of both parents, and it is a result of the combination of chromosomes from each species during mating.
Allopolyploidy is a phenomenon where two different species mate and produce an offspring that has two or more sets of chromosomes from each parent. In this case, species C is an allopolyploidy from species A and B, which means that it has inherited chromosomes from both parents.
To determine the diploid number of species C, we first need to understand the number of chromosomes that species A and B contribute to it. Species A has a diploid number of 12, which means that it has 12 chromosomes in each cell. Species B has a diploid number of 16, which means that it has 16 chromosomes in each cell.
When species A and B mate to produce species C, the number of chromosomes in each cell of the offspring is determined by the combination of chromosomes from both parents. In the case of species C, the diploid number would be the sum of the diploid numbers of A and B. Therefore, the diploid number of species C would be 12 + 16 = 28.
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In order to pasteurize liquid foods with mild heat to effectively sterilize them so that
organisms and bacteria are inactivated, the temperature must be no less than what?
100°F
150°F
212°F
312°F
Without compromising the flavor or nutritional content of milk, pasteurization eliminates harmful microorganisms (sterilization = total bacterial eradication). Thus, option C is correct.
What are the ideal conditions to pasteurize liquid foods?Liquid food that is packaged or unpack aged is subjected to pasteurization, a mild heat treatment that involves heating the food to temperatures below 100 °C.
The product's phase transition is prevented by the heat treatment and cooling procedure. During pasteurization, liquids are cooked for a limited period of time at high temperatures.
Dairy products, tomato ketchup, and baby meals are examples of non-Newtonian fluids that can be pasteurized using shell and tube heat exchangers.
Therefore, The ideal temperature for pasteurizing liquid meals with gentle heat to effectively sterilize them and render bacteria and other microorganisms inactive is 212 °F (ca. 100 °C).
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Suppose that you were examining the distribution of a plant, instead of the millipede. Describe modifications in the experiment that you designed in (b) that would be required to determine whether the abiotic factor you chose affects the distribution of the plant.
Modifications required to examine the effect of an abiotic factor on plant distribution.
To determine whether an abiotic factor affects the distribution of a plant, modifications must be made to the millipede experiment. First, the survey sites should be chosen to reflect a range of abiotic factors. For example, sites with varying soil types, pH levels, moisture content, and light intensity. Second, the plant species should be identified and recorded for each site. Third, the plant abundance and distribution should be measured at each site using appropriate methods, such as quadrat sampling. Finally, statistical analysis should be conducted to determine the correlation between the abiotic factor and plant distribution,interactions and historical factors. These modifications will allow us to assess the impact of abiotic factors on plant distribution.
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After you breed your plants about 3 generations, you find that one of your plants is not making any flowers at all. You are curious, so you genotype this plant and find out that it is Ff RRW B3B3. How could this genotype have resulted
The Ff RRW B3B3 genotype in a plant that is not producing flowers could have resulted from a genetic mutation or recombination during meiosis.
Genotype refers to the genetic makeup of an organism. It is the complete set of genes inherited by an individual from its parents. Genes control the physical and biological characteristics of an organism, such as its size, shape, color, and behavior.
Genotypes can be dominant or recessive, and they are expressed as alleles. For instance, the RR genotype signifies that the two alleles are dominant, while the ff genotype shows that the alleles are recessive.
The Ff RRW B3B3 genotype implies that the plant has four different alleles, namely:
F and f, which represent the dominant and recessive alleles for flower production.R and W, which represent the two dominant alleles for plant height and leaf shape.
B3 and b3, which represent the two dominant alleles for seed color.In general, flower production is a complex genetic trait that involves the interaction of several genes. Mutations or recombination during meiosis can cause changes in the gene sequence, resulting in variations in the traits expressed by the plant.
Therefore, a genetic mutation or recombination could have caused the Ff RRW B3B3 genotype in a plant that is not producing flowers.
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Phloem is used to transport sucrose and amino acids in plants. Sucrose is a carbohydrate. Describe the uses of carbohydrates and amino acids in plants.
Answer:
1. carbohydrates help to produce a part of cellulose. carbohydrate produces the vital source of energy, carbon skeletons for organic compounds, and storage of components.
2. Amino acids help in the ion transportation, modulation of stomatal opening, maintaining the level of detoxification.
6. Which hamsters are the parents of the mystery hamster? Include evidence to prove that they are the correct parents. plzz give me the anser ill give the brainliest
Answer:
Test 3
Explanation:
Im working on the same assignment with the same question for online school and when it asked me that question i clicked test 3 and it said correct :)
what is climate change and with does it effect
More frequent and intense drought, storms, heat waves, rising sea levels, melting glaciers and warming oceans can directly harm animals, destroy the places they live, and wreak havoc on people's livelihoods and communities. As climate change worsens, dangerous weather events are becoming more frequent or severe.
reasons lipids are rarely used as source of energy
requires a lot of oxygen to oxidize
Explanation:
Lipids are made of fats which are complex components and require high amounts of oxygen to break them down