Answer: D. Eat more rabbits and squirrels
Explanation: If the mouse population disappeared from the ecosystem, the fox would most likely eat more rabbits and squirrels.
The macromolecules that serve in the storage and transmission of genetic information are: A) carbohydrates. B) lipids. C) membranes. D) nucleic acids. E) proteins
Option D is correct. The macromolecules that serve in the storage and transmission of genetic information are nucleic acids.
A group of macromolecules known as nucleic acids are essential for the storage and transfer of genetic information. DNA (deoxyribonucleic acid) and RNA (ribonucleic acid) are the two main subtypes of nucleic acids.
All living things have DNA in their chromosomes, which is the genetic material. It is made up of a lengthy chain of nucleotides, which make up nucleic acids.
A sugar molecule, a phosphate group, and a nitrogenous base make up each nucleotide. The genetic code utilized to encode the instructions for the growth and operation of all living things is determined by the arrangement of these bases.
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The three main gases that trap heat in earth's atmosphere are
Answer:
ozone oxygen nitrogen are the answers
1. Blood poisoning by bacterial infection and their toxins called as
A. Peptic Ulcer B. Blood carcinoma C. Septicemia D. Colitis
2. Define UL?
A. Upper Intake Level B. Tolerable Upper Intake Levels C. Upper Level D. Under Intake Level
3. Proteins are made of monomers called
A. Amino acids B. Lipoprotein C. Glycolipids D. Polysaccharides
4. Most of the body fat in the adipose tissue is in the form of
A. Amino acids B. Fatty acids C. Triglycerides D. Glycogen
1. Blood poisoning by bacterial infection and their toxins called as septicemia.Sepsis is a serious bacterial infection of the blood that can quickly lead to septic shock, which is a life-threatening condition.2.
UL stands for Upper Intake Level. The Tolerable Upper Intake Level (UL) is the maximum daily amount of a nutrient that a person can consume without adverse effects. The UL is determined by scientific research and is intended to be used as a guideline to help individuals avoid overconsumption of nutrients that can lead to health problems.3. Proteins are made of monomers called Amino acids.
Proteins are made up of long chains of amino acids that are linked together by peptide bonds. The sequence of amino acids determines the protein's three-dimensional structure and its biological function.4. Most of the body fat in the adipose tissue is in the form of Triglycerides. Triglycerides are a type of fat that is stored in adipose tissue and used by the body for energy.
They are composed of three fatty acid molecules and one glycerol molecule. Triglycerides are an important source of energy for the body, but when they are present in high levels in the blood, they can increase the risk of heart disease.
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1 m2 of a field gets about 1050MJ of light energy per year. Only 21 500 kJ of energy is stored in the new grass.
How is the energy stored in the new grass?
Glucose is the form in which the energy is kept in the grass plant. Water and carbon dioxide are converted by plants into a sugar called glucose using the power of the sun.
Food is produced by plants through a process known as photosynthesis. Plants use their leaves to capture light energy during photosynthesis. Starch, a complex carbohydrate that can be converted into a simple carbohydrate (glucose) for the plant to use as fuel, is how plants store their energy. Like other cells, plant cells store starch (glucose) in storage organelles. Plants use glucose as a source of energy and to create other compounds like cellulose and starch. Plants, algae, and some bacteria carry out the process by utilizing sunlight to create oxygen (O2) and chemical energy that is stored in glucose.
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All organic molecules contain the element
Answer: carbon
Explanation: I just remembered that from last year
Are the genotypes of the true breeding parents and offspring in these crosses homozygous or heterozygous? Explain
Explanation:
In true-breeding parents, all the alleles at a particular locus are the same, which means they are homozygous. This is because truebreeding parentshave undergone multiple generations of self-fertilization or cross-breeding with other individuals having the same genotype, resulting in a purebred line with the same homozygous alleles.
In true-breeding parents, all the alleles at a particular locus are the same, which means they are homozygous. This is because truebreeding parentshave undergone multiple generations of self-fertilization or cross-breeding with other individuals having the same genotype, resulting in a purebred line with the same homozygous alleles.In the case of the offspring resulting from a cross betweentrue breeding parents, the genotypes would also be homozygous for the specific trait being studied.
In true-breeding parents, all the alleles at a particular locus are the same, which means they are homozygous. This is because truebreeding parentshave undergone multiple generations of self-fertilization or cross-breeding with other individuals having the same genotype, resulting in a purebred line with the same homozygous alleles.In the case of the offspring resulting from a cross betweentrue breeding parents, the genotypes would also be homozygous for the specific trait being studied.For example, if we are studying the inheritance of flower color in pea plants and we have a true breeding parent with pink flowers and another true breeding parent with white flowers, the parent plants would both have homozygous genotypes for their respective flower color alleles (pink parent: PP and white parent: pp). When these two parents are crossed, their offspring will all have heterozygous genotypes for the flower color gene (Pp), as each individual inherits one allele from each parent.
In true-breeding parents, all the alleles at a particular locus are the same, which means they are homozygous. This is because truebreeding parentshave undergone multiple generations of self-fertilization or cross-breeding with other individuals having the same genotype, resulting in a purebred line with the same homozygous alleles.In the case of the offspring resulting from a cross betweentrue breeding parents, the genotypes would also be homozygous for the specific trait being studied.For example, if we are studying the inheritance of flower color in pea plants and we have a true breeding parent with pink flowers and another true breeding parent with white flowers, the parent plants would both have homozygous genotypes for their respective flower color alleles (pink parent: PP and white parent: pp). When these two parents are crossed, their offspring will all have heterozygous genotypes for the flower color gene (Pp), as each individual inherits one allele from each parent.So in summary, the true breeding parents have homozygous genotypes for the trait being studied, while their offspring resulting from a cross would have heterozygous genotypes.
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Answer:
This means that the parents are homozygous for every trait
Explanation:
A true breeding is a kind of breeding wherein the parents would produce offspring that would carry the same phenotype.
how will a organism be benefited if it reproduces through spores
Answer:
Spore can survive under unfavorable conditions as they are covered by a hard protective coat. Spores can grow to produce new plants and does not require sexual interaction with another organism. Due to their small size and light weight, they can be dispersed easily.
Spores can remain dormant till favourable conditions become available. b. Spores help an organism to tide over the bad phase. Spores can be spread through water, air or animals and thus is good for the spread of an organism to more places.
Explanation: hope this helps bro! (:
Observations, evidence and data that people gather and test support and evaluate scientific explanations is called _____ *
Answer:
the answer is theory
Explanation:
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HELP ASAP PLEASE!!It important
Answer:
The three main cycles of an ecosystem are the water cycle, the carbon cycle and the nitrogen cycle. These three cycles working in balance are responsible for carrying away waste materials and replenishing the ecosystem with the nutrients necessary to sustain life.
Explanation:
7) Wind always moves in which direction? *
O Areas of high pressure to areas of low pressure.
O Areas of low pressure to areas of high pressure.
Areas of low pressure to areas of low pressure.
Areas of high pressure to areas of high pressure.
Answer:
areas of high pressure to areas of low pressure
Which type of neurons are responsible for carrying signals from the sensory neurons to the motor neurons?
A. Relay neurons
B. Sensory neurons
C. Transmission neurons
D. Motor neurons
Answer:
A. Relay neurons
Explanation:
Neurons or nerve cells are one of the cell types contained in the nervous system. Neurons transmit or carry nerve signals. There are three major types of neurons namely; motor neurons, sensory neurons, and interneurons.
Specifically, interneurons or relay neurons are types of neurons that connects the sensory and motor neurons i.e carrying signals from the sensory neurons to the motor neurons?
What are 3 advantages of asexual reproduction?
The rapid preservation and propagation of desirable traits without genetic variation, leading to efficient and stable populations.
What is Asexual reproduction?Asexual reproduction is a type of sexual reproduction that doesn't use gametes or fertilisation.
What are the three benefits of asexual reproduction?Asexual reproduction can happen considerably more quickly than sexual reproduction because it doesn't involve the time and effort required for mating and creating children.
Asexual reproduction is simple since it doesn't need a partner and can happen naturally without the aid of any specialised systems or procedures.
Desirable qualities can be promptly and effectively maintained without the genetic variation that results from sexual reproduction since kids produced by asexual reproduction are identical to the parent.
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please answer this question
If a female and male offspring from the cross are allowed to mate, the offspring will be 2 red-eyed females; 1 red-eyed male, and 1 white-eyed male. Hence option B is correct.
Thomas Hunt Morgan, who studied fruit flies, provided the first strong confirmation of the chromosome theory.
Morgan discovered a mutation that affected fly eye color. He observed that the mutation was inherited differently by male and female flies.
Based on the inheritance pattern, Morgan concluded that the eye color gene must be located on the X chromosome.
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You are doing research on a bacterial species, trying to determine the nature and structure of a number of intracellular inclusions. Which type of microscopy would provide the best view of these intracellular structures
Answer:
Transmission Electron Microscope.
A Transmission Electron Microscope provides the best view of the intracellular structures.
What is Transmission Electron Microscope?
Transmission electron microscopes (TEM) are microscopes that use a particle beam of electrons to visualize specimens and generate a highly-magnified image. TEMs can magnify items up to 2 million instances. with a purpose to get a better concept of simply how small that is, think about how small a cellular is.
What is a transmission electron microscope used for?The transmission electron microscope is used to view skinny specimens (tissue sections, molecules, etc) through which electrons can bypass producing a projection picture. The TEM has similarities in lots of ways to the traditional (compound) light microscope.
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The cell membrane has a complex structure that allows it to carry out its function for the cell. Which diagram best represents this structure?
Answer: I believe your answer should be diagram D.
Which of the following is
MOST difficult to regulate?
A. liquid waste (effluent) leaving a factory
B. liquid waste (effluent) leaving a power plant
C. runoff from agricultural lands
D. water leaving a sewage treatment plant
It is difficult to regulate liquid waste (effluents) leaving a factory, as there is no means of containment and remediation is difficult.
A. liquid waste (effluents) leaving a factoryHow are liquid effluents generated in industries?Industrial Effluents, on the other hand, will have their generation linked to the typology and the industrial process, in this way, all the water that was not lost through evaporation, infiltration and that ends up left over from the production process, that is, that is not incorporated into the final product, ends up becoming effluent.
How is waste generated by industries disposed of?The most used treatments for this type of waste are the aerobic and anaerobic process, which use biological agents, such as
bacteriaalgae and protozoato degrade the organic matter of the effluents.
With this information, we can conclude that Industrial waste is a wide variety of leftovers, waste or remains originating from manufacturing activities.
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what term is used to describe a period characterized by very high rates of speciation?
Periods characterized by very high levels of speciation are called adaptive radiation.
Adaptive radiation is a period when there is a rapid increase in the number of species characterized by rapid ecological and morphological diversity with a common ancestor. Adaptive radiation is part of the theory of descent with modification, although it expresses evolution in closely related forms and not in novel designs.
Selection of different habitats can cause changes in anatomy and physiology, even groups of organisms that live in the same habitat but different food choices can also cause anatomical and physiological changes in the bodies of these living things.
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Can someone please help me? :(
Answer:
C
Explanation:
trust
Answer:
It's C and A
Explanation:
assuming that mugudia uses the lifo cost flow assumption, what would be the amount of the lifo reserve?
This calculation assumes that there are no changes in Mugudia's inventory quantity during the accounting period and that its inventory cost has remained stable.
Assuming that Mugudia uses the LIFO cost flow assumption, the LIFO reserve is the difference between the inventory's historical cost under the first-in, first-out (FIFO) method and its cost under the LIFO method. In other words, the LIFO reserve is the amount that Mugudia could reduce its taxable income if it switched from LIFO to FIFO accounting.
The LIFO reserve represents the portion of inventory value that is not currently reflected in the company's balance sheet. Therefore, to determine the amount of Mugudia's LIFO reserve, we need to compare the company's inventory cost under the LIFO method to its cost under the FIFO method.
If Mugudia does not disclose its FIFO inventory value, we can estimate the LIFO reserve by using the following formula:
LIFO reserve = Ending inventory value under FIFO - Ending inventory value under LIFO
In summary, to determine the amount of Mugudia's LIFO reserve, we need to compare the inventory cost under LIFO to its cost under FIFO. Without more information, we cannot calculate the exact LIFO reserve.
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the primary function of the krebs cycle is to
The Krebs cycle's primary purpose is to generate energy, which is then stored and transmitted as ATP or GTP. The cycle plays a key role in other biosynthetic processes as well.
What is the main primary function of the Krebs cycle?The production of ATP from the energy released during citric acid hydrolysis is the major purpose of the citric acid cycle in metabolism. As a means of releasing energy, anabolism creates larger molecules out of smaller ones.
Including those that create amino acids, nucleotide bases, and cholesterol, which are necessary as intermediates in the product Therefore, ion of other compounds.
Therefore, Using the Krebs cycle's carriers, the Krebs cycle's primary purpose is to move highly energetic electrons to the electron transport chain.
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In contrast to most animals, which resource do plants typically compete for? sunlight water space food *will mark brainliest!*
Answer:
Sunlight
Explanation:
Plants typically compete for sunlight since it helps them split Water molecules or H2O into hydrogen molecule and oxygen molecule. The splitting of water molecules helps them to prepare food by undergoing the photosynthesis process.
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The reason(s) why glucose oxidation occurs in multiple, enzyme catalyzed steps that result in small chemical transformations is/are
The reason why glucose oxidation occurs in multiple, enzyme-catalyzed steps that result in small chemical transformations is to efficiently harness the energy stored in glucose molecules.
Breaking down glucose in small steps allows the energy released from each step to be captured and stored in molecules like ATP, which can then be used by cells for various metabolic processes. Additionally, breaking down glucose in small steps also helps to prevent a large, uncontrolled release of energy that could be damaging to the cell.
Enzymes are used to catalyze each step of glucose oxidation, allowing for precise control over the process and ensuring that each step occurs at the appropriate rate. Overall, this highly regulated process of glucose oxidation enables cells to efficiently convert the energy stored in glucose into a form that can be used for cellular activities.
The process of glucose oxidation occurs in multiple, enzyme-catalyzed steps that result in small chemical transformations because it allows for greater control and efficiency of energy release. Glucose is a complex molecule, and the breakdown of its chemical bonds releases a significant amount of energy that can be used by the cell.
However, releasing all of that energy at once would be inefficient and potentially harmful to the cell.
By breaking down glucose into smaller, more manageable pieces through a series of controlled steps, the cell can harness the energy released in a controlled manner and use it to power various cellular processes.
The use of enzymes also allows for the regulation of these steps, ensuring that they occur only when needed and at the appropriate rate.
In addition, the multiple steps of glucose oxidation allow for the production of ATP, the primary energy currency of the cell, in a more efficient manner.
ATP production is coupled with the release of energy from the breakdown of glucose, so breaking down glucose into smaller pieces allows for more ATP to be produced for each molecule of glucose oxidized.
Overall, the multiple, enzyme-catalyzed steps of glucose oxidation are necessary for the efficient release and utilization of the energy stored in glucose, while also providing tight regulation and control over the process.
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Which animal is an inverterbrate?
A.trout
B. cat
C. snake
D. termite
Answer:
Termites
Explanation:
A termite is classified as an insect, and insects are inverterbrate.
• What makes animals and plants different
in form and function?
Answer:
Plants take up nutrients in water and make their own food. Animals ingest/ eat food and cannot make food. Animals have soft membranes and have skeletons to give body shape
Explanation:
Answer:
Plants and animals differ in important ways. – The major differences are: Plants take up nutrients in water and make their own food. Animals ingest (eat)food and cannot make food. ... – Animals have soft membranes and have skeletons to give body shape
Explanation:
Please help answer the question!
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i) Amino acids
ii) Phosphorus
Proteins as macromoleculesProteins are macromolecules whose building units are amino acids. In other words, proteins are polymers whose monomers are amino acids.
Since the antibiotics work by breaking down the cell wall proteins of the bacteria according to the passage, it means that the proteins will be broken down to their component amino acids.
Thus, the monomers that the researchers should be looking for in the phagocyte should be amino acids.
Amino acids are themselves made from elements such as nitrogen, oxygen, hydrogen, and carbon. Thus, the only element the researchers are not expected to find if they examine the monomers will be phosphorus.
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How does acid rain cause animals to suffer?
their habitats are destroyed by the severe weather rain can bring
animals can only find food in dry weather so they often go hungry during rain
O acid rain causes their to be less plants for animals to eat
acid rain is only a problem for humans
Acid rain harms numerous animals and plants. Thus, the food web suffers. Acid rain kills lake phytoplankton. As a result, phytoplankton-dependent insects die. Therefore, option (C) is correct.
What is acid rain?Acid rain, also known as acid deposition, is an all-encompassing word that refers to any form of precipitation that contains acidic components, such as sulfuric or nitric acid, and that falls to the ground from the atmosphere in either a wet or dry form. Acid precipitation can take several forms, such as rain, snow, fog, hail, or even dust.
Rain that contains acid can provide significant challenges for a wide variety of flora and fauna. As a direct consequence of this, the entire food web is disrupted. For instance, phytoplankton in lakes might perish as a direct result of acid rain. As a result of there being less phytoplankton available, the insects, which get their nutrition from it, are starting to starve to death.
Therefore, option (C) is correct.
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The _____ is located near the midline in the anterior portion of the thoracic cavity, posterior to the sternum and slightly superior to the heart.
Answer:
mediastinum is located near the midline
Help with this assignment I want to finish it.Item 1.
Digestion refers to the sequence of process in which food are being broken down and are then chemically converted in order for the cells to absorb these nutrients that are important for bodily functions.
The surface along which the crust moves is called a fracture.
True
False
Answer:
False.
Explanation:
Faults are cracks in the earth's crust along which there is movement.
Answer:
False
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What are the differences and similarities between predators and scavengers