Answer:
raccoons
Explanation:
Part E
Why is wind energy considered a renewable and sustainable form of energy
What is the relationship between a double helix and a chromosome?
Answer:
a chromosome contains many genes. A gene is a segment of DNA that provides the code to construct a protein. The DNA molecule is a long, coiled double helix that resembles a spiral staircase.
Explanation:
Human cells have 23 pairs of chromosomes containing DNA. The chromosomes serve as the structure that holds the DNA. The DNA acts as a complete set of instructions that tells our bodies how to develop.
what would happen to you, metabolically, if all your mitochondria were destroyed? group of answer choices you would have much less atp available to think, move muscles, etc. you would have many fewer electrons available to think, move muscles, etc. you would have much less oxygen available to think, move muscles, etc. you would have much less glucose available to think, move muscles, etc.
Mitochondria are cellular organelles that are involved in cellular respiration, which generates adenosine triphosphate (ATP).
ATP is responsible for the body's energy production, which is required for different metabolic functions. A lack of mitochondria would result in a significant impact on the body's metabolic processes.If all your mitochondria were destroyed, you would have much less ATP available to think, move muscles, etc. Metabolically, ATP is essential for the body's metabolic activities. ATP is produced via oxidative phosphorylation, which occurs in the mitochondria. Hence, if the mitochondria are destroyed, the body cannot produce ATP via oxidative phosphorylation, leading to an insufficient ATP supply. As a result, the body's metabolic processes will significantly slow down or stop.
Additionally, you would have much less oxygen available to think, move muscles, etc. Mitochondria are responsible for oxygen utilization in cellular respiration. If the mitochondria are destroyed, oxygen is not effectively used. Hence, less oxygen would be available to think, move muscles, etc.
Furthermore, you would have much less glucose available to think, move muscles, etc. Mitochondria are involved in the process of breaking down glucose during cellular respiration to produce ATP. If mitochondria are destroyed, glucose breakdown would be significantly reduced, leading to lower levels of ATP production. This would result in a lack of glucose available for the body's metabolic activities.
Therefore, a lack of mitochondria would have a considerable impact on the body's metabolic processes, leading to a shortage of ATP, oxygen, and glucose supply.
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What does each letter stand for in Einstein’s equation, E=mc2?
State in words what Einstein’s equation represents.
Explain why Einstein’s equation is so important.
How does Einstein’s equation relate to the energy produced in nuclear reactions?
Answer:
hope this helps, im sorry if it dosent
Explanation:
1-
An equation derived by the twentieth-century physicist Albert Einstein, in which E represents units of energy, m represents units of mass, and c2 is the speed of light squared, or multiplied by itself.
2-
The equation — E = mc2 — means "energy equals mass times the speed of light squared." It shows that energy (E) and mass (m) are interchangeable; they are different forms of the same thing. If the mass is somehow totally converted into energy, it also shows how much energy would reside inside that mass: quite a lot.
3-
Einstein's greatest equation, E = mc2, is a triumph of the power and simplicity of fundamental physics. Matter has an inherent amount of energy to it, mass can be converted (under the right conditions) to pure energy, and energy can be used to create massive objects that did not exist previously
4-
The change in mass is related to the change in energy according to Einstein's equation: ΔE = (Δm)c2. ... The energy corresponding to the mass defect is the nuclear binding energy, the amount of energy released when a nucleus forms from its component particles.
Which luxuries became virtual necessities in the emerging consumer environment of colonial america?
The emerging consumer environment of colonial America saw luxuries become almost virtual necessities for colonists. This was due to the increased wealth and purchasing power of colonists, combined with a variety of new imported goods and services from Europe and the West Indies.
As such, items such as textiles, furniture, firearms, cutlery, alcohol, and even the latest fashions became an essential part of colonial households. The desire to keep up with the latest trend also saw decorative items for the home, such as china and glassware, also become highly desirable.
Additionally, due to the large amount of new goods available, colonists had the opportunity to purchase items of quality and extravagance never seen before, such as fine jewelry, luxury clothing, and imported curiosities such as shells, coral, and exotic animal hides.
Through these acquisitions, luxury and extravagance maintained a certain level of prestige that was highly sought after in this new consumer environment.
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PLEASE HELP ASP!! WORTH 45 BRANILY PONTS
Answer:
Replacement Fossils
Explanation:
Replacement occurs when the original shell or bone dissolves away and is replaced by a different mineral; when this occurs with permineralization, it is called petrification. In compression, the most common form of fossilization of leaves and ferns, a dark imprint of the fossil remains.
(Fun Fact: The actual most common type of fossils found are trace fossils.)
Evaluate the model.select that do NOT accurately identify the structures labeled in the picture. Choose all that apply.
Answer:
C,)
D,)
Explanation:
Whoever answers first, i will give you a brainly
Which of the following fuels is made in a bio digester?
1. hydrogen
2. oxygen
3. methane
4. carbon monoxide
Answer:
methane
Explanation:
because this fuel is generated by the breakdown of organic matter by anaerobic bacteria and is used in energy production . It is a renewable energy source produced biologically through anaerobic digestion. It occurs naturally in compost heaps, as swamp gas, and as a result of enteric fermentation in cattle and other ruminants. It is burned to generate heat or used in combustion engines to produce electricity.
What structures do a caterpillar have that allows them to survive in its environment
how do cells become differentiated? some cells contain maternal chromosomes and som contain paternal chromsomes
Answer:
They differentiate through the process of mitosis
Explanation:
A cross section of part of a plant exposes epidermis, a thick cortex, and a central cylinder of xylem and phloem. This part is a _____.
A cross section of part of a plant that exposes epidermis, a thick cortex, and a central cylinder of xylem and phloem is a root.
The cross section of a plant that exposes epidermis, a thick cortex, and a central cylinder of xylem and phloem is most likely a root. Roots are responsible for anchoring the plant into the soil and absorbing water and nutrients through their epidermis and cortex layers. The central cylinder of xylem and phloem is also a characteristic feature of roots, as they transport water and nutrients throughout the plant.
In the cross section of a plant root, the outermost layer is the epidermis, which provides protection and absorption of water and nutrients. The cortex lies beneath the epidermis, acting as storage for carbohydrates and other nutrients. Finally, the central cylinder (or vascular cylinder) contains xylem and phloem, which are responsible for transporting water, minerals, and nutrients throughout the plant.
Based on the structure described in the question, the part of the plant being referred to is a root, as it contains the epidermis, a thick cortex, and a central cylinder of xylem and phloem.
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Catalysts at Work
Imagine you are in a laboratory. You are exploring
the following reaction: A + B → C
When the product C is created, bubbles form.
When 10mL of A is added to 10mL of B, the
reaction takes twenty seconds. Your teacher gives
you three unknown substances (X, Y, and Z), one
of which is a catalyst for the reaction.
Design an experiment to test substances X, Y, and
Z to determine which one is a catalyst for the
reaction.
DONE ✔
10 of 15
To figure out which is the catalyst, create three test tubes and add the unknown compounds X, Y, and Z to each one. The reaction that produces C significantly faster than the original reaction A + B ⇒ C will be the catalyst.
A catalyst is any substance that accelerates the rate of a reaction without being consumed.
Therefore, to identify which unknown substance is a catalyst, the following experiment can be done:
Prepare three test tubes each containing reactant A and reactant B.Now add the unknown substance X to the first test tube.Similarly, add unknown substance Y to the second test tube and unknown substance Z to the third test tube.Record the time for each reaction until the bubbling stops.Examine each test tube and observes which one completes the reaction the quickest and which one stops producing bubbles fastest.Therefore, the test tube that stops producing bubbles first, contains the catalyst.
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Where does the exchange of oxygen (from the air) with carbon dioxide (from the cells) take place?
A. Where are the bronchi meet the bronchioles
B. Where the blood meets the cells
C. Where the nasal passages meet the air
D. Where are the alveoli meet capillaries
Answer:
The Answer is Option D.
Exchange of respiratory gases, oxygen and carbon dioxide take place in the alveoli of the lungs. Oxygen which is inhaled from the atmosphere diffuses through the walls of the alveoli and reaches to the adjacent capillaries into the red blood cells.
Answer:
D. Where are the alveoli meet capillaries
Which will increase the rate of a chemical reaction?
SE38
adding a positive catalyst
decreasing the pressure
decreasing the temperature
adding a negative catalyst
Answer:
The answer is option 1.
Explanation:
Adding catalyst will increase(speed up) the rate of reaction.
Rate of reaction increase :
temperature increases
pressure increases
adding enzyme(catalyst)
Meat and poultry products must be refrigerated or frozen after processing and before shipment to inhibit spoilage and
growth of pathogens. During transportation and storage, the challenge is to maintain proper refrigeration temperatures.
In the United States, most food is transported by truck. However, meat, poultry, and egg products may be transferred to and
from other modes of transportation during shipment and held at intermediate warehouses as well as at transfer or handling
facilities, such as airports, break-bulk terminals, and rail sidings. Because transportation and storage are vital links in the
farm-to-table food chain, effective control measures are essential at each point in the food distribution chain to prevent
unintentional contamination.
Use the relevant literature and the information in the extract to discuss how the characteristics of a product affects its
packaging and explain the main actions that should be taken to ensure food safety when transporting fresh meat
products. ( 20 marks)
Proper packaging and temperature control are vital when transporting fresh meat products to ensure food safety and prevent contamination. Adherence to sanitation practices and coordination among stakeholders is crucial.
Fresh meat products require specific packaging to ensure food safety during transportation. Packaging should provide a protective barrier against damage, moisture loss, and contamination. To ensure safety, temperature control is crucial, and refrigerated trucks with monitoring systems should be used.
Sanitary practices, including regular cleaning and sanitization of vehicles, are important to prevent cross-contamination. Proper handling and storage procedures at transfer facilities are necessary. Effective communication among stakeholders is also crucial. By implementing these measures, the risk of contamination and spoilage can be minimized, ensuring the safety and quality of fresh meat products throughout the distribution process.
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Which statement describes a possible negative impact of scientific research
regarding genetically modified mosquitos?
A. Research regarding genetically modified mosquitos might
encourage research regarding other genetically modified
organisms.
B. Reducing the population of mosquitos might reduce the
transmission of mosquito-borne diseases.
C. Creating genetically modified mosquitos might result in a
reduction in the use of pesticides.
D. Permanently changing the genetic makeup of mosquitos might
cause unexpected harm to the environment.
WILL GIVE BRAINLIEST IF CORRECT
At one time, farmers had to spray insecticides on their fields to protect their crops from insects. Today, farmers can buy seeds that produce plants that are resistant to many insects. Which process contributed to the development of these seeds?
a. Cloning
b. Artificial Selection
c. Genetic Engineering
d. Asexual Reproduction
Answer:
C
Explanation:
Genetic Engineering is the largest contributor, but there's an argument to be made for artificial selection.
Answer:
The Answer Is C!!
Explanation:
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Why is the production possibility curve drawn as a bowed-out curve?
Answer:
he downward slope of the production possibilities curve is an implication of scarcity. The bowed-out shape of the production possibilities curve results from allocating resources based on comparative advantage.
Explanation:
Which of the following descriptions correctly defines a genome? A) representation of a complete set of a cell's polypeptides B) the complete set of an organism's genes C) the complete set of an organism's polypeptides D) a karyotype 56) S7) The human X and Y chromosomes
The correct description that defines a genome is the complete set of an organism's genes. The correct answer is (B).
The whole collection of genes or genetic material found in an organism is referred to as its genome. It consists of all the DNA sequences, both coding, and non-coding, that are required for an organism's growth, functionality, and traits. The genome is made up of all the genetic material that is passed down from generation to generation and provides the instructions for creating and sustaining the organism.
The 23 pairs of chromosomes in cell nuclei plus a tiny DNA molecule present in each mitochondrion make up the human genome, which is a full collection of nucleic acid sequences for humans. The nuclear genome and the mitochondrial genome are often addressed separately.
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Food stored in warm, moist places will decay than food stored in cool, dry places.
Warm and moist conditions are the most ideal for decomposition of organic matter and decay of food instead of cool and dry places.
Food spoilage is a result of both natural food degradation and contamination from microbes including bacteria, moulds, and yeasts. When moisture and desired temperatures are present, these breakdown bacteria may proliferate quickly.
An exponential rise in decomposition rates is caused by rising temperature under ideal moisture conditions.
Warm and moist places facilitate growth of detritivores like bacteria and fungus which are saprophytic and degrade the organic matter and decay the food stored in such places. Detritivores favour warm and moist conditions over cool and dry conditions for their growth.
Decomposition is the process of decay and degradation or breakdown of organic matter by bacteria and fungi into smaller substances.
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In order for a memory to be stored, it must first be:
A. ablated.
B. modeled.
C. retrieved.
D. encoded.
In order for a memory to be stored, it must first be encoded. The process of encoding involves transforming incoming information or experiences into a form that can be stored and later retrieved as a memory. Option(D)
Encoding can occur through various mechanisms, such as converting sensory information into neural impulses, organizing and categorizing information, and associating it with existing knowledge or prior experiences.
Once the information is encoded, it can be stored in different memory systems within the brain, such as short-term memory or long-term memory. Storage involves the retention of encoded information over time.
Retrieval, mentioned in option C, refers to the process of accessing and recalling stored memories when needed. It is the act of bringing stored information back into conscious awareness.
To summarize, in the context of memory, encoding is the initial process that allows information to be stored, while retrieval is the later process of accessing stored information. Therefore, the correct answer is D. encoded.
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technological methods used to assess phylogenetic relationships at the scale of molecular genetics
The technological methods used to assess phylogenetic relationships at the scale of molecular genetics are called molecular phylogenetics.
Phylogenetics refers to the study of evolutionary relatedness among different species. It is the process of developing hypotheses of evolutionary relatedness among groups of organisms, known as phylogenies. It involves analyzing their similarities and differences based on the morphology, genes, and behavior of the organisms. Molecular phylogenetics is a branch of biology that deals with the study of evolutionary relationships among organisms based on their molecular genetic characteristics. This method utilizes molecular sequences of DNA and RNA to infer phylogenetic relationships between different species. This technique provides a more precise estimation of evolutionary relationships between different organisms. Molecular phylogenetics uses several technological methods to assess the relationships between different organisms. Some of these techniques include: Polymerase Chain Reaction (PCR)DNA SequencingRestriction Fragment Length Polymorphism (RFLP)Hybridization techniques Phylogenetic analysisConclusionMolecular phylogenetics is a field of biology that deals with the study of evolutionary relationships among organisms based on their molecular genetic characteristics. It involves using several technological methods to assess phylogenetic relationships between different species. Some of these methods include Polymerase Chain Reaction (PCR), DNA Sequencing, Restriction Fragment Length Polymorphism (RFLP), Hybridization techniques, and Phylogenetic analysis.
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Tay-Sachs disease is an inherited disease that is caused by a recessive allele. If a man and his wife, who are both carriers, have three children, what is the probability of each of the following? Show your calculations and give your answers as fractions. a) All their three children do not have the disease. b) One or more of their three children have Tay-Sachs disease. c) All three children have the Tay-Sachs disease. d) At least one child is phenotypically normal without the disease.
a. All their three children do not have the disease: 27/64
b. One or more of their three children have Tay-Sachs disease: 37/64
c. All three children have the Tay-Sachs disease: 1/64
d. At least one child is phenotypically normal without the disease: 63/64
a) The probability that all three children do not have the disease can be calculated using the probability of each child being unaffected, which is the complement of the probability of having the disease.
Since both parents are carriers, they have a 1/4 chance of passing on the disease allele and a 3/4 chance of passing on the normal allele.
Probability of each child being unaffected = (3/4) * (3/4) * (3/4) = 27/64
b) The probability that one or more of their three children have Tay-Sachs disease can be calculated by subtracting the probability of none of the children having the disease from 1.
Probability of at least one child having the disease = 1 - Probability of none having the disease
Probability of none having the disease = (3/4) * (3/4) * (3/4) = 27/64
Probability of at least one child having the disease = 1 - 27/64 = 37/64
c) The probability that all three children have Tay-Sachs disease can be calculated using the probability of each child having the disease, which is 1/4.
Probability of all three children having the disease = (1/4) * (1/4) * (1/4) = 1/64
d) The probability of at least one child being phenotypically normal without the disease can be calculated by subtracting the probability of all three children having the disease from 1.
Probability of at least one child being phenotypically normal = 1 - Probability of all three having the disease
Probability of all three having the disease = (1/4) * (1/4) * (1/4) = 1/64
Probability of at least one child being phenotypically normal = 1 - 1/64 = 63/64
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What is the purpose of the object lens ?
Answer:
The objective lens gathers light from the specimen, magnifies the image of the specimen, and projects the magnified image into the body tube.
How long did the initial contamination of the Hudson River last?
Answer:
30 years
Explanation:
Answer:
30 Years
Explanation:
The Hudson river was contaminated in 1947-1977. Which is about 30 years
choline is group of answer choices a conditionally essential nutrient. an essential nutrient. a mineral. responsible for muscle contraction and relaxation.
Choline was officially recognized as an essential nutrient by the Institute of Medicine in 1998. Its role in the body is complex. It is needed for neurotransmitter synthesis (acetylcholine), cell-membrane signaling (phospholipids), lipid transport (lipoproteins), and methyl-group metabolism (homocysteine reduction).
Best describes the relationship between photosynthesis and cellular respiration in terms of energy and matter
Answer:
Photosynthesis makes the glucose that is used in cellular respiration to makeo ATP. ... While photosynthesis requires carbon dioxide and releases oxygen, cellular respiration requires oxygen and releases carbon dioxide. It is the released oxygen that is used by us and most other organisms for cellular respiration.
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the order of nitrogen nases determines
Answer:
The order of these bases is what determines DNA's instructions, or genetic code.
Explanation:
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Answer:
The four types of nitrogen bases are adenine (A), thymine (T), guanine (G) and cytosine (C). The order of these bases is what determines DNA's instructions, or genetic code.
Explanation:
Molecules that can be used in biotechnology include:
a. neither of these can be used
b. both of these can be used
c. DNA
d. Proteins
The molecules that can be used in biotechnology include DNA and proteins (Option b. both of these can be used).
DNA, or deoxyribonucleic acid, is a molecule that contains genetic information. It carries the instructions for the development and functioning of all living organisms. In biotechnology, DNA can be manipulated and modified to produce desired outcomes. For example, scientists can use recombinant DNA technology to introduce specific genes into organisms, creating genetically modified organisms (GMOs) that have desired traits or produce valuable substances, such as insulin or enzymes.
Proteins are another important class of molecules used in biotechnology. Proteins are large, complex molecules that perform various functions in living organisms. They can be enzymes, antibodies, hormones, or structural components, among other roles. In biotechnology, proteins can be isolated, modified, or synthesized to serve specific purposes. For instance, recombinant DNA technology can be used to produce large amounts of a specific protein of interest, such as a therapeutic protein used in medicine.
So, to answer the question, the correct option would be b. both DNA and proteins are essential components in the field of biotechnology, and they are widely used for various applications, ranging from genetic engineering to medical research and industrial processes.
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Blank are organism that get their enegry from blank resources meaning they get their own food. These organism are called blank
Autotrophs are living things that produce their own food and obtain their energy from nonliving sources. The another name for these organisms is Producers.
Because organism eat producers or other consumers, heterotrophs are referred to as consumers. Humans, dogs, and birds are all instances of heterotrophs. In a food chain, a group of creatures that supply energy and nutrients to other organisms, heterotrophs occupy the second and third levels.
The two main ways that organisms obtain energy are through exposure to light or chemical oxidation. Autotrophic organisms, or producers, transform light or chemicals into energy-rich organic molecules starting with carbon dioxide, which has a low energy content (CO2). The other species, the heterotrophs, receive their energy from these autotrophs.
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Correct Question:
___ are organism that get their energy from blank resources meaning they get their own food. These organism are called _____.