Answer:
Due to Kinetic energy
Explanation:
At low temperatures enzymes are simply inactive. As temperature is increased the enzymes and substrate gain kinetic energy
fitb. quizlet the air pressure normally ____ before a cold front passes and ____ after a cold front passes.
fitb. Quizlet: The air pressure normally decreases before a cold front passes and increases after a cold front passes.
Before a cold front passes, there is typically a decrease in air pressure. This is because a cold front is associated with the movement of a mass of colder air replacing a mass of warmer air. As the colder air advances, it displaces the warmer air, leading to a decrease in air pressure.
After a cold front passes, there is generally an increase in air pressure. This is because the cold front brings in denser and cooler air, which sinks and creates higher pressure at the surface. The cooler air is often more stable, leading to clearer skies and higher pressure conditions.
It's important to note that these patterns are generalizations and can vary depending on specific weather systems and local conditions. Other factors, such as wind patterns and atmospheric disturbances, can also influence air pressure changes associated with cold fronts.
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Lyme disease, rabies, and malaria are mostly spread bya.bites from animals, such as dogs and mosquitoes.b.contaminated foods, like chicken and beef.c.contaminated objects, like doorknobs.d.indirect contact with an infected person.____6.Many pathogens are kept out of the body by thea.immune system.b.inflammation response.c.lymphatic system.d.skin. ____7.Your body's first line of defense against infectious disease includesa.skin, mucous membranes, saliva, and tears.b.phagocytes, lymphocytes, and pus.c.T cells, B cells, and antibodies.d.the lymphatic system, immune system, and inflammation response.____8.The body's second line of defense against pathogens isa.a vaccine.b.immunity.c.inflammation.d.the skin.____9.The body's third and most sophisticated line of defense against pathogens isa.a vaccination.b.inflammation.c.the immune system.d.the skin.____10.What produces active immunity
Answer:
Explanation:
6. Lyme disease, rabies, and malaria are mostly spread by bites from animals, such as dogs and mosquitoes.
7. Your body's first line of defense against infectious disease includes skin, mucous membranes, saliva, and tears.
8. The body's second line of defense against pathogens is Immunity.
9. .The body's third and most sophisticated line of defense against pathogens is a vaccination.
10.
Chromosomes contain all the genetic ________, all the instructions you need to make a person.
PLEASE HELP ITS BILL NYE VIDEO FILL IN THE BLNK
Answer:
Could the blank possibly be genetic code? Not really sure, but I think that it makes sense.
Which of the following pollutants is used in agriculture and landscaping and might cause nerve damage, birth defects and cancer in humans?
A. particulate matter
B. lead
C. pesticides
D. bacteria
Other:
Answer: pesticides
Explanation:
choose all that are effects of the sympathetic division on the circulatory system. multiple select question. increased heart rate vasoconstriction of blood vessels in the skin vasodilation of visceral blood vessels increased blood clotting decreased heart rate vasoconstriction of visceral blood vessels need help? review these concept resources.
The effects of the sympathetic division on the circulatory system are:
- Increased heart rate
- Vasoconstriction of blood vessels in the skin
- Vasodilation of visceral blood vessels
Explanation to the above given short answers are written below,
- Increased heart rate: The sympathetic division of the autonomic nervous system stimulates the release of norepinephrine, which binds to beta-adrenergic receptors in the heart, leading to an increased heart rate.
This response prepares the body for physical activity or stress by supplying more oxygen and nutrients to the muscles.
- Vasoconstriction of blood vessels in the skin: Sympathetic stimulation causes the constriction of blood vessels in the skin.
This response helps redirect blood flow to vital organs and muscles, which is important during fight-or-flight responses when increased blood supply to these areas is needed.
- Vasodilation of visceral blood vessels: The sympathetic division can also cause vasodilation in blood vessels supplying visceral organs, such as the liver and kidneys. This response allows for increased blood flow to these organs, supporting their metabolic functions.
The other options listed (increased blood clotting, decreased heart rate, vasoconstriction of visceral blood vessels) are not typically associated with the effects of the sympathetic division on the circulatory system.
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what is photosynthesis
Answer:
Explanation:
photosynthesis is the process in which algae plants and bacteria use energy from the sun and turn it into food for themselves
Amino acids are used to build
Answer:
Hello!
Explanation:
[tex]⭐ \red{\textbf{amino \: acids \: are \: used \: to \: build}}[/tex]
Amino acids are organic compounds that combine to form proteins.Amino acids are organic compounds that combine to form proteins. The human body uses amino acids to produce proteins to help the body break down food.
I hope I've helped :D
regards
atte:
Ángela
❤️
Answer:
Proteins.
Explanation:
"For a brick, He flew pretty good" - Sargent Avery Johnson
The diagram below shows a diploid cell with two homologous pairs of chromosomes. Due to independent assortment and crossing-over, the possible allelic combinations that could be found in gametes by the meiotic division of this cell are _________________.
A
Bb, Dd, BB and DD
B
BD, bD, Bd and bd
C
BBDd and BDbd
D
Bd and bD only
Due to independent assortment and crossing-over, the possible allelic combinations found in gametes by the meiotic division of this cell are B and D can be on one chromosome, while b and d can be on the other. Therefore, the correct answer is (B) BD, bD, Bd, and bd.
What is crossing-over?Crossing-over is a process that occurs during meiosis, the cell division process that produces gametes (sperm and egg cells) in sexually reproducing organisms. During crossing-over, homologous chromosomes exchange genetic material, resulting in the creation of new combinations of alleles.
What is the law of independent assortment?The law of independent assortment is a fundamental principle in genetics that describes how different genes are inherited independently. Gregor Mendel first proposed this principle.
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Meiosis and Mutations are both sources of/for:
O Genetic Drift
O Polyploidy
O Mutations
Genetic Diversity
Answer:
genetic drift
please mark as brainlest
think of something that would make your life easier, anything from an automatic toothpaste dispenser to an awning that opens up when it senses rain, and imagine how you could actually create it. do you agree with massimo that the arduino makes microcontrollers and coding available to anyone, regardless of experience?
Yes, I agree with Massimo that Arduino makes microcontrollers and coding available to anyone, regardless of experience. Arduino is an open-source electronics platform that provides a user-friendly environment for creating and programming interactive projects.
It simplifies the process of hardware prototyping and allows individuals with little to no prior experience in electronics or programming to dive into the world of microcontrollers.
To create a helpful device like an automatic toothpaste dispenser, Arduino can be a valuable tool.
With Arduino, you can connect sensors, actuators, and other components to build a system that detects the presence of a toothbrush and dispenses an appropriate amount of toothpaste automatically.
Arduino's extensive library of pre-built functions and the availability of countless tutorials and examples online make it easier for beginners to understand and implement such projects.
Arduino's simplicity and versatility have contributed to its popularity among hobbyists, students, and professionals alike. It has democratized access to microcontroller technology and coding by providing an accessible platform that encourages creativity and innovation.
Whether it's creating automated home systems, robotics, or interactive artworks, Arduino opens up possibilities for individuals from diverse backgrounds to turn their ideas into reality.
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Which of these proteins is responsible for preventing cell cycle progression if DNA damage is detected?
Rb
p53
ras
E7
The protein responsible for preventing cell cycle progression if DNA damage is detected is p53, option B is correct.
When DNA damage occurs, p53 is activated and plays a crucial role in maintaining genomic stability. It acts as a transcription factor, promoting the expression of genes involved in cell cycle arrest, DNA repair, and apoptosis. Upon detection of DNA damage, p53 activates the transcription of the CDK inhibitor p21, which inhibits the activity of cyclin-dependent kinases (CDKs), leading to cell cycle arrest at the G1 phase.
This pause allows time for DNA repair mechanisms to fix the damaged DNA before proceeding with cell division. If the damage is too severe to repair, p53 can also initiate programmed cell death or apoptosis to prevent the propagation of genetically compromised cells, option B is correct.
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The complete question is:
Which of these proteins is responsible for preventing cell cycle progression if DNA damage is detected?
A) Rb
B) p53
C) ras
D) E7
Need help with the following !
Which of these types of muscles are striated? Check all of the boxes that apply.
1) skeletal muscles
2) cardiac muscles
3) smooth muscles
Answer:
Muscle Types: Cardiac and skeletal muscle are both striated in appearance, while smooth muscle is not. Both cardiac and smooth muscle are involuntary while skeletal muscle is voluntary.
Answer: skeletal muscles & cardiac muscles
Explanation: Skeletal and cardiac muscles are striated. Smooth muscles are not.
22. What is the advantage of cells being so small?
A. Small cells contain a greater quantity of enzymes than large cells.
B. Small cells do not require energy and get everything they need from osmosis.
C. The cell has a smaller surface area to volume ratio which means it can move nutrients into
the cell and waste out more efficiently.
D. The cell then has a larger surface area to volume ratio which means it can move nutrients
into the cell and waste out more efficiently.
PLEASE EXPLAIN WHY
Answer:
B. Small cells do not require energy and get everything they need from osmosis.
Explanation:
Small cells contain a greater quantity of enzymes than large cells. The cell has a smaller surface area to volume ratio which means it can move nutrients into the cell and waste out more efficiently.
4 A population of tree-climbing lizard lives on one bank of a large river.
The other bank of the
river is a treeless prairie. During a flood, 40
lizards were transferred to the prairie side
of the river. After 200
generations, this transferred population of lizard lost the ability to
climb.
Which mechanism is MOST likely responsible for this loss of function
within the transferred
population?
natural selection
genetic drift
gene flow
mutation
Answer:
Genetic Drift, it is a textbook example of genetic drift.
hope this helped <3
which group of genes in drosophila embryos must be mutated if the result is elimination of a significantly sized, contiguous region of segmentation?
The group of genes in Drosophila embryos must be mutated if the result is the elimination of a significantly sized, contiguous region of segmentation is gap genes.
What are gap genes?
Gap genes are a group of genes that are expressed throughout the central region of the Drosophila embryo. Gap genes, along with other segmentation genes, are responsible for establishing the boundaries between segments in the developing Drosophila embryo. Gap genes are classified into three broad categories: anterior, middle, and posterior, based on their expression patterns.
Gap genes in Drosophila are required for correct patterning of the anterior-posterior axis of the embryo. Gap genes are necessary for defining the broad regions of segmentation, which are then subdivided into smaller regions by pair-rule genes. The proper patterning of the Drosophila embryo requires the activity of gap genes.
In contrast to maternal genes, which establish the anterior-posterior axis of the embryo, gap genes define large, contiguous regions of the developing embryo and are necessary for setting up the basic body plan.
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For a biologist studying a small fish population in the lab, which Hardy—Weinberg condition is easiest to meet?
A) no selection
B) no genetic drift
C) no gene flow
D) no mutation
E) random mating
The Hardy-Weinberg condition that is easiest to meet for a biologist studying a small fish population in the lab is no gene flow, option C is correct.
No gene flow refers to the absence of migration or movement of genes between populations. In a lab setting, it is relatively easier to control and isolate fish populations, preventing the introduction or exchange of genes from external sources. This can be achieved by maintaining closed systems, where fish populations are kept separate from other populations, ensuring no genetic material is exchanged.
On the other hand, meeting the conditions of "no selection," "no genetic drift," "no mutation," or "random mating" may be more challenging to achieve in a controlled laboratory environment due to factors such as limited genetic diversity, genetic drift in small populations, mutation rates, and behavioral constraints on mating, option C is correct.
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A green rat snake that lives in the grass and a brown rat snake that lives in the desert is a form of _______________
a
genetic engineering
b
natural selection
c
selective breeding
d
simple variation
Answer:
Natural selection
Explanation:
Hope this helps :)
Which best describes a recessive allele?
Answer:
B (imo)
Explanation:
Answer:
The answer for the question is D
The total volume of water that flows past a certain point in a given time, often expressed in thousands of cubic meters per second, is described as a stream's The total volume of water that flows past a certain point in a given time, often expressed in thousands of cubic meters per second, is described as a stream's flow
The total volume of water that flows past a certain point in a given time, often expressed in thousands of cubic meters per second, is described as a stream's flow. Accurate measurements of stream flow are crucial for many applications, such as flood forecasting, irrigation planning, and hydroelectric power generation. The flow rate of a stream is usually measured in cubic meters per second (cms), and it represents the volume of water that flows past a certain point per second.
The stream's flow may vary significantly depending on the season, precipitation, and other factors. Some streams may be entirely dry in summer, while others may carry several thousand cubic meters of water per second.The total volume of water that flows past a certain point in a given time can be expressed as a rate in units of volume per time, such as cubic meters per second or thousands of cubic meters per second. For example, a stream's flow rate of 5000 cubic meters per second means that 5000 cubic meters of water flow past a given point on the stream every second. In stream flow rate is the total volume of water that flows past a certain point in a given time, often expressed in thousands of cubic meters per second. It can be calculated as the product of the stream's cross-sectional area and its average velocity. The flow rate of a stream can vary significantly depending on precipitation, season, and other factors, and it is an important consideration for the management of water resources. Accurate measurements of stream flow are crucial for many applications, such as flood forecasting, irrigation planning, and hydroelectric power generation.
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How can fossils be used to determine the relative ages of rock layers?
Answer:
they use radiometric dating methods (find out what day it was formed)
Explanation:
based on the natural radioactive decay of certain elements such as potassium and carbon, as reliable clocks to date ancient events.
how it reacts to certain chemicals can determine how old it is
hat are the two possibilities for Fred’s genotype?BRAIN 10 POINTS
Answer:
11%2F6_ -Amoeba Sisters Video Recap and Practice Problems.docx
Explanation:
#maxmeasabrainliestAntibodies start the inflammatory response. True or False?????????
Answer:
True
Explanation:
Courtney and Kenzie are doing an experiment to determine which fish food gives their fish more energy. They have two fish tanks, each with the same number, size, and type of fish. The tanks are the same size and have identical filters and decorations. They were both filled with store-bought spring water and are cleaned at the same time. When the girls submitted their results to a journal for publication, scientists criticized the experiment.
What about the experiment would need to be changed so that scientists might accept their findings?
A) The fish would need to be fed more food.
B) The tanks would need more fish in each one.
C) There would need to be several more tanks of fish.
D) The tanks would need to have a different type of water
When Courtney and Kenzie submitted their results to a journal for publication, scientists criticized the experiment. The experiment would need to be changed so that scientists might accept their findings by having several more tanks of fish.
Why would they need to change their experiment? Scientists criticized the experiment because it is not possible to determine which fish food gives their fish more energy just from two tanks of fish. Having more tanks of fish would mean that the study is more precise and closer to what could happen in the real world. This will result in more precise findings to support or reject the hypothesis that the fish food gives their fish more energy. Therefore, it can be concluded that C) There would need to be several more tanks of fish is the correct option.
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What is the effect of slow climate change?
Answer: Climate change also increases the appearance of more violent weather phenomena, drought, fires, the death of animal and plant species, flooding from rivers and lakes, the creation of climate refugees and destruction of the food chain and economic resources, especially in developing countries.
Explanation: Hope this helps
What is the period of a wave if the wavelength is 100 m and the speed is 200 m/s?
O 0.5 s
o 25
100 s
200.000 s
Answer: 0.5 s
Explanation: speed = wavelength · frequency and period T = 1/ frequency.
Frequency = speed / wavelength = 200 m/s : 100 m = 2 s^-1 and T = 0.5 s
Organs whose activity is simulated by FSH are indicated by
Answer:
Gonads, thyroid gland, adrenal gland
What is an example of nonsense mutation in biology?
An example of a nonsense mutation is in cystic fibrosis, where the amino acid phenylalanine is replaced with a stop codon in the CFTR gene, resulting in a nonfunctional protein that leads to a buildup of mucus in the lungs and other organs. Another example is hemophilia A, which is caused by a nonsense mutation in the F8 gene that results in the production of a truncated, nonfunctional protein product.
A nonsense mutation refers to a type of mutation that results in a premature stop codon, thereby terminating the translation of the protein before it is complete. It can be a point mutation, in which a nucleotide substitution changes a codon that normally encodes an amino acid to one of the three stop codons: UAA, UAG, or UGA.
The stop codons signal the end of the protein sequence, and the protein is terminated prematurely as a result. As a consequence, the protein is usually nonfunctional or partially functional. This mutation can result in a shortened protein product with little or no activity, depending on the location of the mutation in the gene.
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Which statement would be most appropriate when thanking the Band Parents Group for a large college scholarship?
A. You guys are awesome!
B. I am totally psyched about this scholarship.
C. Your generosity shall not be unacknowledged.
D. Thank you very much for this honor,
Answer: Thank you very much for this honor,
Explanation: You should act formally when talking to people who are respected. This is the most obvious choice hence the situation.
Match each characteristic to the synthesis or oxidation of fatty acids.
Fatty acid synthesis:
-occurs in the cytoplasm
-Uses NADPH
-Acyl carrier protein is the acyl carrier
-involves the conversion of a carbonyl to a methylene
-Enzymes are organized in a multienzyme complex
Fatty acid oxidation:
-Uses NAD+
-Uses FAD
-Occurs in the mitochondria
-Coenzyme A is the acyl carrier
-Involves the conversion of a methylene to a carbonyl
Fatty acids are long-chain hydrocarbons having a carboxylic acid functional group. The oxidation of fatty acids provides energy to the body, while their synthesis helps in the production of lipids and the provision of energy for cells.
Decide whether a characteristic corresponds to fatty acid production or oxidation. The conversion of a carbonyl to methylene occurs during fatty acid production, which takes place in the cytoplasm and utilizes NADPH. Enzymes are arranged in a multienzyme complex during fatty acid oxidation. The acyl carrier is Coenzyme A, and the process involves converting methylene to a carbonyl. The processes of fatty acid synthesis and fatty acid oxidation have different features, as shown below: NADPH is utilized throughout the cytoplasmic process of fatty acid production.
In this mechanism, the acyl carrier protein acts as the acyl carrier. A carbonyl is transformed into methylene during this procedure. In this process, the enzymes are also arranged in a multienzyme complex. The mitochondria are where fatty acids are oxidized. NAD+, FAD, and Coenzyme A are utilized in this process, and the acyl carrier is Coenzyme A. The procedure entails changing methylene into a carbonyl. Therefore, it is possible to distinguish between the processes of fatty acid synthesis and oxidation using the above features.
Acetyl-CoA and malonyl-CoA are the starting materials for the process of fatty acid synthesis, which produces fatty acids. It takes place in the cell cytoplasm and is in charge of fatty acid synthesis. Fatty acid oxidation, on the other hand, is the process through which fatty acids are burned off to produce energy for the body. It happens in cellular mitochondria.
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