A coyote can alter its diet to match the seasonal abundance of plants, fruits, or small animals and would therefore be considered a generalist, able to be flexible.
Rodents and lagomorphs were coyotes' most common food sources, which mostly consumed native plant and animal species. In high-density housing, coyotes preferred rodents and non-native plants, while they preferred deer, corn, and native plants in low-density housing. Coyotes take advantage of opportunities to hunt and scavenge. Snowshoe hare, mice, rats, woodchucks, beavers, squirrels, snakes, frogs, fish, birds, and carrion are just a few of the tiny animals they consume (animal carcasses). Additionally, they consume grass, fruits, and berries in the summer and fall.
Hence, coyote adapted to different available diet in season.
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Which of the following is a challenge in maintaining tree plantings or native meadows “no mow zones?” Choose all that apply.
If left unattended, non-native plants can take over the area and kill the native plants
If left unattended, non-native plants can take over the area and kill the native plants
Deer can eat young trees if a tree does not have a proper deer guard tube installed.
Deer can eat young trees if a tree does not have a proper deer guard tube installed.
Native trees and native plants in no-mow zones need to be watered each day for two years.
Native trees and native plants in no-mow zones need to be watered each day for two years.
Native trees and native plants in no-mow zones need to be regularly fertilized.
Answer:
most likely B and you know why? native plants are more dangerous!!!
Explanation:
yes that is my explanation, i learned this in like middle school.
If left unattended, non-native plants can take over the area and kill the native plants. Thus, the correct option is A.
What is no mow zone?A “no mow zone” is refer as a designated section of land purposely not mowed in order to encourage native plant species growth. If left alone for a century or longer, the lawn will transform into a forest.
Low mow zones are ideal habitats for small animals and insects and become rich with species.
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Which of the following would ATP NOT be used for as energy? A. Healing a cut B. Osmosis C. Push ups D. Keeping warm
Answer:
B. Osmosis
Explanation:
Answer: B: Osmosis
Explanation: Since osmosis is a simple diffusion it does not require ATP.
I NEED HELP PLEASE!! There are two forms of PKD- autosomal Dominant and
autosomal recessive. Since
Aditya has the dominant form,
if he marries a woman with no family history of PKD, what
are the chances their children will inherit the gene? Show
a punnett square to illustrate your answer
Answer:
Highly likely
Explanation:
ADPKD-AUTOSOMAL DOMINANT POLYCYSTIC KIDNEY DISEASE:-here aditya is affected with ADPKD,and if he marries a women with nofamily history of such disease ,in autosomal dominant PKD,people of this condition are born with one mutated copy of PKD1 OR PKD2 GENES and there are 90% chances that from one affected person with this disease will pass down to the progeny(next generation) and both male and females are equally affected. As for the punnett square, I don't remember those at all, I'm sorry :(
If Aditya has the autosomal dominant form of PKD, he must have inherited at least one copy of the PKD gene from one of his parents. Therefore, Aditya's genotype is either heterozygous (PKD/Pkd) or homozygous dominant (PKD/PKD).
What is PKD?PKD stands for polycystic kidney disease, which is a genetic disorder that causes multiple cysts to develop in the kidneys. There are two types of PKD: autosomal dominant PKD (ADPKD) and autosomal recessive PKD (ARPKD).
If Aditya marries a woman with no family history of PKD, she is most likely homozygous recessive (pkd/pkd).
Using a Punnett square, we can determine the probability of their children inheriting the PKD gene:
PKD Pkd
pkd Ppkd Ppkd
pkd Ppkd Ppkd
Each box represents a possible offspring genotype, with the probability of each genotype indicated in the box. From this Punnett square, we can see that:
50% of their children will inherit one copy of the PKD gene (heterozygous, Pkd/pkd)
50% of their children will inherit two copies of the normal gene (homozygous recessive, pkd/pkd)
Therefore, there is a 50% chance that their children will inherit the PKD gene.
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Ok so if I don't answer this question right imma get a beating soooo help a brotha out
Answer:Short
Explanation:Also I feel so bad for you.
The ________ is the region between the developing oocyte and the granulosa cells.
The zona pellucida is the region between the developing oocyte and the granulosa cells.
Zona pellucida :A mammalian ovum's zona pellucida, which is made of glycoproteins, is the translucent, more or less elastic, noncellular outer layer or envelope. Glycoproteins are in charge of sperm's species-specific attachment to unfertilized eggs, the induction of acrosomal exocytosis in sperm, and the inhibition of sperm attachment to fertilized eggs.
The glycoprotein layer known as the zona pellucida covers the mammalian oocytes. The corona radiata and the oocyte plasma membrane are separated by a zone called the zona pellucida. The zona pellucida is crucial for effective fertilization because it triggers the acrosome reaction, which allows sperm to enter the secondary oocyte.
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Why do you think sundews need to capture insects?
A. The sundew is unable to make enough food.
B. The insects provide water to the plant.
C. The sundew is protecting itself from insects.
D. The insects provide nutrients that are missing from the soil.
Answer:
d
Explanation:
Some plants eat insects because they don't get enough of nitrogen from the soil and to regulate the amount of nitrogen they eat insects. These plants are called Insectivorus plants.
Answer:I think sundew is a carnivorous plant isn't it?Then it must be its nature to capture insect and eat them.
Explanation:I don't say you must have to mark my ans as brainliest but my friend if it has helped you a lot then don't forget to thank me...
The moon is an example of a _________ object while a lit match is an example of a _______object.
Answer:
Moon- non-luminous
Lit match-luminous
my learnings about fossil fuels are
Answer:
oil
coal
natural gas are the fossil fuels
10 different terminologies used in biology
abdomenabdomenabiogenesisabdomenabiogenesisabsorptionabdomenabiogenesisabsorptionactivation energyabdomenabiogenesisabsorptionactivation energyactive transportabdomenabiogenesisabsorptionactivation energyactive transportalleleabdomenabiogenesisabsorptionactivation energyactive transportallelealternation of generationsabdomenabiogenesisabsorptionactivation energyactive transportallelealternation of generationsanabolismabdomenabiogenesisabsorptionactivation energyactive transportallelealternation of generationsanabolismGenegenitic
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This forms after fertilization and is made up of a plant embryo.
A. seed, which becomes a diploid cell
B. cotyledon, which becomes a haploid cell
C. cotyledon, which becomes a diploid cell
D. seed, which becomes a haploid cell
E. cotyledon, which becomes a seed
label three parts of a nucleotide
[creds: thoughtco]
A nucleotide consists of three parts: a phosphate group, a 5-carbon sugar, and a nitrogenous base.
Predict the effect on the inducibility of the lac operon of a mutation that disrupts the function of: The crp gene, which encodes the CAP protein. Absence of a functional crp would compromise the positive control exhibited by CAP. Presence of a functional crp would compromise the positive control exhibited by CAP. The CAP-binding site within the promoter. With a CAP binding site there would be a reduction in the inducibility of the lac operon. Without a CAP binding site there would be a reduction in the inducibility of the lac operon.
If a mutation disrupts the function of the crp gene, which encodes the CAP protein, the positive control exhibited by CAP would be compromised. This means that the inducibility of the lac operon would be negatively affected. Additionally, if the CAP-binding site within the promoter is affected, it would also lead to a reduction in the inducibility of the lac operon, as CAP would not be able to bind and positively regulate the lac operon.
The inducibility of the lac operon would be affected by a mutation that disrupts the function of the crp gene, which encodes the CAP protein. If there is an absence of a functional crp, it would compromise the positive control exhibited by CAP, leading to a reduction in the inducibility of the lac operon. Similarly, if there is a presence of a functional crp, it would also compromise the positive control exhibited by CAP, leading to a reduction in the inducibility of the lac operon. Additionally, if there is a mutation that affects the CAP-binding site within the promoter, there would be a reduction in the inducibility of the lac operon. With a CAP binding site, there would be a decrease in inducibility, while without a CAP binding site, there would also be a reduction in the inducibility of the lac operon.
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Primary immunodeficiencies affecting t cells tend to be more seere than those affecting b cells because?
Primary immunodeficiencies affecting T cells tend to be more severe than those affecting B cells because T cells play a central role in coordinating immune responses and directly killing infected cells.
while B cells primarily produce antibodies. T cells are crucial for recognizing and eliminating infected or cancerous cells. Defects in T cell function can lead to impaired immune surveillance and increased susceptibility to severe infections and malignancies. Moreover, T cells also regulate the activity of B cells, ensuring the production of appropriate antibodies. In contrast, primary immunodeficiencies affecting B cells mainly result in decreased antibody production. While this can lead to increased susceptibility to infections, it is generally less severe than defects in T cell function, as other components of the immune system can compensate to some extent for the lack of antibodies.
Overall, the severity of primary immunodeficiencies involving T cells arises from their essential role in both cell-mediated immunity and the regulation of other immune cells.
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rder the events in which telomerase maintains chromosomal ends during replication. not all events will be placed.
The DNA's 3' G overhang has a complementary sequence that the RNA component of telomerase attaches to.
How do chromosomal ends get replicated by telomerase?The 3′ end of the DNA strand is extended by telomerase by adding complementary RNA nucleotides. DNA polymerase adds the complementary nucleotides to the ends of the chromosomes once the 3′ end of the lagging strand template has been sufficiently lengthened; this results in the replication of the chromosome ends.
The 3' end of the DNA is added with complimentary nucleotides to the RNA component of telomerase.
Telomerase travels along the freshly created DNA strand, heading for the 3' end.
The DNA's 3' end receives more nucleotides.
The DNA strand completely loses telomerase.
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what process enables a single gene to encode two or more proteins that are different in their amino acid sequence?
Alternative splicing enables a single gene to encode two or more proteins that are different in their amino acid sequence.
Alternative splicing is a regulated process that occurs during the RNA splicing phase of gene expression. In alternative splicing, different combinations of exons within a pre-mRNA molecule are spliced together, resulting in the production of multiple mRNA isoforms that can encode different protein products.
This enables cells to produce different protein variants from a single gene, allowing for increased protein diversity and functional complexity.
Alternative splicing is a key mechanism underlying many biological processes, including tissue development, cellular differentiation, and response to environmental cues.
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NEED HELP AS FAST AS POSSIBLE! 35 POINTS!
answer is EXPERIMENT because both variable are used to test a hypothesis
what are the minimum important features of an expression plasmid?
The minimum important features of an expression plasmid include a promoter region for gene expression, a coding sequence for the protein of interest, a selection marker for identifying transformed cells, and an origin of replication for plasmid replication.
An expression plasmid is a type of plasmid used in molecular biology to express and produce specific proteins in host cells. It typically contains several key features necessary for its functionality.
Firstly, an expression plasmid requires a promoter region. The promoter is responsible for initiating gene expression by binding transcription factors and RNA polymerase, allowing the transcription of the coding sequence for the protein of interest.
Secondly, the plasmid should contain a coding sequence for the desired protein. This sequence is typically placed downstream of the promoter and provides the instructions for protein synthesis.
Additionally, an expression plasmid often includes a selection marker. This marker allows for the identification and selection of cells that have successfully taken up the plasmid. Common selection markers include antibiotic resistance genes or fluorescent protein genes.
Lastly, the plasmid must have an origin of replication. This sequence enables the plasmid to replicate within the host cells, ensuring the maintenance of the plasmid and its expression in subsequent generations.
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what are the two glands in the endocrine system that secrete hormones?
what parts of the supply chain are most closely involved with
the situation in this avion case? what is the responsibility of
each part in order to maintain a smooth flow of material
In the Avion case, the parts of the supply chain that are closely involved include procurement, production, and distribution. If any of these processes break down, it can affect the entire supply chain.
Procurement is responsible for obtaining the raw materials necessary to create the final product. The responsibility of procurement in maintaining a smooth flow of material is to ensure the availability of raw materials. The process begins with selecting suppliers who can provide quality materials at the most favorable price. The procurement department must have contracts and agreements in place with suppliers and have regular communication with them to ensure the timely delivery of raw materials to the production plant.
Production, on the other hand, is responsible for ensuring that the manufacturing processes are efficient and productive. The department should maintain quality control in the manufacturing process to ensure that the final product meets the required standards and specifications. They should also ensure that the production process is cost-effective and that the production line is running smoothly and producing at maximum capacity.
Distribution is responsible for delivering the final product to the customers. Their role is to ensure the timely delivery of the product to the customers. To achieve this, the distribution team must have a good understanding of the customer's requirements and have an efficient delivery process in place. They should also monitor the delivery process regularly and make adjustments when necessary to ensure that the final product reaches the customers on time.
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How has the concept of a gene changed over the last 100 years?
Over the last 100 years, the concept of a gene has evolved significantly due to advancements in genetics, molecular biology, and technology.
Initially, genes were considered units of heredity, responsible for transferring traits from parents to offspring. With the discovery of DNA, genes were then understood as segments of DNA encoding specific proteins.
Subsequent research, including the central dogma of molecular biology, reinforced the idea that genes contain the information for protein synthesis. More recently, the Human Genome Project has expanded our understanding of gene complexity, including the role of non-coding regions and epigenetics in gene regulation. Overall, the concept of a gene has shifted from a simple hereditary unit to a complex, multi-dimensional entity involved in diverse cellular processes.
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wo plants are crossed, resulting in offspring with a 3:1 ratio for a particular trait. What does this suggest?
A) that the parents were true-breeding for contrasting traits
B) that the trait shows incomplete dominance
C) that a blending of traits has occurred
D) that the parents were both heterozygous for a single trait
E) that each offspring has the same alleles for each of two traits
The offspring resulting in a 3:1 ratio suggests that the parents were both heterozygous for a single trait. The correct answer is option D.
The 3:1 ratio for a particular trait in the offspring of a cross between two plants suggests that the parents were both heterozygous for a single trait. This type of ratio is characteristic of a monohybrid cross between two heterozygous parents, where both parents have one dominant and one recessive allele for the same trait.
The dominant allele will be expressed in the phenotype of the offspring in a 3:1 ratio, with three offspring having the dominant trait and one offspring having the recessive trait.
Therefore, the correct answer is D) that the parents were both heterozygous for a single trait.
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What's the dense connective tissue that surrounds most organs called?
Answer:
Bone.
Explanation:
Bone is the hardest connective tissue. It provides protection to internal organs and supports the body. Bone's rigid extracellular matrix contains mostly collagen fibers embedded in a mineralized ground substance containing hydroxyapatite, a form of calcium phosphate.
what will happen to the glomerular capillary pressure and filtration rate if you decrease
If you decrease the afferent arteriole radius, the glomerular capillary pressure and filtration rate will both decrease.
The afferent arteriole is responsible for supplying blood to the glomerulus, which is a network of capillaries in the kidney. The radius of the afferent arteriole plays a crucial role in regulating glomerular capillary pressure and filtration rate.
When the afferent arteriole radius decreases, it constricts, reducing the blood flow into the glomerulus. This constriction leads to a decrease in glomerular capillary pressure, which is the pressure exerted by the blood against the walls of the glomerular capillaries.
As a result of the decreased glomerular capillary pressure, the filtration rate, which refers to the rate at which fluid and solutes are filtered out of the blood into the renal tubules, will also decrease. The reduced pressure hampers the force driving the filtration process, resulting in a lower filtration rate.
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what are the products in cellular respiration
Answer:
In cellular respiration, glucose and oxygen react to form ATP. Water and carbon dioxide are released as byproducts. The three stages of aerobic cellular respiration are glycolysis (an anaerobic process), the Krebs cycle, and oxidative phosphorylation.
Bats use ultrasound to locate their prey. A bat emits a high-frequency sound, which reflects off a nearby moth. The reflected waves are detected by the bat after 0.04 seconds. How far away is the moth? The speed of sound in air is 330m/s.
The distance of moth can be calculated as 330m/s × 0.04 seconds
Hence the distance is 13.2 meters.
The bats uses ultrasound to snap a prey with the help of reflection of sound waves. The bats produce the ultrasonic wave that gets echoed from the prey and approaches to the bats' ears. This helps the bat to find out the distance of the prey.
Bat uses to emit high-frequency ultrasonic waves which are too high for the humans to hear. These process in called as echolocation organ named cochlea, a large spiral cavity in the inner ear, is sensitive to a broad hearing range and finely tuned for the returning echoes.
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Use the diagram to answer the following questions:
In which phase above do sister chromatids line up at the middle of the cell?
is it b or f?
Answer:
f i think
Explanation:
PLEASE ITS URGENT
Why did COVID-19 cause a pandemic that has continued to today?
Explanation:
Global Travel Urbanization Climate change Increased human-animal contactHealth work shortages.Which of the following is NOT a biotic pathogen?
asbestos
pollen
bacteria
virus
The one that is not a biotic pathogen is the asbestos that is present in the first option. Asbestos is an abiotic factor that contributes to a variety of lung and respiratory diseases.
What is an abiotic pathogen?The pathogen is harmful to living animals, humans, and other species, and it causes a variety of diseases, including asbestosis, an abiotic factor that causes a variety of respiratory and other diseases. When the particles of asbestos are inhaled, these particles get stuck in the lungs, respiratory tract, etc. and cause lung disease.
Hence, one that is not a biotic pathogen is the asbestos that is present in the first option.
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If bacterial cells with an internal NaCI concentration of 32 mg/mL were immersed into a soluiron containing 74 mg/ml of NaCI, what would happen to the bacterial cells?
Bacteria are common, largely free-living organisms that frequently only have one biological cell. They make up a significant portion of the prokaryotic microbial kingdom.
What is bacterial cell?The process of "cell lysis" or "cellular disruption" involves rupturing or destroying the cell membrane's outer layer in order to releaseSmall, single-celled organisms called bacteria exist. Nearly all areas of the world are home to bacteria, which are essential to its ecosystems. Some species can survive in environments with high pressure and temperatures. In fact, it's thought that there are more bacterial cells in the human body than there are human cells.Bacteria, which are typically a few micrometers in length, are among the earliest living forms to emerge on Earth and are found in the majority of its habitats.To learn more about Bacterial cell refer to:
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the _____ nerve is a bundle of ganglion axons that carry visual information to the brain.
The optic nerve is a bundle of ganglion axons that carry visual information to the brain.
In the retina, specialized cells called photoreceptors detect light and convert it into electrical signals. These signals are then transmitted to bipolar cells and eventually reach the ganglion cells. The axons of ganglion cells bundle together to form the optic nerve, which carries the visual information to the brain for processing and interpretation, allowing us to perceive the world around us.
This nerve is responsible for transmitting the images we see from the eye to the brain's visual processing centers. The brain then interprets the information and creates a visual perception that we experience as sight. The optic nerve is made up of over one million nerve fibers and is the second cranial nerve. If the optic nerve is damaged, it can result in visual impairment or blindness.
Therefore, the optic nerve is crucial for our ability to see and perceive the world around us.
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