Answer:
shrews
Explanation:
because they both eat the same thing / have the same food source, they are directly fighting for resources
Answer:
Shrews
Explanation:
I think Shrews because other animals are either frogs prey or the frog is the prey to rest. But frog and shrew can't eat eachother.
Frog's :- Shrew's :-
Hawks ------> Frog Hawk --------> Shrew
Snake -------> Frog Snake --------> Shrew
Frog --------->Cricket Shrew -------> Cricket
Shrew ----x---- Frog. Frog ----x---- Shrew
In simple way the Shrews are in competition with frog.
Hope this helps you
Have a nice day
True or false: atoms in a gas move more rapidly than atoms in a liquid or solid
Answer:
True
Explanation:
Molecules always move faster when heated up.
Answer:
True
Explanation:
The warmer the substance the faster the atoms move
Which group, named from their cuplike sexual reproductive asocarp, make up 75% of know fungi?
Answer: Sac Fungi, or Ascomycota.
Explanation: This type of fungi has cupcake asocarp.
all of the following represent diagnostic features of chordates except for which one?
a. vertebrae
b. a notochord
c. a dorsal hollow nerve cord
d. pharyngeal slits
The embryonic of these groups is contained in the thinnest layer. It is not found in every chordate. All chordates have paired gill pouches, a notochord, and a dorsal nerve cord. Amnion is the correct response, thus.
"The notochord, single, ventral, tubular nerve cord, pharyngeal pouches, and postanal propulsion tail are the four distinguishing features that, when combined, differentiate chordates from all other phyla.The embryonic of these groups is contained in the thinnest layer. It is not found in every chordate. All chordates have paired gill pouches, a notochord, and a dorsal nerve cord. Amnion is the correct response, thus. The organisms in the chordates can be identified by four distinct characteristics: 1) the development of an offer a range past the anus; 2) a pliable rod spanning the width of the individual's body called the notochord, upon which the remainder of the spinal column depends for stability; 3) a hollow dorsal nerve cord (... All vertebrates qualify as chordates and have the same anatomical and morphological features, including an ectoderm, a hollow dorsal nerve cord, pharynx slits, and a comment tail.
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To harvest honey, the beekeeper will use __ to get rid of the guard bees
A. fans
B. smoke
C. tweezers
D. bug spray
Answer:
b. smoke
Explanation:
Which of the following best explains why DNA fingerprints can be used to identify an individual, such as from a crime scene sample?
Group of answer choices
DNA is inherited from both maternal and paternal parents
DNA from 2 different species can be combined using restriction enzymes
DNA is used to make proteins during protein synthesis
Each individual has a unique DNA sequence, with the exception of identical twins
Answer:
4.
Explanation:
Everyone's DNA is unique unless they are identical twins or if you have some kind of transplant.
Of the following best explains why DNA fingerprints can be used to identify an individual, such as from a crime scene sample it is the situation that Each individual has a unique DNA sequence, with the exception of identical twins. The correct answer is option 4.
What are identical twins ?These are the babies that are formed from multiple fusion of gametes and resulting into double fertilization.
DNA is inherited from both maternal and paternal parents. Yes, it is so but the pattern is not same as it will be possible to get the idea of the pattern and analyse along with the prediction of the genome as only few % is predicted.
DNA is used to make proteins during protein synthesis and this situation is clearly correct too but the fact is that this is not helping in the case of DNA fingerprinting where it is not easy to firstly see the DNA pattern then the RNA and then the amino acids and then the proteins.
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national game of china
Answer:
the national game of China is
Explanation:
ping pong which is also known as table tennis
Select the BAR CHART tab, and turn on Show numerical values. How many cells are in the interphase stage of their life cycle?
Answer:
87
Explanation:
Inside a seed the new sporophyte is a(n)
A. Embryo.
B. Cotyledon.
C. Pollen.
D. Endosperm
Inside a seed, the new sporophyte is an embryo. An embryo is a fertilized egg that has developed into a multicellular organism but is not yet able to survive on its own outside the seed.
The embryo is the seed's primary growth stage. The embryo is encased in the endosperm or cotyledon, which offers nutrition to the plant until it has grown enough to develop roots and leaves.The two primary groups of plants are angiosperms and gymnosperms. Angiosperms have seeds that are enclosed inside an ovary. The ovary matures into a fruit after the fertilization of the egg. On the other hand, Gymnosperms have seeds that are not enclosed in a fruit, for instance, the conifers. Instead, they are carried in cones.
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how do the rugae of the bladder function to accommodate the movement of urine? rugae prevent the backflow of urine into the ureters. rugae provide the peristalsis necessary for the process of voiding. rugae can distend or refold dependent on the volume in the urinary bladder. the rugae are the muscles required for contraction and voiding of the urinary bladder.
The correct answer is: "Rugae can distend or refold dependent on the volume in the urinary bladder."
Rugae are folded in the mucosa of the urinary bladder that allow it to stretch and expand as urine accumulates. As the bladder fills with urine, the rugae unfold and the bladder expands to accommodate the increasing volume.
As the bladder empties during urination, the rugae fold back and the bladder returns to its original size and shape. This ability to distend and refold is important for the bladder's function in storing and releasing urine.
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The rugae of the urinary bladder are folds of tissue that allow the bladder to expand and contract as it fills with urine and then empties it.
The function of rugae:
The rugae's function is to accommodate the movement of urine by allowing the bladder to stretch and expand as it fills with urine. When the bladder is empty, the rugae are more prominent and the bladder appears wrinkled. As urine accumulates, the rugae flatten out and the bladder expands. This ability to distend or refold is important for regulating the volume of urine held in the bladder.
In addition, the rugae provide the muscle contractions necessary for voiding the bladder, which is the process of releasing urine from the body. The rugae prevent the backflow of urine into the ureters and help to maintain the pressure necessary for voiding. Therefore, the rugae play a crucial role in the urinary system by facilitating the movement of urine and regulating its volume.
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help anybody pleaseeee and number them <3 happy holidays !!!!
Answer:
It's 1
Explanation:
Ionic bonding is from metal to metal and happy holidays to you too! <3
Which of the following is an example of an anabolic reaction?
a. Hydrogen peroxide (H₂O₂) being broken down into water (H₂O)
and oxygen (O₂)
b. Glucose being used by the mitochondrion to create ATP
c. The chemical processes of food digestion
d. Carbon dioxide (CO₂) and water (H₂O) combined to form glucose
d. Carbon dioxide (CO₂) and water (H₂O) combined to form glucose is an example of an anabolic reaction. Anabolic reactions are those that build up complex molecules from simpler ones, while catabolic reactions break down complex molecules into simpler ones. In this case, glucose is a complex molecule that is being built up from simpler molecules (CO₂ and H₂O).
A mass of 25kg is acted on by two forces, one which is 15 N due east while the second one is 10N due north . The acceleration of the mass is.
The acceleration of the mass is 0.72m/s²
According to Newton's law of motion;
\(\sum F = ma\)
Given the following parameters
mass m = 25kg
Get the resultant force
\(\sum F=\sqrt{10^2+15^2}\\\sum F = \sqrt{100 + 225}\\\sum F=\sqrt{325}\\\sum F= 18.03N\)
From the formula:
\(a=\frac{\sum F}{m}\\a= \frac{18.03}{25}\\a= 0.72m/s^2\)
Hence the acceleration of the mass is 0.72m/s²
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Why doesn't anything stick to teflon? What does this have to do with friction?
Answer:
We know that nothing sticks to Teflon because Teflon is unable to form chemical bonds with outside molecules. Even the weaker short-range interactions like van der Waals forces with other molecules are ineffective. ... PTFE's extreme slipperiness can be attributed to its super low coefficient of friction.
Explanation:
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May I have Brainliest please? My next rank will be the highest one: A GENIUS! Please help me on this journey to become top of the ranks! I would really appreciate it, and it would make my day! Thank you so much, and have a wonderful rest of your day!
23) What happened to the earth's first
atmosphere?
A) destroyed by large meteor impact
B) absorbed by oceans
C) blown off by solar winds
D) destroyed by volcanic activity
The right response is D) a result of volcanic action.
The primary elements in the first atmosphere of the Earth were hydrogen and helium. However, volcanic action resulted in the release of significant quantities of gases like sulfur dioxide, carbon dioxide, nitrogen, and water vapor.
A new atmosphere was produced as a result of these chemicals slowly building up in the atmosphere. Other gases, like methane and ammonia, were also produced by volcanic activity and were broken down by chemical reactions and the energy from sunlight.
As a consequence, new compounds that weren't in the initial atmosphere were produced, like oxygen. Therefore, the Earth's first atmosphere was altered by volcanic action, resulting in the atmosphere we have today.
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In a test-cross, an individual that exhibits a dominant trait but has an unknown genotype is mated with an individual that is homozygous recessive.
To assess if an organism expressing a dominant characteristic is homozygous or heterozygous, a test cross can be used.
Back crosses are made between F1 generation plants and any of the parent plants, whereas test cross is made between F1 generation plants with dominant phenotypes and the homozygous recessive parent.
The phenotypes of the children can be used to identify the unknown genotype. If combining the recessive phenotype individual with the unknown dominant phenotype (PP or Pp genotype) results in solely dominant phenotypes (no recessive), then the unknown individual is homozygous dominant.
No matter if you are examining one gene or several genes, test crosses work on the same principle: you are pairing a person with a dominant phenotype but an unknown genotype with a person who is homozygous recessive for all relevant genes.
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what is the sequence of the anticodon, from the 3' to 5' end, of the trna in the a site? aug uac acg ugc
Answer:
uac aug ugc acg
Explanation:
When streaking a throat culture on blood agar, stabbing the agar plate provides detection for Streptolysin O Bile solubility Streptolysin S DNase activity 100
When streaking a throat culture on blood agar, stabbing the agar plate provides detection for Streptolysin O. The stabbing method is also called the puncture method, and it helps in determining Streptococcus pyogenes' hemolytic activity.
Streptococcus pyogenes produces two hemolytic toxins, streptolysin O (SLO) and streptolysin S (SLS). These toxins are necessary for establishing an infection.
The throat culture on blood agar plate is used to diagnose a throat infection. The process of inoculation involves streaking and stabbing.
Streaking is performed by moving the swab back and forth over the surface of the agar. It helps in identifying the colonies that have formed on the agar's surface.
On the other hand, stabbing is done by inserting the swab into the agar medium and then withdrawing it. It is useful for detecting the presence of hemolytic toxins.
In case of streptococcal infection, the throat culture is used to detect SLO activity. SLO causes beta-hemolysis, which is visible as a clear zone around the colonies.
By stabbing the agar plate, the SLO remains within the colony, resulting in no hemolysis around the colony. However, if the colonies are streaked on the surface, SLO diffuses out of the colony, causing beta-hemolysis.
Therefore, by stabbing the agar plate, it helps in detecting SLO activity.
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What is the sequence of events for protein transport? Provide details for each event.
The sequence of events for protein transport is:
Activation of amino acids, Transfer of amino acid to tRNA, Initiation of polypeptide chain, Chain Termination, Protein translocationWhat are proteins?Proteins are large biomolecules and macromolecules that comprise one or more long chains of amino acid residues.
The sequence of events for protein transport include:
Activation of amino acids, Transfer of amino acid to tRNA, Initiation of polypeptide chain, Chain Termination, Protein translocation(a) Activation of amino acids: The reaction is shown as
AA + ATP Enzyme -AA – AMP – enzyme complex + PP
(b) Transfer of amino acid to to RNA: The reaction is shown as
AA – AMP – enzyme Complex + tRNA- AA – tRNA + AMP enzyme
(c) Initiation of polypeptide chain:
The information for the sequence of amino acids is present in the sequence of nitrogenous bases of mRNA.
(d) Chain Termination:
The three terminal codons are UAG (Amber), UAA (Ochre) and UGA (Opal) which are also called stop signals.
(e) Protein translocation:
polypeptide chain which grows on mRNA is inserted into the lumen of ER membrane
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Define domestic and compare the domestic water usage among the world average, the low income and high income countries
China's population uses, 1370 trillion liters of water annually, according to data. It now ranks among the nations with the highest global water use.
What is domestic water usage?Domestic water use in homes encompasses both indoor and outdoor activities such as drinking, cooking, cleaning, bathing, washing clothes and dishes, flushing toilets, watering gardens and lawns, and maintaining swimming pools.
9,087 billion cubic meters of water are used globally each year. The biggest annual totals were consumed by China, India, and the U.S., totaling 1,207 billion, 1,182 billion, and 1,053 billion cubic meters, respectively. Brazil came in second with 482 billion.
Therefore, large amount of domestic water usage among the world.
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The most common method to reprogram terminally differentiated cells with these enzymes is
called
The most common method to reprogram terminally differentiated cells is called cellular reprogramming, and it typically involves the use of specific transcription factors or enzymes to revert the cells back to a pluripotent state.
Selection of transcription factors: Researchers identify key transcription factors responsible for maintaining pluripotency, such as OCT4, SOX2, KLF4, and c-MYC (collectively known as Yamanaka factors).Introducing transcription factors: These factors are then introduced into the terminally differentiated cells, often using viral vectors, such as retroviruses or lentiviruses, to deliver the genetic material. Non-viral methods like plasmid transfection and electroporation are also used.Activation of pluripotency genes: Once inside the cells, the transcription factors bind to specific gene promoters and activate the expression of pluripotency-associated genes, effectively initiating the process of cellular reprogramming.Cellular transformation: Over time, the reprogramming factors cause the cells to lose their differentiated characteristics and transform into pluripotent stem cells, known as induced pluripotent stem cells (iPSCs).Verification of pluripotency: To confirm successful reprogramming, researchers assess the expression of pluripotency markers and the ability of iPSCs to differentiate into various cell types in vitro and in vivo.Expansion and differentiation: Once pluripotency is confirmed, iPSCs can be expanded in culture and differentiated into the desired cell types for use in research or therapeutic applications.In summary, cellular reprogramming is a powerful technique that involves introducing key transcription factors into terminally differentiated cells to convert them into pluripotent stem cells, which can then be used for various research and therapeutic purposes.For more such question on enzymes
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These absorbances vary because while each of the solutions have the same concentration, path length, and wavelength of monochromatic light, they will all have different _________________________________ (which is a constant for that depends upon the identity of the solution in beer's law calculations).
These absorbances vary because while each of the solutions have the same concentration, path length, and wavelength of monochromatic light, they will all have different molar absorptivity values (which is a constant for that depends upon the identity of the solution in beer's law calculations).
Molar absorptivity, also known as extinction coefficient, is a measure of how strongly a substance absorbs light at a particular wavelength. This value depends on the chemical structure of the substance and its electronic transitions. Therefore, solutions with different chemical identities will have different molar absorptivity values, resulting in varying levels of absorbance despite having the same concentration, path length, and wavelength of light.
The missing term in your question is "molar absorptivity" or "molar absorption coefficient." These absorbances vary because while each of the solutions has the same concentration, path length, and wavelength of monochromatic light, they will all have different molar absorptivities (which is a constant that depends upon the identity of the solution in Beer's Law calculations). Molar absorptivity is a measure of how well a substance absorbs light at a specific wavelength and is unique to each substance, which causes the observed variation in absorbance.
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define ammonotelism?
Answer:
The process where certain organisms excrete nitrogenous waste in the form of ammonia is known as Ammonotelism.
Explanation:
Explain two ways that food is converted/changed as it passes through
the digestive system.
Answer:
The stomach stores swallowed food and liquid, mixes the food and liquid with digestive juice it produces, and slowly empties its contents, called chyme, into the small intestine.
Explanation:
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The two ways through which food is converted/changed as it passes through the digestive system may significantly include digestion and absorption. Protein must be broken down into amino acids. Starches break down into simple sugars. Fats break down into fatty acids and glycerol.
What is the digestive system?The digestive system may be defined as a type of body system that definitely consists of the organs that take in food and liquids and break them down into substances that the body can use for energy, growth, and tissue repair.
As food passes through the Gastrointestinal tract, it mixes with digestive juices, causing large molecules of food to break down into smaller molecules. The body then absorbs these smaller molecules through the walls of the small intestine into the bloodstream, which delivers them to the rest of the body.
Two important functions of the digestive system are digestion and absorption. The nutrients that come from food are derived from proteins, fats, carbohydrates, vitamins, and minerals.
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According to Darwin’s theory of natural selection Why do species evolve over time
Answer:
According to Darwin, species evolve because those with undesirable or dangerous traits don't reproduce as much or die before they can reproduce. This causes the organisms with the most desirable traits that allow for higher reproduction or survival rates (which go hand in hand) to pass those traits on until they eventually evolve into a different species.
Forest A
Forest B
Two forest communities are shown here at different stages of succession. The different plant species and their relative abundance are
indicated by the diagrams. Researchers find that rodent populations are more abundant in forest A while deer populations are more
abundant in forest B. What describes the difference in the populations observed by the researchers?
es ))
A)
Forest A has is in an earlier stage of succession and does not have as many
mature trees upon which deer feed.
B)
Forest B lacks grasses due to lower light levels at the ground, removing a
species that is toxic to most deer populations.
0)
Forest B lacks the canopy closure required for protection of rodents from
predators, which decreases the rodent populations.
D)
Forest A is at a later stage of succession, allowing for more rodents to
migrate into the area and be found at a higher abundance.
Answer:
a, forest a is correct answer
If we remove all of the queens and jacks from a 52-card deck, how many unique four card hand combinations can we create
If we remove all of the queens and jacks from a standard 52-card deck, we are left with 48 cards (aces, kings, tens, nines, etc.). To calculate the number of unique four-card hand combinations, we can use the concept of combinations.
The formula for calculating combinations is given by: C(n, r) = n! / (r!(n - r)!) Where: n is the total number of items (48 cards in this case) r is the number of items chosen at a time (4 cards in this case) ! denotes the factorial of a number (e.g., 5! = 5 x 4 x 3 x 2 x 1) Using this formula, we can calculate the number of unique four-card hand combinations as follows: C(48, 4) = 48! / (4!(48 - 4)!) = 48! / (4!44!) = (48 x 47 x 46 x 45) / (4 x 3 x 2 x 1) = 194,580 Therefore, there are 194,580 unique four-card hand combinations possible when removing all of the queens and jacks from a 52-card deck.
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liberzon, a. et al. the molecular signatures database hallmark gene set collection. cell syst. 1 , 417 – 425 (2015).
The Molecular Signatures Database (MSigDB) Hallmark Gene Set Collection, introduced by Liberzon et al. in 2015, is a valuable resource in the field of molecular biology.
The Molecular Signatures Database (MSigDB) Hallmark Gene Set Collection serves as a crucial tool for researchers in molecular biology. It comprises a curated compilation of gene sets, each representing a specific biological process or pathway.
These gene sets are created through an extensive analysis of publicly available gene expression data, enabling researchers to investigate the functional behavior of genes across diverse cellular contexts.
By organizing gene sets based on their functional relevance, MSigDB provides a standardized framework for exploring biological processes and pathways. It facilitates the identification of key genes associated with specific functions and helps researchers understand the underlying mechanisms.
This resource has been widely adopted in various fields, including cancer research, drug discovery, and understanding cellular responses to environmental stimuli.
The hallmark gene sets within MSigDB offer valuable insights into biological phenomena, including embryonic development, cell cycle regulation, immune response, and metabolism. Researchers can leverage these gene sets to investigate the molecular signatures associated with different biological states and diseases.
This database promotes the sharing of knowledge and accelerates scientific discoveries by providing a comprehensive collection of gene sets that can be readily utilized in computational analyses and experimental studies.
In conclusion, the Molecular Signatures Database Hallmark Gene Set Collection introduced by Liberzon et al. is a significant resource in molecular biology. Its curated gene sets represent various biological processes and pathways, aiding researchers in understanding gene function across diverse cellular contexts.
By providing a standardized framework, this database enables the identification of key genes and facilitates research in areas such as cancer biology and drug discovery. The MSigDB Hallmark Gene Set Collection serves as a valuable tool for investigating molecular signatures and advancing our understanding of biological systems.
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which psychologist perspective emphasizes unconscious thought, the conflict between the biological instincts and society's demands, and early family experiences?
The psychodynamic approach emphasises the conflict between biological drives and social expectations, as well as early childhood family events. Research conducted by Sigmund Freud, as well as by his students and followers, led to the development of the psychodynamic perspective.
The psychodynamic perspective, which has Sigmund Freud's writings as its foundation, emphasises unconscious psychological processes (such as wishes and fears that we are not completely aware of), and it holds that childhood experiences are essential in shaping adult personality.
The humanistic perspective emphasises a person's positive qualities, capacity for development, and freedom to choose one's own path in life. The centrality of phenomenology and the reality of free will are the guiding principles of humanistic psychology.
The majority of what is there in a person's mind, according to psychodynamic theory, is unconscious and is made up of conflicting impulses, urges, and desires. People frequently are consciously unaware of their genuine motivations.
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how do you define a cladogram
Answer:
A cladogram is a branching diagram showing the cladistic relationship between a number of species.
please help !!!!!!!!!!!!!!!!!!
Answer:
Explanation:
15. 9 g
16. 11 g
17. 2 0r 3 g
18. ?