31) prairie dogs once covered the expanses of the great plains. their grazing made the grass more nutritious for the huge herds of bison, and a variety of snakes, raptors, and mammals preyed on the rodents. in fact, the black-footed ferret (now endangered) specialized in prairie dog predation. today, growing housing and agricultural developments have covered many prairie dog towns. which of the following statements about prairie dogs is true? a) their realized niche has expanded. b) they have a mutualistic relationship with bison. c) they are probably a poor candidate for keystone species. d) their fundamental niche is changed. e) their fundamental niche has expanded.

Answers

Answer 1

E) Their core target market has grown

Prairie dogs play a significant role in the ecosystems they live in. They have an impact on grasslands both directly and indirectly due to their grazing, burrowing, and role as prey.

How do prairie dogs change with the surroundings?

Some of their physical modifications have given them the ability to thrive at what they do. Burrow-digging is made easier for them by their long-nailed toes and short, powerful arms. Despite having tiny legs, prairie dogs can travel short distances at speeds of up to 35 mph in order to flee from predators and reach the safety of their burrows.

The prairie dog is a keystone species because it is essential to the health of the entire ecosystem in which it lives. The reason for this is that prairie dogs are able to make the soil more fertile, improving the conditions for plant growth and benefiting herbivores. They also reproduce quickly and serve as prey for a variety of predators, thus they are in high demand.

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Related Questions

five-year-old ling is beginning to show signs of being able to plan ahead in a somewhat rational manner. at her age, this development is likely due to: a decrease in myelin sheaths. an increase in dopamine pathways. increased neurotransmitters available in her synaptic gaps. neural networks sprouting in her frontal lobes.

Answers

This development is likely due to neural networks sprouting in her frontal lobes.

What is Neural network and frontal lobe ?

Deep learning algorithms are based on neural networks, which are often referred to as artificial neural networks (ANNs) or simulated neural networks (SNNs). They mirror the way that organic neurons communicate with one another by taking their name and structure from the human brain.

The frontal lobes are the largest in the human brain and the most frequently damaged area in traumatic brain injury. The management of higher level executive functions as well as voluntary movement and expressive language depend on the frontal lobes.

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The cytoplasm of a cell is a thick solution consisting of water and dissolved salts and proteins.
A cell is placed in a beaker of distilled water, which is pure water with nothing dissolved in it.
a) Explain the relationship between the fluid inside the cell and the fluid in the beaker. Make sure to include the appropriate terms (isotonic, hypertonic, hypotonic) in your answer.
b) What will eventually happen to the cell in the beaker?

Answers

The answers include the following:

The relationship between the fluid inside the cell and the fluid in the beaker is that the cell was placed in a hypotonic solution.The cell in the beaker will undergo what is referred to as cytolysis.

What is Hypotonic solution?

This is referred to as a type of solution which has a lower solute concentration when compared to another solution. In this scenario, we were told that the cell is a thick solution with salts and protein which means it has a higher concentration.

When the cell is placed in a beaker of hypotonic solution( distilled water) it will swell and expand until it bursts which is referred to as cytolysis.

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It’s A,B,C, and E


Good luck !!!

Answers

The  statements that correctly describe the importance of meiosis to the life cycle or these organisms are:

A) Increasing genetic diversity ensures that no two haploid gametes are exactly the same.

B) Taking a diploid cell to its haploid state occurs during the first cell division of meiosis.

C) Checkpoints during meiosis ensures that chromosome separation occurs accurately, avoiding non-disjunction.

E) Reducing the number of chromosomes by half during meiosis ensures the chromosome number is maintained during fertilization.

Why meiosis is essential in sexual reproduction?

In regards to the importance of meiosis in sexual reproduction, we need to understand that meiosis is the chromosomal reduction process that enables the formation of the haploid germ cells required for sexual reproduction.

It also plays a crucial function in promoting genetic variety and making it easier for recombination to correct genetic flaws.

Therefore, Meiosis is a type of cell division that results in the making of four gamete cells as well as the halving of the number of chromosomes in the parent cell. To develop egg as well as sperm cells for sexual reproduction, this process is necessary.

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See full question (image transcript) below

The process of meiosis is essential in the sexual reproduction and life cycle of many organisms. The outcome of meiosis is haploid gametes. Which statements correctly describe the importance of meiosis to the life cycle or these organisms? (Choose four options)

A) Increasing genetic diversity ensures that no two haploid gametes are exactly the same.

B) Taking a diploid cell to its haploid state occurs during the first cell division of meiosis.

C) Checkpoints during meiosis ensures that chromosome separation occurs accurately, avoiding non-disjunction.

D) DNA synthesis occurs before each cell division in meiosis ensures that the integrity of the chromosomes is maintained.

E) Reducing the number of chromosomes by half during meiosis ensures the chromosome number is maintained during fertilization.

Which of the following choices is an example of indirect water pollution?

Answers

Answer:

It include contaminants that enters the water supply from soil or groundwater systems and from the atmosphere via rain.

Using the image below, identify the type of membrane transport shown (DIFFUSION, FACILITATED DIFFUSION, ACTIVE TRANSPORT) and explain how it works.

Answers

Answer:

Diffusion

Explanation:

Diffusion and Facilitated diffusion are the only two passive transports present. The other would be the active transport.

The differences between diffusion and facilitated diffusion is that diffusion is the substance passing through a phospholipids (lipid bilayer), while facilitated diffusion uses proteins in the bilayer that will allow this substance to pass through.

Like in the diagram shown, we start off with a high concentration on the top of the lipid bilayer, but we want to have both sides equal. That's why diffusion happens where at the end both concentrations on each side are equal.

Neptune has a turbulent atmosphere, which changes the planet's
appearance.

A-True
B -False

Answers

True

Neptune has a turbulent atmosphere that changes the appearance of the planet.

What would this level of energy be?

Answers

678.9 J.

By the 10% Rule, we know that only about 10% of energy passes to the next trophic level. 10% of 6789 is 678.9.

If Michael’s mistake had been caught earlier, is there anything that could have been done to prevent the corn from dying?

Answers

If Michael's mistake was found sooner the removal of the fertilizer would have restored the plant. Constant watering would have also saved the plant from withering. Organic fertilizer could've been added instead because of its high potassium levels.

What is hypertonic, hypotonic and isotonic solutions ?

Hypertonic solution: This type of solution is characterised by a larger solute concentration outside the cell than inside.

Hypotonic solution: A solution is referred to as hypotonic if the solute concentration in the surrounding solution is lower than the solute concentration inside the cell.

Isotonic liquid: Isotonic solution is one that contains the same amount of solute in the cell's interior as it does in the surrounding solution.

Blood and hypotonic have different fluid, sugar, and salt concentrations. In comparison to blood, hypertonic has a higher percentage of fluid, carbohydrates, and salt. Similar fluid, sugar, and salt concentrations exist in isotonic and blood.

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Which schedule of reinforcement requires the completion of a specified, unvarying number of responses to produce a reinforcer?.

Answers

Answer: Fixed-ratio schedules

Explanation:

Fixed-ratio schedules are those in which a response is reinforced only after a specified number of responses. This schedule produces a high, steady rate of responding with only a brief pause after the delivery of the reinforcer. An example of a fixed-ratio schedule would be delivering a food pellet to a rat after it presses a bar five times.

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Almost out! Here's a quick vocabulary review for this lesson. Match the numbers from the word bank to its
correct definition to figure out the final 4-digit code.
WORD BANK
1. Scientific Law
2. Organic
3. Reactants
4. Products
Derived from
matter that is
living or was once
living
A substance
formed after a
chemical reaction
A description of
an observed
phenomenon
based on
repeated
experimentation
A substance that
takes part in and
undergoes
change during a
reactions

Answers

A process by which plants and other living things transform light energy into chemical energy. utilized to produce or build up nourishment for the organism.

Reactants are the substances that begin a chemical reaction, while products are the compounds that are created as a result of the reaction. According to this equation, the mass of the r increases whenever a chemical reaction rearranges atoms into a new product.

Students put into practice what they have learned about how pure substances have distinct features and are created from only one kind of atom or molecule.

What are the four laws of chemistry?

mass conservation principle. specified proportions law Multiple proportions law. Gaseous quantities according to Gay Lussac.

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superfractor va, an engineered factor v molecule, effectively reduces bleeding and acute coagulopathy in mouse models of trauma and shock. the american society of hematology

Answers

Here, we looked into the potential for reducing traumatic bleeding and preventing or normalizing hemostasis parameters suggestive of acute traumatic coagulopathy (ATC), a process thought to be distinct from disseminated intravascular coagulation, through targeted intervention with an engineered factor FV variant (superFVa), resistant to inactivation by APC (DIC).

Traumatic bleeding is a leading cause of death and disability in the absence of particular treatments. A high mortality risk condition known as acute traumatic coagulopathy (ATC) is seen in 30 to 50 percent of individuals who also have bleeding. Activated protein C (APC), whose excessive production promotes the quick depletion of engineered factor FV variant and FVIII and hyperfibrinolysis, may play a part in the onset of ATC, according to recent studies.

Only mice who underwent both trauma and shock in the trauma/shock model acquired ATC, as shown by a large APTT extension (25.4 to 36.1 seconds), which was accompanied by a severe drop in engineered factor FV variant and FVIII, a minor reduction in fibrinogen, and no effect on FX or FII.

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Please hurry i will mark you as brainleist!! A hypothesis is a possible answer or explanation to a scientific question based on

A. scientific laws and research that are testable.
B. scientific theories that are testable.
C. prior knowledge or research that is testable.
D. scientific laws and theories that are testable.

Answers

C because it’s based on the knowledge that you know that can be tested

What is the term for the site where the muscle attaches that does not move when the muscle contracts?.

Answers

The origin is the term for the site where the muscle attaches that does not move when the muscle contracts.

It's simple to believe that muscle is muscle, and that the tissues in hearts, tongues, and arms are essentially the same. Mammalian bodies, however, are composed of three distinct muscle types: cardiac, skeletal, and smooth. Organs including our skin, blood arteries, and digestive tracts are made up of smooth muscles. The heart's muscles are called cardiac muscles. Despite how amazing and sophisticated these tissues are, the skeletal muscles are what carry out the bulk of the work.

The muscles that are a part of the skeletal system are known as skeletal muscles. They are voluntary muscles, as opposed to the hearts and stomachs, and one has cognitive control over them.

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varghese, p.m.; tsolaki, a.g.; yasmin, h.; shastri, a.; ferluga, j.; vatish, m.; madan, t.; kishore, u. host-pathogen interaction in covid-19: pathogenesis, potential therapeutics and vaccination strategies. immunobiology 2020, 225, 152008.

Answers

Answer:

I don't really know how to answer this it kinda just looks like random words

Explanation:

k

What causes water to be pulled up into a paper towel?
A. Cohesion.
B. Adhesion.
C. capillary action.
D. All of the above

Answers

Answer:

Capillary

Explanation:

Answer: C. Capillary Action

Which type of rock results from broken pieces of rock cementing together? Responses metamorphic sedimentary igneous felsic

Answers

The type of rock that results from broken pieces of rock cementing together is sedimentary. Option A.

Sedimentary rocks are formed from other existing rock fragments or organic matter. There are three types of sedimentary rocks detrital organic and chemical. Clastic sedimentary rocks such as sandstone are formed from classic and other rock fragments. Sedimentary rocks are layered rocks formed by compaction cementation and recrystallization of sediments.

Compression is the compression of a layer of sediment by the heavy weight of overlying rock formations. The igneous rock then breaks apart over time in the process of weathering. These rocks are washed away by rain and deposited in rivers. Fragments of these igneous rocks harden together with other rock masses to form sedimentary rocks called conglomerates.

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if i gave you a protein you knew nothing about (not a fluorescent protein) and asked you to predict its function, which do you think would be most helpful to analyze, primary, secondary or tertiary structure?

Answers

The amino acid sequence of a protein determines how it will behave biologically, and alterations to the amino acid sequence will affect the protein's 3D structure.

If you're given a protein X whose function is unknown, you can use NMR or X-Ray crystallography to find out its structural information, or you can use computational methods like threading for 3D structure prediction, PSIPRED, the Chou-Fasman Method, or homology modelling (based on finding homologues of the given protein's structure in the PDB and modelling it using a tool like Swiss Modeller). discover physiochemical characteristics such as molecular weight, amino acid composition, PI, etc.,

So briefly, use CD spectroscopy, Edman degradation, NMR, and mass spectrometry to find primary sequences for unknown proteins. Every one of these is for experimental purposes.

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The posterior axial muscle that crosses the glenohumeral joint is the __________.

Answers

Answer:

Latissimus dorsi

Explanation:

The posterior axial muscle that crosses the glenohumeral joint is the latissimus dorsi The deltoid muscle fibers are separated into anterior, middle, and posterior The middle fibers of the deltoid muscle abduct the arm The origin of the external obliques includes ribs

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what happens when a myosin head releases from actin? multiple choice question. ach binds to troponin. the filament slides back to the resting position. the filament remains in the same place. calcium is transported back into the t-tubules.

Answers

The correct option is: The filament remains in the same place.

ADP phosphate is formed when ATP hydrolyzes. This releases energy, allowing the myosin protein to be cocked into this high energy position and sort of attach to the next rung of our actin filament. We're currently in a high-energy state. The phosphate is released in step three.

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I'm stuck on a lab report for Biology. Could someone explain to me why people test for macromolecules in labs at school? Also, I can't find any background information on the lab, where we tested for macromolecules in stomach acid. Could anyone help find any information on the background of this lab?
Thanks in advance to anyone that helps! :)

Answers

OBJECTIVE: To utilise indicators to check different meals for the content of lipids, carbs, and proteins.

What macromolecules will you be analysing in the laboratory?

The presence of simple carbs (glucose, sucrose), complex carbohydrates (starch), and proteins will mostly be tested for. The signs you'll use to search for these macromolecules are listed below.

Understanding macromolecules is crucial to comprehending how nutrients are taken in and used by cells. Carbohydrates, lipids, proteins, and nucleic acids are the four main substances that are referred to as macromolecules, which simply means huge molecules. Each of them is distinct in its structure and purpose.

Proteins play the broadest range of functions of any macromolecule, making them one of the most common organic molecules in biological systems.

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Glycine can be a ___ which is used to make bigger ___.
A.monomer ..polymers
B. polymer .. monomers

Answers

Answer:A

Explanation It is used to make large monomers and polymers.

The answer is A.

Glycine can be a monomer which is used to make bigger polymers.

the initial consequences of oxygenic photosynthesis are: removal of carbon dioxide and replacement of molecular oxygen in the environment. increase of molecular oxygen concentration in the atmosphere over time.

Answers

The consequences of oxygenic photosynthesis are to produce carbohydrates, light energy transfers electrons from water (H2O) taken up by plant roots to CO2.

What is oxygenic photosynthesis?

Oxygenic photosynthesis is defined as a non-cyclic photosynthetic electron chain in which water serves as the initial electron donor and, as a result, molecular oxygen is liberated as a byproduct.

An oxygenic photosynthesis is defined as the phototrophic process in which light energy is captured and converted to ATP without oxygen production.

Thus, the  consequences of oxygenic photosynthesis are to produce carbohydrates, light energy transfers electrons from water (H2O) taken up by plant roots to CO2.

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Get it? Compare ionic solids and liquids.

Answers

Ionic solids and ionic liquids differ on the basis of their various properties like melting points, shapes, volume, etc.

Ionic solids have a definite shape and volume. Additionally, ionic liquids have a high thermal stability, making them more resistant to changes in their physical or chemical composition. Ionic solids also have high melting points than ionic liquids.

In addition to this, they frequently have high electrical conductivity, which makes it easy for electricity to pass through them, and they lack vapour pressure, which makes them less reactive. Additionally, they have low viscosity, which makes them flow smoothly.

From the above explanation, we can conclude that ionic solids and liquids vary in various properties.

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Factors that affect prenatal development
Genetic (a dominant trait)
Factor:
Genetic (a recessive trait)
Factor:
Genetic (a genetic or chromosomal disorder)
Factor:
Environmental (mother's physical health)
Factor:
Environmental (mother's emotional health)
Factor:
Environmental (something in the environment
that the mother lives in)
Factor:
How do these factors have a positive or negative affect?

Answers

All the factors mentioned like environment factors, mother's physical and emotional health all can have either positive or negative effect.

What is factor and how come these factors have an effect on mother's health?Factors are in pair present on chromosomes , have studied in genetics. There are two factors for each trait.The statement that factors are present in pair have a significant role and need to be kept in mind vividly.Here comes the health of the mother which can be effected by emotion health, if mother is suffering with emotional challenges then obviously its a negative effect .When mother is living in a hygienic environment and friendly environment that's a positive impact.

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the movement of glucose into the cell, against its concentration gradient, can be powered by the co-transport of na into the cell. explain the thermodynamic factors governing this transporter. under what conditions would transport of glucose slow or come to a halt?

Answers

The secondary active transporter proteins known as sodium-dependent glucose cotransporters (SGLT) utilize energy from low sodium ion concentration created by the ATPase pump to transport glucose across the membrane in opposition to high glucose concentration. Both glucose and sodium went over the membrane in the same way. As a result, SGLT proteins are referred to as symporters. The transfer of Na+ ions from their high concentration gradient to their low concentration gradient is thermodynamically advantageous since the net entropy in the system remained rising, according to our assessment of the thermodynamic parameters controlling the transport. As long as there is a significant difference in the concentrations of Na+ ions across the membrane, the entropic factor will be sufficient to propel the import of glucose into the cell.

As there are fewer glucose molecules inside the cell, entropy has decreased.

Because glucose requires protein carriers to assist them to move through the cell membrane due to their bigger size and lipid insolubility, decreasing the number of protein carriers will delay or stop the pace at which glucose will transport.

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what happens to the ice over time?

Answers

Answer:

it melted ig

Explanation:

When heat (a form of energy) is added, the ice melts into liquid water. It has reached its melting point – 0°C. Continue to apply heat, and the water will turn into water vapour, which is water in its gaseous state. The water has reached its boiling point – 100°C.

consuming individual amino acid supplements on an empty stomach boosts the digestibility of proteins consumed at the following meal. consuming individual amino acid supplements on an empty stomach boosts the digestibility of proteins consumed at the following meal. true false

Answers

False Consuming individual amino acid supplements on an empty stomach does not boosts the digestibility of proteins consumed

What is amino acids ?

Proteins are made up of amino acid molecules. The components of life are proteins and amino acids. Amino acids remain after proteins have been digested or broken down. The human body creates proteins from amino acids to support the body

Additionally, there is less competition for absorption when amino acid supplements are taken empty-handed. The process of nutrients being absorbed into your bloodstream and distributed throughout the body begins as food is digested and the nutrients are released.

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In which types of transport can molecules pass through a phospholipid membrane?​

Answers

Explanation: The simplest mechanism by which molecules can cross the plasma membrane is passive diffusion. During passive diffusion, a molecule simply dissolves in the phospholipid bilayer, diffuses across it, and then dissolves in the aqueous solution at the other side of the membrane.

Name 2 properties that ALL living things have in common?

Answers

Answer:

are made of cells.

obtain and use energy.

grow and develop.

reproduce.

respond to their environment.

Explanation:

Hope this at least helps

Answer:

Growth

Dependent on their environment

Needs energy, water, food resources

Reproduction

Cells and DNA

Respiration

:)

The time span between the growth stage and adult stage of spores is?

A: Is several years
B: Is very short
C: Varies Greatly

Answers

Answer:

C varies greatly

Explanation:

Answer:

C

Explanation:

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