you have selected the following prediction to test: Previously thinned forests will have higher tree survival than adjacent forests that were not thinned. Now you need to define the key variables that you will use to test this prediction. For the following variables, sort them as independent variables, dependent variables, or variables that should be controlled (held constant)1. thinning or no thinning before the fire elevation of the site 2. dominant tree species 3. tree survival rate after the fire A. Independent variableB. Dependent variable C. Controlled variable

Answers

Answer 1

Answer:

A. Independent variable 2. dominant tree species

B. Dependent variable  3. tree survival rate after the fire

C. Controlled variable 1. thinning or no thinning before the fire elevation of the site

Explanation:  

A. An independent variable doesn't undergo changes during the experiment because it is not conditioned by other variables in the experiment. In this example, dominant tree species represent a variable that is independent of the experiment itself.

B. A dependent variable is those that you need to measure and depends on the other factors in the experiment. In this example, tree survival is dependent on the factors that affect the results (i.e. humidity in the trees, presence of resinous material in the trees that are non-combustible, etc.)

C. A controlled variable is those that we use to observe an expected outcome in the experiment and therefore it is used to compare with the test group. In this case, thinning or no thinning are used as positive and negative controls, respectively, because they enable their comparison with the test group in the experiment.  


Related Questions

Which of the following describes how damaged DNA can lead to a mutation?
A. The damaged DNA stops all protein synthesis by the cell.
B. An error occurs when the damaged DNA is repaired.
C. The segment of DNA that is damaged is transcribed into RNA.
D. The nucleotide sequence of the damaged DNA is restored
perfectly

Answers

Answer:

B.an error occurs when the damaged DNA is repairex

Explanation:

the best answer is B

The damaged DNA can lead to a mutation represent that option b. An error occurs when the damaged DNA is repaired.

Reason for damaged DNA?

In the case when the DNA is damaged so it should be replicated that shows an incorrect base which should be inserted opposite the site of the damaged base in the strand i.e. complementary.

Due to this, it should become the mutation at the coming replication round.

Moreover, the double-strand DNA split might be repaired.

Hence, the option b is correct.

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In lab we looked at succession using marine organisms. The process of succession also happens because of wildfires, and those communities do recover and follow the general model of succession. Below is a photo I took one year after a fire at Lake Tahoe. You can see see the burned trees in this photo. What proportion of r-selected species relative to K- selected species should we expect to see at this early stage of recovery?

Answers

The given question is not complete, the complete question is:

In lab we looked at succession using marine organisms. The process of succession also happens because of wildfires, and those communities do recover and follow the general model of succession. Below is a photo I took one year after a fire at Lake Tahoe. You can see see the burned trees in this photo. What proportion of r-selected species relative to K-selected species should we expect to see at this early stage of recovery? a.  # of r-selected species > # of K-selected species b. # of r-selected species = # of K-selected species c. # of r-selected species < # of K-selected species. The diagram is given in the attachment below.

Answer:

The correct answer is option A, that is, the population of r-selected species will be more in comparison to the k-selected species.

Explanation:

Based on the evolutionary strategies, the preferred selection of the species that generate small body sizes, short life span offspring, and exhibit early semelparity and thrive in unstable surroundings is r-selection. These species possess the tendency to overcome the huge loss of offspring and are considered opportunists.  

On the other hand, the preferred selection of the species that exhibit delayed reproduction, generate few large body size, possess long life span offspring and iteroparity, and thrive in stable surroundings is k-selection. Thus, it is clear that the r-selected species will be more in number than the species that are k-selected as r-selection plays an essential role in the initial phases of succession.  

2. Is salt water alkaline or acidic?

Answers

Closer to the top of the water the alkali of salt water is 8.1. Therefore it is more alkali

Answer: hh

Explanation:hhh

Polypeptides are chains of amino acids linked together in a specific order.
What type of bonds are formed between these amino acids?
Choose 1 answer:
Peptide bonds
Glycosidic linkages
Hydrogen bonds
Ester linkage

Answers

Answer: peptide bonds

Explanation:

A peptide bond is a chemical bond formed between two molecules when the carboxyl group of one molecule reacts with the amino group of the other molecule, releasing a molecule of water.

This is a dehydration synthesis reaction (also known as a condensation reaction), and usually occurs between amino acids.

A botanist has acquired a group of pea plants. All of the pea plants have yellow pea pods (the recessive form of this trait) except for one, which has green pea pods (the dominant form of this trait). The botanist decides to use a test cross to determine the genotype of the green pea pod plant for this trait. The botanist performed the test cross and found the following: 50% of the offspring had yellow pea pods and 50% of the offspring had green pea pods. Based on this information, what was the genotype of the initial green pea pod plant

Answers

Answer:

Hetezygous

Explanation:

The genotype of the initial green pod plant would be heterozygous.

Let pea pod color be represented by C (c) alleles.

First, let us assume that the genotype of the green pea pod plant is homozygous dominant, CC. This was crossed with homozygous recessive, cc.

           CC   x   cc

      Cc   Cc   Cc   Cc

All the progeny will have Cc genotype with phenotypically green color. This is in contrast to the result obtained from the test cross in the illustration, hence the genotype of the initial green pea pod plant cannot be homozygous dominant.

Now, let us assume that the genotype is Heterozygous, Cc.

       Cc   x   cc

 Cc   Cc   cc   cc

50% of the progeny has Cc genotype with phenotypically green color while the remaining 50% has cc genotype with phenotypically yellow color. This is consistent with the result from the illustration.

Hence, the genotype of the initial green pea pod plant is heterozygous.

Explain phloem structure and function, using the following terms: sieve elements, sieve cells, companion cells, girdling, translocation, sieve areas, P-proteins, non-reducing sugars.

Answers

Answer:

Explanation:

Phloem cells are conducting vessels that are found in vascular plant. They are used in the transport of photosynthate produce during photosynthesis from the source of production to other parts of the body.

It consist of sieve elements, which are the conducting vessel that aids transport of sugar round the body. They are very active before maturity at mature they are no longer in use.

Companion cells are used in replacement of sieve element at maturity, they function in metabolism together with the sieve tube Translocation is the transport or movement of sugar round the body.

Girdlings is the removal of the bark of a plant this can inhibit active transport of food.

Non-reducing sugar are monosacharrides such as glucose that are produce and transported round the body of the plant.

P-protein are found in the plants sap usually in large amount in the sieve elements.

Consider this plant cell.

The organelles in a plant cell are labeled. Part E is a complex of vesicles and folded membranes within the cytoplasm.

Which organelle is labeled E?
Golgi apparatus
chloroplast
ribosome
nucleus
Mark this and return

Answers

The correct answer is A. Golgi apparatus

Explanation:

In a plant cell, the cytoplasm contains organelles such as the chloroplast, the ribosome, the Golgi apparatus, among others. From these organelles, the Golgi apparatus is the one that is composed of vesicles and folded membranes, which makes it look like a system of flattened, long, and folded sacs or membranes connected. Additionally, this organelle is in charge of process proteins and lipids by packaging and modifying these before they go to other sections or organelles in the cell. According to this, the organelles labeled E is likely the Golgi apparatus because only this includes a set of vesicles and folded membranes.

Answer:

A. Golgi apparatus

Explanation:

what are primitive features of lycopodium?

Answers

Answer:

Lycopodium is known as Club moss. It is a vascular plant which makes it an advanced type of plant. It however has some primitive features which includes Production of spores. The plant has an underground sexual reproduction system which produces gametes for this process and also produces spores which are used in asexual reproduction of the plant. The two forms alternate with each other. Another primitive feature is their lack of flowers.

Match the terms to their definition.
the number of individual organisms born into a population in a given year
the movement of individuals out of a population
the number of individual organisms that die in a population in a given year
the movement of individuals into a population

Answers

Answer:

Birth rate: the number of individual organisms born into a population in a given year

Emigration: the movement of individuals out of a population

Death rate: the number of individual organisms that die in a population in a given year

Immigration: the movement of individuals into a population

Matching these definitions to their appropriate terms

Birth rate The number of individual organisms born into a population in a given yearEmigration: The movement of individuals out of a populationDeath rate : The number of individual organisms that die in a population in a given year. Immigration : The movement of individuals into a population

Individual organisms enter a population either by immigration or by birth while individual organisms leave a population by either emigration or death. While the general term used to describe the movement of individuals in and out of a population is migration.

Death rate is number of deaths that occurs in a particular population over a period ( usually 1 year ) while Birth rate is the number of births that occurs in a population over a period as well.

Hence we can conclude that the terms matching each description as mentioned in the question are , Birth Rate, Emigration, Death rate and immigration.

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What is the answers plz

Answers

Answer:

4. The formation and evolutuion of stars and galaxies

Which phase the cell cycle would the cell stop in if you disrupted:_______.
1. the protein DNA polymerase S phase.
2. the depolymerization of the microtubules metaphase.
3. the polymerization of actin cytokenesis.
4. the protein ligase S phase.
5. the chiasmata formation.

Answers

The interphase (G1, S, and G2 phases) precedes meiosis (Meiosis 1 and meiosis 2). Immediately after meiosis, cytokinesis occurs.

1: S phase / 2: Anaphase 1 and 2 / 3: cytokinesis / 4: S phase / 5: Prophase 1.

---------------------------------

The interphase occurs before cell division. It is composed of the G1, S, and G2 stages.

During the S stage occurs the DNI replication process. At this point, also happens the synthesis of histones and other associated proteins. This is the only stage where the DNI molecule is replicated.

Among the enzymes involved in the DNA replication process, two of them are  

DNA polymerase III

•  Responsible for DNA elongation by adding nucleotides to the growing chain, from 3' to 5' extremes.

•  It includes only nucleotides that complement the original strand.

•  They need to recognize a primer to begin.  

DNA polymerase I eliminate ARN primers and substitute them with DNA.

DNA ligase seals the gaps that remain after replacing the primers by reestablishing phosphodiester bonds. They also bind the Okasaki fragments during the discontinuous strain synthesis.

1. the protein DNA polymerase  >>>>>>>  S phase.

4. the protein ligase  >>>>>>>  S phase.

                               ****************************************************

Through Meiosis, a diploid cell (2n) produces four haploid daughter cells (n).

After DNA replication there are two meiotic phases.

The first one is a reductive phase, in which homologous chromosomes separate.  In the second phase, the cell suffers a new, not reductive division.  

During prophase 1 of meiosis, each chromosome carefully pairs with its homologous chromosome.  

Crossing-over is the interchange of genetic information between two homologous chromosomes, making the daughter cells genetically different from the original one.  

The point where the interchange of genetic information occurs is the chiasma.  

5. the chiasma formation >>>>>>> propahase I

                          ****************************************************

Antiparallel microtubules between the separating chromosomes compose the spindle apparatus.

These fibers get elongated during the anaphase, while chromosomes or chromatids migrate to the opposite poles of the cell.

The depolarization of the microtubules drives the chromosomes or chromatids to segregate during the anaphase.

2. the depolymerization of the microtubules >>>>>> anaphase I and II

                          ****************************************************

Actin is a globular protein. Actin filaments are composed of the polymerization of the protein.

Among their many functions, actin polymers are involved in cytokinesis.

The final strangulation of the cytoplasm during the division process occurs through the organization of actin filaments.

Filaments form a ring structure, which progressively narrows its diameter until the complete separation of the two daughter cells.

3. the polymerization of actin >>>>>>> cytokenesis

                            *******************************

1. the protein DNA polymerase >>>>>>>>> S phase.

2. the depolymerization of the microtubules >>>>>>>>> anaphase I and II.

3. the polymerization of actin >>>>>>>>> cytokenesis.

4. the protein ligase >>>>>>>>> S phase

5. the chiasmata formation >>>>>>>>>>> prophase I

-----------------------------------------

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what is the role mRNA in expressing specialized strutures?

Answers

Answer:

An mRNA is translated into a protein sequence. ... Each mRNA contains, at least, one coding region that is related to a protein sequence of the genetic code. Each nucleotide triplet called codon of the coding region represents one amino acid. Only one strand of a DNA duplex is transcribed into a messenger RNA molecule

HOPE IT HELPS : D

Explanation:

Which of the following is an example of protein denaturation?
Choose 1 answer:
A) Amino acids fold into repeating patterns due to hydrogen bonding of the peptide backbone.
B) Several amino acids are joined together via peptide bonds.
C) A protein binds with a substrate, lowering the activation energy of a reaction.
D) A protein is exposed to extremely high heat, causing it to lose its secondary structure and be
left with only its primary structure.

Answers

Answer:

D

Explanation:

Denaturation occurs when the protein deforms and loses its structure.

According to the question, A protein is exposed to extremely high heat, causing it to lose its secondary structure and be left with only its primary structure.

What is protein denaturation and how does it happen?

A protein becomes denatured when its normal shape gets deformed because some of the hydrogen bonds are broken.

Weak hydrogen bonds break when too much heat is applied or when they are exposed to an acid.

Thus, option "D" is correct.

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3. What is the name of the process by which evolution occurs?​

Answers

Answer:

Evolution is the process of genetic change from one generation to the next and may be caused by several methods. In essence, evolution occurs when some individuals or some alleles (gene types) reproduce themselves more than others,increasing their prevalence in subsequent generations.

Explanation:

In the parental generation, inbred black and an albino mice parents mate. The resulting F1 mice are black and heterozygous at 2 different loci. The F2 population consists of black, white, and albino mice. Albino is epistatic to pigmented. What is the phenotypic segregation ratio of this mouse species in the F2 generation? Enter your answer in the format: "4:3:2". Note lack of color pigmentation is recessive.

Answers

Answer:

12:4:3

Explanation:

Let the lack of color pigmentation which is recessive be aa where AA and Aa allow for color (BB, Bb - black, baby - white).

The F1 parents are BbAa x BbAa

This cross will produce 12/16 blacks, 4/16 albinos and 3/16 white.

Which of the following is a benefit of globalization?
A. There is an increase in piracy of cargo ships in international
waters.
B. People do not usually venture far from where they were born.
C. Products can be flown to the other side of the world in less than a
day.
D. Advances in technology allow energy resources to produce less
pollution

Answers

Answer:

C

Explanation:

More products can ensure people have a normal life as others and everyone will benefit

The correct option about Globalisation is “Advances in technology allow energy resources to produce less pollution”.

What is Globalisation ?

The integration between the world economic system and the domestic economic system is referred to as globalisation. In different words, it can be described as a technique related to developing openness, developing economic interdependence and deepening economic integration inside the world economic system.

Thus, we can conclude that Globalisation leads to advancement in technology and hence allow energy resources to produce less pollution.

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is it actually rare to step on an ant? this sounds dumb but I’m curious.

Answers

Answer: No

Explanation:

i mean it depends if you live near an ant colony or colonies.

No, there are ants crawling everywhere so you are bound to step on quite a few

which would provide the body with the most energy ? a.forming bonds between to amino acids b.braking the bonds in a monosaccharide c.braking a single carbon bond d.creating bonds to form a carbohydrates

Answers

Answer:

d creating bonds to form a carbohydrate

Explanation:

John is a 22-year-old professional skateboarder. He has recently fallen on his left shoulder which caused a severe dislocation of the joint. The clinician fears the impact and the dislocation may have caused damage to all or part of the brachial plexus. After performing a nerve conduction velocity test on Johnâs left arm, it was determined that the ulnar nerve was compromised. Which area of the brachial plexus was affected by the accident?

Answers

Answer:

The lower left area where the brachial plexus is, was affected in the axillary fossa.

Specifically in the area of the inferior nerve ramification, in the medial endings.

Explanation:

The brachial plexus is a nervous plexus that is classified into three nerve areas, the upper middle and lower areas, where the upper one faces the lateral nerve branches, the middle one to the posterior, and the lower one to the medial, within the medial nerves. is the ulnar nerve or the ulnar nerve that is the one that damaged John.

Which are examples of active transport across the cell membrane? a. osmosis and diffusion b. diffusion and facilitated diffusion c. osmosis and chemiosmosis d. endocytosis and exocytosis

Answers

Answer:

d. endocytosis and exocytosis

Explanation:

These processes bring specific items in/out of the cell through active transport since the particles being brought in are generally large. Water for example, a much smaller particle, would use passive transport through the process of osmosis. Hope this helps!

Endocytosis and exocytosis are examples of active transport across the cell membrane.

Active transport is the movement of substances in and out of the cell through the membrane using energy and occurs against a concentration gradient.

Endocytosis is called the process by which cells incorporate into them molecules, large or small, that cannot pass through the cell membrane.

An example is the endocytosis of the complex that is formed between receptor proteins of polypeptide or protein hormones at the level of the plasma membrane.

Exocytosis is the process by which different types of molecules contained in a cytoplasmic vesicle of a cell are secreted outwards.

Insulin secretion is done in small pinocytosic vesicles that have insulin in colloidal dispersion, this secretion is in favor of a gradient, since insulin is more concentrated within the cell than in the extracellular space.

Therefore, we can conclude that endocytosis and exocytosis are examples of active transport across the cell membrane.

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Mutations and DNA replication errors can alter base sequences, thereby potentially creating or eliminating recognition sites. Group of answer choices True False

Answers

Answer:

The given statement is true.

Explanation:

An error at the time of the replication of DNA or mutation can either result in the addition or deletion of DNA bases that eventually makes a substantial change in the sequence of DNA, and thus, will exhibit a substantial influence on the recognition sequence because of which one can witness a change in the site of recognition.  

This variation witnessed in the DNA's recognition site can be evaluated by treating the mutated DNA with the restriction enzymes that exhibit a uniqueness for the restriction sites. Afterward, by going through the process of gel electrophoresis one can witness the change in the number of bands of DNA showing variation in the restriction sites.  

ASAP PLEASEEE HELP ME
Remember monomers and polymers? DNA is what type of polymer?
A.) Protein
B.) Nucleic Acid
C.) Lipid
D.) Carbohydrate

Answers

Answer:

polynucleotide "carbon" sugar so I would say B or D

Explanation:

Solid, gas, and liquid Which states of matter have a set shape? Explain why this is, based on the animation you observe for the different states of matter. Which states of matter have a set volume? Explain this based on the animations you observe for the different states of matter?

Answers

Answer:Solid has a set shape. Solid can move but gas and liquid is more flexible than solid. Solid has a fixed volume while liquid and gas takes the volume of its container. Solid stays in one place while gas and liquid is flexible.

Explanation:

The body can get water from milk, juices, fruits, and vegetables.
Please select the best answer from the choices provided.
ОТ
Ο Ε

Answers

Answer:

your answer is true

Explanation:

why do you think we tell you kids to eat your Vegetables

The body getting water from milk, juices, fruits, and vegetables is True.

What is Water?

This is defined as a universal solvent and comprises of two elements known as Hydrogen and oxygen.

Water is present in all food forms and is usually extracted during digestion in the large intestine and transported to other parts of the body.

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Some theories are developed from repeated testing of a single hypothesis. Cell theory, germ theory, and the theory of evolution all have developed from the testing of multiple related hypotheses. Which statement best explains why some theories develop this way?

Answers

Answer:

Each experiment reveals a different piece of information that is needed to develop the theory.

Explanation:

Answer:

Each experiment reveals a different piece of information that is needed to develop the theory.

Explanation:

In what season(s) does the tilt not really affect temperature?

Answers

Answer:

Australia

Explanation:

they got wild fires to keep them warm

Why does secondary session occur faster them primary secession

Answers

Answer:

During secondary succession, the soil isn't damaged hence there is no need for pioneering species such as lichens to dissolve the damaged soil into organic ones that can sustain more complex plants.

Explanation:

Secondary succession, type of ecological succession (the evolution of a biological community’s ecological structure) in which plants and animals recolonize a habitatafter a major disturbance—such as a devastating flood, wildfire, landslide, lavaflow, or human activity (e.g., farming or road or building construction)—significantly alters an area but has not rendered it completely lifeless. Secondary succession is distinguished from primary succession, in which a biological community develops where no life had existed

Secondary succession, type of ecological succession (the evolution of a biological community’s ecological structure) in which plants and animals recolonize a habitatafter a major disturbance—such as a devastating flood, wildfire, landslide, lavaflow, or human activity (e.g., farming or road or building construction)—significantly alters an area but has not rendered it completely lifeless. Secondary succession is distinguished from primary succession, in which a biological community develops where no life had existed previously.

Secondary succession follows a major disturbance, such as a fire or a flood. The stages of secondary succession are similar to those of primary succession; however, primary succession always begins on a barren surface, whereas secondary succession begins in environments that already possess soil. In addition, through a process called old-field succession, farmland that has been abandoned may undergo secondary succession.

Secondary succession takes place where a disturbance did not eliminate all life and nutrients from the environment. Although fire, flooding, and other disturbances may bring visible ruin to a landscape, drive out many plants and animals, and set back the biological community to an earlier stage, the habitat is not lifeless, because the soil retains nutrients and seeds that were set down before the disturbance occurred. Buried seeds can sprout shortly after the effects of the disturbance pass, and some may have greater success from reduced competition and reduced shading. Some species may be adapted to the frequent passage of a particular disturbance. For example, the jack pine (Pinus banksiana), a tree species common in the northeastern U.S. and Canada, requires heat from a wildfire to open its cones (strobili) before seeds can be spread for new growth.


What pressure is always negative and helps to keep the lungs inflated?​

Answers

Answer:Intrapleural pressure

Explanation:

Answer:

intrapleural

Explanation:

Which eras ended with a mass extinction?
O A. Paleozoic and Precambrian
O B. Mesozoic and Paleozoic
OC. Mesozoic and Cenozoic
O D. Cenozoic and Paleozoic

Answers

B. Mesozoic and Paleozoic eras ended with mass extinctions.

What is Mass extinctions?

Mass extinctions are periods in Earth's history when a significant proportion of the planet's biodiversity is wiped out in a relatively short period of time.

These events have occurred several times throughout Earth's history, and they are typically associated with major geological and environmental changes.

The Mesozoic era, which lasted from about 252 to 66 million years ago, ended with the Cretaceous-Paleogene extinction event. This event was likely caused by the impact of a large asteroid or comet, which triggered a range of environmental changes, including wildfires, acid rain, and a nuclear winter-like effect.

The event is most famous for wiping out the dinosaurs, but it also resulted in the extinction of many other species, both on land and in the oceans.

The Mesozoic era ended with the Cretaceous-Paleogene extinction event, which wiped out the dinosaurs and many other species.

The Paleozoic era ended with the Permian-Triassic extinction event, which was the largest mass extinction in Earth's history, and resulted in the loss of approximately 96% of all marine species and 70% of land species.

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The diffusion spot diameter with one crystal at 15 min ( mm) is 59 . The rate of diffusion with one crystal So how would I convert this 59 to ( mm/h)?

Answers

Answer:

This is straight forward.If  there are 60 minutes in one hour, then to convert minutes to hours as requested, simply divide the number of minutes given by  60.Thus if you divided the 59 by 60 it gives you what?round the answer to whole number.

When there is a moment of any solute present in the solution from high concentration to low concentration area is called diffusion.

It will take 0.25 hours to diffuse one crystal.

This can be calculated by:

Given,

Time for one crystal diffusion = 15 min

Diameter for one crystal diffusion  = 59 mm

In 1 hour there are 60 minutes.

60 minutes = 1 hour.

Then 15 minutes = ? hours

[tex]\dfrac{15 \; \text{minutes}}{60 \; \text{minutes}} = 0.25[/tex]

Therefore, to diffuse one crystal of it will take 0.25 hours.

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