About 12 dark brown mice were caught in the dark-colored soil enclosure on a moonlit night.
What is mouse models with camouflage coloration?
This model simulates natural selection and adaptation in rock pocket mouse populations found primarily in rock outcrops in the deserts of the southwestern United States and Mexico. This model is based on a lesson plan designed by the [Howard Hughes Medical Institute]The model simulates changes in coat color in a population of rock pocket mice due to predation. Mice that cannot camouflage have a higher chance of being predatory when predators are present. Users can examine how a population evolves through natural selection under different environmental conditions.To learn more about mouse models with camouflage coloration, refer to:
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Are proteins or rna molecules that act as catalysts to speed up reactions in living organisms.
Enzymes are proteins or RNA molecules that act as catalysts to speed up reactions in living organisms. Vinblastine is used to treat non-lymphoma Hodgkin's (types of cancer that start in a type of white blood cell that normally fights infection), Hodgkin's lymphoma (Hodgkin's disease), and testicular cancer in combination with other chemotherapy drugs.
It's possible to experience Enzymes injection site pain or redness, nausea, vomiting, constipation, fatigue, and appetite loss. Severe nausea and vomiting are possible. Your doctor may occasionally recommend medicine to treat or prevent nausea and vomiting. A little perennial plant that is indigenous to the island of popularly known as Vinblastine periwinkle.
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How does the second law of thermodynamics explain why an ecosystem's energy supply must be continually replenished (see Concept 8.1)?
The second law of thermodynamics explain why an ecosystem's energy supply must be continually replenished because it states that in any energy transfer or transformation, some of the energy is lost to its surroundings as heat.
What is Energy?This is defined as the ability to do work and usually causes different types of changes in a biological system and examples include chemical energy, heat energy etc.
In energy transfer or transformation there is no 100 percent efficiency and some of the energy is lost to its surroundings as heat. If the energy supply is not replenished then it will led to a shortage of energy available for organisms in the ecosystem which will led to the death of all life forms.
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can you pick out the mossy leaf-tailed gecko lying against the tree trunk in this photo? discuss how the gecko’s appearance might benefit its survival. given what you learned about evolution, natural selection, and genetic information in this chapter, describe how the gecko’s coloration might have evolved.
The gecko's ability to hunt insects is probably facilitated by its coloring. And This coloration likely makes it harder for the gecko to be seen by predators. Gecko has character of Camouflage which helps in terms of food and escaping from predators.
The definition of camouflage:Camouflage is the concealment or disguise of anything through covering it up or altering its appearance. Something (such as a color or shape) that makes it difficult to see an animal in its immediate surroundings, protecting it from attack camouflage verb the state of being camouflaged.
Which four types of camouflage are there?The four fundamental types of camouflage are disruptive coloration, disguise, and mimicry.
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match each blood type with the correct description of the surface antigens and antibodies for that blood type.
Blood group antigens are either proteins or carbohydrates that are linked to different parts of the membrane of the red blood cell
O+: anti-A antibodies, anti-B antibodies, Rh antigen D.
AB+: ABO antigen A, ABO antigen B, Rh antigen D
A-: ABO antigen A, anti-B antibodies
B+: ABO antigen B, anti-A antibodies, Rh antigen D
O-: anti-A antibodies, and anti-B antibodies
AB-: ABO antigen A, ABO antigen B
A+: ABO antigen A, anti-B antibodies, Rh antigen D
B-: ABO antigen B, anti-A antibodies
The kind of enzymes a person has and, consequently, the kind of sugar antigens that end up on their red blood cells, are determined by their DNA. The Rh blood group's antigens, on the other hand, are proteins. The instructions for generating the protein antigens are stored in a person's DNA.
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a bacteria was added to a solution containing penicillin. after several days, the bacterial cells appeared healthy and unaffected by the penicillin. what can be inferred about the tonicity of the solution in which the bacteria were placed?
The tonicity of the solution was inferred from the given statement based on the placement of Gram-negative bacteria.
What are the bacteria known as?Bacteria are tiny, single-celled creatures. Bacteria, which are vital to the world's ecosystems, are present almost everywhere. Some species can thrive in environments that have high pressure and temperatures.. In fact, it's believed that bacterial cells outnumber human cells in the human body. Instead of beaks, bacteria use proteins or enzymes to help them convert various nutrients into forms that may be used for energy.
What are characteristics of bacteria?Being unicellular, prokaryotic, tiny, lacking of a nucleus, and possessing a plasma membrane are the five characteristics that define bacteria. All bacteria share these characteristics.
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The activity of creatine kinase is increased by a rise in ____ levels in the muscle fiber.
The activity of creatine kinase is increased by a rise in adenosine diphosphate or ADP levels in the muscle fiber.
What is adenosine diphosphate (or ADP)?Adenosine diphosphate (or ADP) is the byproduct of cellular work that uses ATP to generate different metabolic functions in the cell such as movement, growth, reproduction, etc.
In conclusion, the activity of creatine kinase is increased by a rise in adenosine diphosphate or ADP levels in the muscle fiber.
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how does an electromagnet help in our daily life
Would a pair of haploid offspring produced by parthenogenesis be genetically identical? Explain.
No, two haploid offspring produced by parthenogenesis would not be genetically identical
because the cells that the organisms grow from would be the products of meiosis and therefore the chromosomes in each cell would be random and unlikely to be the same.
Parthenogenesis is a kind of reproduction from an ovum without fertilization, especially as a normal process in some invertebrates and lower plants, but also occurs in fish, reptiles, and amphibians.
Parthenogenesis is useful Because it allows female animals to reproduce when no males are available to reproduce with and it is not useful too because it decreases genetic diversity
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An increase in the capacity or affinity of the transport protein would increase the amount of free hormone and its effect on the tissue. True or false
False. An increase in the capacity or affinity of the transport protein would reduce the amount of free hormone and its effect on the tissue.
Hormones that are attached to proteins are in an equilibrium state, whereas unbound hormones are concentrated less. Free hormones in serum leave the bloodstream to operate on tissues, whereas bound hormones separate from their binding protein.
Transport proteins defend against spikes in hormone output and aid in spreading hormones uniformly to all of the cells in large organs like the liver.
Hence, false is the correct answer because of the transport protein's attachment to other hormones, an increase in its capacity or affinities will result in a decrease in the amount of free hormone rather than an increase.
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The _____ plays a key role in the stress response because it is the chief region of the brain responsible for integration of sympathetic and parasympathetic activities.
The hypothalamus plays a key role in the stress response because it is the chief region of the brain responsible for integration of sympathetic and parasympathetic activities.
What are sympathetic and parasympathetic activities?The sympathetic activities are those activities that are controlled by the sympathetic nervous system while the parasympathetic activities are also those activities that are controlled the the parasympathetic nervous system.
Some sympathetic activities include the following:acceleration of heart rate,widens bronchial passages, decrease motility (movement) of the large intestine, constrict blood vessels in decreased blood pressureincreases in corticotropin and cortisol secretion in stress responses.The hypothalamus is the coordinating center of the body that unifies the activities of both the sympathetic and parasympathetic activities.
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Where is simple columnar epithelium located?
a. lining of the small intestine
b. lining the esophagus
c. lining of the nasal cavity
d. forming the air sacs of the lungs
Why should we be cautious when interpreting many of the reports linking certain aspects of brain anatomy to behavior?
Examining the impact of brain injury is one method of studying brain-behavior interactions. If someone experiences a loss as a result of brain trauma, that area contributes to that behaviour in some manner.
Which portion of the brain is responsible for movement and instinctive reflexes?The brain stem is in charge of reflexes and automatic functions (such as heart rate and blood pressure), as well as limb motions and visceral processes (digestion, urination). The cerebellum combines location and movement information from the vestibular system and uses it to control limb movements.
Neuroimaging enables functional investigations of the brain and its connections. The fundamental goal of neurorehabilitation for a stroke patient is to have other brain areas take over the functions of the parts that have been damaged.
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The independent Variable is…
Question 1 options:
The only variable that changes
The freedom of the variable
The measurement
The variable that stays the same
The independent variable is the variable that changes.
An independent variable is one that you adjust, control, or modify in an experimental study to look at its consequences. Because it is unaffected by any other study variables, it is called "independent."
The independent variable in an experiment is the thing you modify, and the dependent variable is the thing that changes as a result of the independent variable.
This is an easy way to conceive of independent and dependent variables. The independent variable can alternatively be viewed as the cause, and the dependent variable as the result.
Predictor variables are another name for independent variables. This is so that changes in reaction can be "predicted" and explained using this variable. For instance, an independent variable like the amount of fertilizers can help us to know how much plant growth will occur.
Hence, Independent variable is the only variable that changes.
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This experiment is an example of a research approach in which scientists infer how something works normally based on what happens when the normal process is blocked. What normal process was blocked in Jost's experiment? From the results, what inference can you make about the role of the gonads in controlling the development of mammalian genitalia?
When the normal process is blocked in Jost's experiment then the normal way the embryos would develop as he removed the parts in all the embryos in his experiment that would develop that are from the gonads.
Male and female gonads are the most important regenerative organs. The testicles are the male balls, and the ovaries are the female genitals. These regenerative framework organs are liable for the advancement of male and female gametes, which are expected for sexual proliferation.
In Jost's experiment, the typical cycle impacted is the hormone creation by the embryo’s gonads during advancement. The job of these gonads in creating mammalian genitalia was that without a sign from the male balls, all embryos create as female, whether or not they are hereditarily male (XY) or female (XX).
The experiment suggests that without the signal from the male gonads, whether the embryo is male or female, they would develop as male.
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Seven years later, you come back to the beach. this time you can find no starfish with 6 legs. (d) given the most recent allele frequencies you know, is this what you would expect?
There is no six-legged starfish in existence. Fixation may be to blame. Fixation is a condition in which there is only one allele in the population and the other allele is extinct.
Given that in total 26 starfish are normal and 1 has 6 legs.
Genotypic frequency of 6 legs is 1/27 =0.037.
Genotypic frequency is always 1 and is given by p2 + 2pq + q2 = 1.
Allelic frequency = p + q = 1
So, frequency of p = 1-0.19 = 0.81
After 2 years, the Chi-square value:
Observed Expected O-E (O-E)2 (O-E)2/E
5 leg: 0.81 0.6 0.16 0.0256 0.039385
6 leg: 0.19 0.35 -0.16 0.0256 0.073143
0.112527
So Chi-square value is 0.112527.
Genotypic frequency of 6 legs is 4/31 =0.129
q2 = 0.129q = 0.35P = 1 - 0.35
P = 0.65
So new allelic frequency for 6 legs is 0.35.
New allelic frequency for 5 legs is 0.65.
This random change of allelic frequency is called as genetic drift.
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Question correction:
On your Spring Break in Mexico, you take a break to count the starfish in a tidal pool. You notice that there is a rare recessive trait that causes the starfish to have 6 legs instead of 5. Of the 27 starfish you can find, only 1 has 6 legs. What are the allele frequencies for this population? Two years later, you return to the same beach and count the starfish again. This time you find 4 starfish out of 31 that have 6 legs. Are the genotype frequencies the same as two years earlier? Test using Chi square. If it is not, calculate the new allele frequencies. Given that the current mutation rate is O and that there is no natural selection acting on these starfish, what is this random change in allele frequency called?)
Seven years later, you come back to the beach. This time you can find no starfish with 6 legs. Given the most recent allele frequencies you know, is this what you would expect? (What is the complete loss of a allele called?)
After digestion and absorption, food provides an available source of energy to tissues if it is converted into:________
After digestion and absorption, food provides an available source of energy to tissues if it is converted into Glucose.
What is the main basis of energy for the body?
Glucose, or blood sugar, is the main basis of energy for your body's cells, tissues, and organs. Glucose can be used directly or stored in the liver and muscles for later use
Why is glucose the primary energy source?
The body breaks down most carbohydrates from the foodstuffs we eat and converts them to a variety of sugar called glucose. Glucose is the main origin of fuel for our cells. When the body doesn't require to use the glucose for energy, it stores it in the liver and forces.
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They migrate out of blood vessels and into tissue spaces. this process is called?
They migrate out of blood vessels and into tissue spaces . This process is called diapedesis.
What occurs during diapedesisi?Diapedesis is a process involved in the innate immune response, is the extraversion of leukocytes from blood arteries to areas of tissue injury, infection or inflammation . Leukocytes and vascular endothelial cells both have a large number of receptor molecules that regulate this intricate process spatiotemporally.
Dipedesis is the process in which white blood cells come out of the blood vessels into the surrounding area in case of injuries.
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what would he use for a control group in this expirnment
What determines whether the net diffusion of O₂ and CO₂ is into or out of the capillaries in the tissues and near the alveoli? Explain.
The respiratory system's main job is to absorb oxygen and expel carbon dioxide.
Alveoli in the lungs receive oxygen that was inhaled. Simple diffusion is used to transport oxygen and carbon dioxide through partial pressure gradients. To provide the red blood cells with oxygen, the alveolar PO₂ must be higher than the PO₂ in the alveolar capillaries. In order to remove CO₂ from respiring cells, the PCO₂ in the systemic capillaries must be lower than the PCO₂ of the tissues. Each location has an opposing gradient that releases O₂ into the tissues while clearing CO₂ from the lung capillaries.Learn more about the respiratory system with the help of the given link:
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Compared with a basic solution at pH 9 , the same volume of an acidic solution at pH4 has times as many hydrogen ions (H').
The same volume of an acidic solution at pH 4 has 100000 times as many hydrogen ions (H+) at pH 9
How to determine the hydrogen ion concentration, [H+] at pH 9From the question given above, the following data were obtained:
pH = 9Hydrogen ion concentration [H+] =?pH = –Log [H+]
9 = –Log [H+]
Multiply through by –1
–9 = Log [H+]
Take the anti-log of –9
[H+] = anti-log (–9)
[H+] = 1×10⁻⁹ M
How to determine the hydrogen ion concentration, [H+] at pH 4From the question given above, the following data were obtained:
pH = 4Hydrogen ion concentration [H+] =?pH = –Log [H+]
4 = –Log [H+]
Multiply through by –1
–4 = Log [H+]
Take the anti-log of –4
[H+] = anti-log (–4)
[H+] = 1×10⁻⁴ M
Comparison of [H+] at pH 9 and pH 4[H+] at pH 9 = 1×10⁻⁹ M[H+] at pH 4 = 1×10⁻⁴ MComparison =?Comparison = [H+] at pH 4 / [H+] at pH 9
[H+] at pH 4 / [H+] at pH 9 = 1×10⁻⁴ / 1×10⁻⁹
[H+] at pH 4 / [H+] at pH 9 = 100000
Cross multiply
[H+] at pH 4 = 100000 × [H+] at pH 9
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Microorganisms that catabolize sugars into ethanol and hydrogen gas would most likely be categorized as?
Microorganisms that catabolize sugars into ethanol and hydrogen gas would most likely be categorized as heterolactic fermenters.
What is fermentation?Fermentation is any of many anaerobic biochemical reactions in which an enzymes produced by a microorganism catalyses the conversion of one substance into another.
Fermentation especially involves the conversion (using yeast) of sugars to alcohol or acetic acid with the evolution of carbon dioxide.
However, fermentation can either be homolactic or heterolactic. The conversion of one glucose molecule into two lactic acid molecules is homolactic fermentation while the conversion of one glucose molecule into lactic acid, carbon dioxide, and ethanol is known as heterolactic fermentation.
Therefore, it can be said that microorganisms that catabolize sugars into ethanol and hydrogen gas would most likely be categorized as heterolactic fermenters.
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asm 104 some alleles are dominant, others are recessive. from looking at pea plants you notice the following relationship between genotype and phenotype (the phenotype is the physical appearance of the organism): w w -> white v v -> violet w v -> violet v w -> violet is the white allele dominant?
The relationship between genotype and phenotype white v v
Which allele is the dominant allele in pea manufacturers?
A pea plant is heterozygous for both grain shape and seed color. S is the allele for the dominant, globular shape characteristic; s is the allele for the recessive, dented shape factor.
What is the distinction between phenotype genotype and allele?
The alleles an person has at a locus are called a genotype. The genotype of an organism is often described using letters. The visible manifestation of the genotype is called an organism's phenotype. Alleles are not formed equal.
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How might associative learning explain why different species of distasteful or stinging insects have similar colors?
Natural selection would promote colour pattern convergence because a predator learning to identify a pattern with a sting or terrible taste would avoid all other individuals with that colour pattern, independent of species.
What is the definition of associative learning in animal behaviour?In animal behaviour, associative learning refers to any learning process in which a new response gets linked with a specific stimuli. Except for simple habituation, the phrase has been used to characterise essentially all learning in its widest sense.
A learnt behaviour would be sneezing. Only after conscious thinking do all acts occur. Practice and repetition result in innate behaviour. Both acquired and instinctual behaviours are examples of observable behaviours.
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In a short essay (about 100-150 words) focusing on energy transfer and transformation, discuss the advantages and disadvantages of hibernation.
The passage of energy from one place to another is known as energy transfer. When energy transforms, it goes from one type to another.
What are the advantages of Hibernation?The greatest strategy to reduce energy consumption in challenging circumstances, such as when the outside temperature is at or below 0 °C, is to hibernate.
What are the disadvantages of hibernation?Animals are found to incur expenditures during hibernation. Both the negative physiological side-effects of hibernation and the costs associated with being unable to respond to stimuli are included in these expenses.
What is hibernation?According to definition, hibernation is a state of torpor that is only experienced during the winter and is sustained for periods longer than 24 hours. A mammal's metabolism slows down during hibernation, allowing the body temperature to drop to a few degrees above ambient levels. The animal will actively produce heat when its body is too chilly to keep alive.
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The number of times the path of the sun on the celestial sphere crosses the celestial equator is?
The number of times the path of the sun on the celestial sphere crosses the celestial equator is two times in a year. The celestial sphere in the earth system is like an imaginary line that houses all objects in space.
What is celestial equator?Celestial equator is a great and big circle in which the celestial sphere meet or intersect with the equator. It is an extension of the earths equator and it is equidistant to the celestial poles. Celestial sphere is use in the earth centric system to properly position objects in space.
Therefore, The number of times the path of the sun on the celestial sphere crosses the celestial equator is two times in a year.
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A population of sharks lives in the atlantic ocean. over the last 50 years, the size of the shark population increased. what best explains the increase in the size of the shark population?
More sharks were born than died.
The term "population" usually refers to the total number of people living in a certain area, such as a city or town, region, nation, continent, or the entire planet. Governments frequently use censuses, a procedure for gathering, analyzing, compiling, and releasing statistics on a population, to determine the number of the resident people under their jurisdiction. A population is frequently referred to as a group of organisms in genetics where any two individuals can mate with each other. A breeding group known as a gamodeme is one that may routinely exchange gametes to create children who are typically viable.
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Name one or more membrane activities that occur both in fertilization of an egg and in neurotransmission across a synapse (see Figure 47.3 ).
Membrane fusion is the membrane activity that occurs both in the fertilization of an egg and in neurotransmission across a synapse.
What is membrane fusion?One of life's most essential processes, membrane fusion, happens when two distinct lipid membranes combine to form a single continuous bilayer. Fusion reactions have similar characteristics, but different proteins operate as their catalysts. In order to destabilize the lipid/water barrier and start the mixing of the lipids, these proteins facilitate the first identification of the membranes that are intended for fusion and bring the membranes close together.
To provide strict control in space and time, assemblies of protein complexes or a single fusion protein may be all that is needed for intracellular fusion processes. In order to effect the merging of the bilayers, cellular fusion machines are modified to suit the requirements of various reactions, but they function according to similar principles.
Therefore, membrane fusion is the membrane activity that occurs both in the fertilization of an egg and in neurotransmission across a synapse.
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Write a short essay on Captain robber barons
Answer:
Wow you didn’t need to report me
In the late 1800s and early 1900s, during the climax of the American Industrial Revolution, there was a small group of men who owned the major businesses and were leaders of their industries. They owned factories, railroads, banks, and even created company towns for the sole purpose of housing their workers. Due to the efforts of these few men, the U.S. economy became the envy of the world, and America became a leading world power. They provided the public with products that were in high demand for reasonable prices, and opened their markets to countries overseas. Although many people believe the early industrialists were Robber Barons who exploited the poor, these great men were truly Captains of Industry who created new ways of doing…show more content…Although some of these criticisms are well founded, men like Andrew Carnegie and John D. Rockefeller were, in fact, Captains of Industry because they employed millions and created new ways of doing business. Before all these industrialists can along, America was just another country that had little significance to the world. If it was not for them, we as a nation would not be where we are today. The industrialists prospered mainly due to their wit, and the many innovations that they brought to their various fields of business. They created monopolies because they were the most effective forms of enterprise, and there were no laws that prohibited or restricted their use. As John D. Rockefeller himself said, "I believe in the spirit of combination and cooperation when properly conducted.It helps to reduce waste, and waste is a dissipation of power."(Danzer 424) Critics say that these men ruthlessly took over their fields of business, and "did not play fair". What's wrong with striving for success? What's wrong with being efficient? What's wrong with making a product that no one can equal? What's wrong with besting your competitors? Nothing.
If a factor is dynamic, what does that mean?
Answer:
In econometrics, a dynamic factor (also known as a diffusion index) is a series which measures the co-movement of many time series. It is used in certain macroeconomic models.
Explanation:
Answer:
a series which measures the co-movement of many time series
Explanation:
In econometrics, a dynamic factor (also known as a diffusion index) is a series which measures the co-movement of many time series. It is used in certain macroeconomic models.
Given that a typical excretory system selectively absorbs and secretes materials, what function does filtration serve?
The function does filtration serve is
The nephron is the kidney's functional unit. Millions of nephrons make up each kidney, and they all contribute significantly to the filtration and purification of blood. The nephron is split into the glomerulus and renal tubule, which work together to remove extra waste from the body.
Although the proximal tubules of both types of nephrons are capable of absorbing nutrients, only juxtamedullary nephrons have Henle loops that go deep inside the renal medulla. Therefore, the only kidneys that can produce urine that is more concentrated than the blood are those that have juxtamedullary nephrons.The structural and operational unit of the kidney is the nephron. It filters the blood and reabsorbs the vital nutrients to control the levels of water and minerals like sodium.To know more about Nephron visit:
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