Answer:
The lowest starting height the skater can be so that he complete the loop is 6 meters.
Explanation:
By using data from your chosen ramp design from the "Testing" section of the lab. The lowest starting height the skater can be so that he complete the loop is 6 meters and the height of the skater is genetic factor.
What is genetic drift?The term genetic drift has been defined as the change in the frequency in the gene variant which has been already existed and in the population the change that takes place is random. There are mainly two types of genetic drift and these are population bottlenecks as well as the second one is the founder effect.
The term hormones means that they are the chemical messengers of the body as they use to travel in the bloodstream to the tissue or the organs. The function of hormones is slow just over the time and they have impact on growth as well as development.
The Adrenal glands are also known as suprarenal glands and they are small in size and they have a triangular shape and they has been located just top of the kidneys.
Therefore, By using data from your chosen ramp design from the "Testing" section of the lab. The lowest starting height the skater can be so that he complete the loop is 6 meters and the height of the skater is genetic factor.
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when viewed from the facial aspect, the mandibular central incisor is_____ mandibular lateral incisor.
When viewed from the facial aspect, the mandibular central incisor is smaller than the mandibular lateral incisor.
The incisors, or anterior teeth, are the first set of teeth that humans get, the maxillary incisors are located in the upper jaw, while the mandibular incisors are located in the lower jaw. The four maxillary incisors and the four mandibular incisors are the human mouth's front teeth. The incisors are divided into two groups: the central incisors and the lateral incisors.
The mandibular central incisor is a relatively small, smooth tooth with a single root that sits just beneath the mandibular lateral incisor. They have an incisal edge that is oriented perpendicular to the long axis of the tooth, allowing them to shear food into smaller pieces. The mandibular lateral incisor, on the other hand, is a relatively large, jagged tooth with a single root. Its incisal edge is slanted and angled, allowing it to cut and tear food.
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Which of the following is considered the control group in this experiment
Answer:
the source
Explanation:
After a large disturbance, pioneer species often appear in this order.
After a large disturbance, species use to appear again in the area from organisms with lower metabolic needs than organisms with highers. In this orders of ideas, we can say that first, there would be prokaryotes or protists; second, non-vascular plants, and at third, vascular plants, as stated in the last answer option.
Plants grow in two very different ways. each type of growth is accomplished by specific types of cells. a. Trueb. False
Plants grow in two very different ways. each type of growth is accomplished by specific types of cells. True
Throughout their lifetimes, most plants continue to develop. Plants, like other multicellular creatures, develop via a combination of cell expansion and cell division. Cell growth increases cell size, but cell division (mitosis) increases cell count. Plant cells get specialized into distinct cell types as they develop due to cellular differentiation. Cells can no longer divide after they have differentiated. After that, how can plants develop or replace broken cells?
Meristem is essential for plant cell development and repair. Meristem is a form of plant tissue made up of undifferentiated cells that may reproduce and develop indefinitely.
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What can be done to save our oceans?
Answer:
Explanation:
in a simplex solution what is meant by scarce and abundant resources
In a simplex solution, abundant resources are the ones that are in plenty and are readily available in the production process and scarce resource is the one that is limited or insufficient in the production process.
The simplex method is used to find the optimal solution of a linear programming problem. It is an iterative method used to solve a linear programming problem with n variables and m constraints. The simplex solution method moves from one feasible solution to another until it gets to the optimal solution.
Scarce Resources Scarcity is a state of insufficient supply or availability of resources to satisfy human wants. A scarce resource in simplex solution is the one that is limited or insufficient in the production process. An example of a scarce resource is raw materials, labor, and land.
Abundant resources in a simplex solution are the ones that are in plenty and are readily available in the production process. An example of abundant resources is money or capital. However, in some cases, abundant resources may not always be used fully or not used in the production process because they may not be efficient or effective.
In conclusion, scarce and abundant resources are important in simplex solutions.
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What is one significant drawback to transferring electricity produced by solar energy from states where sunshine is abundant to states where it is not? Electricity made from solar energy is different from fossil fuels, so it needs new types of power lines. Electricity made from solar energy is different from fossil fuels, so it needs new types of power lines. The transfer could only occur during the day because solar energy cannot be stored. The transfer could only occur during the day because solar energy cannot be stored. Electricity produced from solar energy farms must be used locally and cannot be transferred at all. Electricity produced from solar energy farms must be used locally and cannot be transferred at all. The cost to transfer electricity produced by solar energy over great distances can be high.
Answer:
The transfer could only occur during the day because solar energy cannot be stored.
Explanation:
The transfer of electricity produced from solar energy only occur during the day because solar energy cannot be stored at huge level. At homes, we can easily store the electricity made from solar energy with the help of batteries but for providing electricity to a state where thousands of houses are present, very big batteries are needed to store it which can't be made due to very high cost so that's why the solar energy can not be stored.
who ever answers with a better answer gets brainliest!!!!!!! have a wonderful day dont forget to smile :)))
Answer:
A
its easier to to understand if its all organized
Answer:
A.
U smile to
have a wonderful day
Explanation:
In what part of the ocean do you find most marine organisms?
O shallow, coastal waters
O fisheries
O deep ocean waters
O none of the above
The most marine organisms are found in Shallow coastal water ( A )
Most Marine Organisms live on coastal habitats even though these habitats are about 7% of the total ocean waters. while the majority of the open ocean waters constitute the habitat for about 50 to 80% of life found on earth.
Most marine organisms live in shallow coastal waters because of the accessibility to sunshine and oxygen while the deep ocean waters are always very dark having little access to sunshine almost throughout the years.
Hence we can conclude that most marine organisms are found in the shallow coastal waters of the ocean.
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hello please help i’ll give brainliest
Answer:
Landslide
Explanation:
Landslides are sudden falls of rocks due to gravity.
Describe a insert mutation
Answer:
An insertion, as related to genomics, is a type of mutation that involves the addition of one or more nucleotides into a segment of DNA. An insertion can involve the addition of any number of nucleotides, from a single nucleotide to an entire piece of a chromosome.
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you want to determine whether a tall pea plant is homozygous for tall height ot heterozygous for tall height . in order to know, what must the other contributing parent genotype be to determine the tall pea plant genotype? hint: think back to the example about dog deafness
Based on the provided hint, in order to determine whether a tall pea plant is homozygous or heterozygous for tall height, the other contributing parent genotype must be heterozygous for tall height.
In the example about dog deafness, it was explained that the deafness in dogs is a recessive trait, and the deafness genotype is dd.
If a deaf dog is crossed with a hearing dog, the deaf dog must be homozygous for the deafness allele (dd), and the hearing dog must be heterozygous (Dd) for the deafness allele in order to determine whether the offspring will be deaf or not.
Similarly, in order to determine whether a tall pea plant is homozygous (TT) or heterozygous (Tt) for tall height, it must be crossed with a pea plant that is known to be heterozygous for tall height (Tt).
If the offspring are all tall, the tall parent is likely homozygous (TT) for tall height. If the offspring are a mix of tall and short plants, the tall parent is likely heterozygous (Tt) for tall height.
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How do scientists know the CO2 levels going back over 400,000 years?
Answer: Various proxy measurements have been used to attempt to determine atmospheric carbon dioxide concentrations millions of years in the past. These include boron and carbon isotope ratios in certain types of marine sediments, and the number of stomata observed on fossil plant leaves. 2 record of over 500 million years.
Explanation:
match the following components involved with protein import into the er with the cellular location where they are normally found. - signal recognition particle - protein translocator - mrna - srp receptor - active site of signal peptidase 1. cytosol 2. er lumen 3. er membrane
By matching the components involved with protein import into the ER with their cellular locations, we get:
Signal recognition particle: 1. cytosol
Protein translocator: 3. ER membrane
mRNA: 1. cytosol
SRP receptor: 3. ER membrane
Active site of signal peptidase: 2. ER lumen
Several elements are crucial for protein import into the endoplasmic reticulum (ER). A cytosolic protein called the signal recognition particle (SRP) identifies and attaches to the signal peptide on the developing protein as it leaves the ribosome.
The SRP then directs the ribosome-nascent protein-SRP complex to the ER membrane's SRP receptor. The nascent protein is moved more easily over the ER membrane and into the ER lumen thanks to the protein translocator, which is also a component of the ER membrane. The ER lumen contains the signal peptidase active site, which cleaves off the signal peptide. The nascent protein's mRNA can be found in the cytosol as well.
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A population of 40 deer are introduced into a wildlife sanctuary. It is estimated that the sanctuary can
sustain up to 600 deer. Absent constraints, the population would grow by 60% per year. Estimate the population
after one year Pi Estimate the population after two years P2 -
The population of deer in the wildlife sanctuary can be estimated using the formula:
P(t) = P(0) * (1 + r)^t
where P(t) is the population after t years, P(0) is the initial population, r is the growth rate per year, and t is the number of years.
In this case, the initial population (P(0)) is 40 deer, the growth rate (r) is 60% per year (0.60), and we need to estimate the population after one year (P1) and two years (P2).
To calculate P1:
P(1) = 40 * (1 + 0.60)^1
P(1) = 40 * (1 + 0.60)
P(1) = 40 * 1.60
P(1) = 64
Therefore, the estimated population after one year is 64 deer.
To calculate P2:
P(2) = 40 * (1 + 0.60)^2
P(2) = 40 * (1 + 0.60)^2
P(2) = 40 * 1.60^2
P(2) = 40 * 2.56
P(2) = 102.4
Therefore, the estimated population after two years is 102.4 deer.
It's important to note that these are estimates and assume that there are no constraints on the population growth. In reality, factors like limited resources, predation, and disease can affect the growth rate and population size.
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People are encouraged to exercise after recovering from a heart attack.
Suggest one reason why.
Ans
It will speed up your ability to return to normal activities
Explanation:
Comment on the importance of scientific knowledge for Aquaculture Engineering.
IT IS FROM THE RESEARCH METHODOLOGY COURSE
Aquaculture engineering is a multidisciplinary field of scientific engineering which aims to solve technical problems and problems related to aquatic ecosystems.
What is Aquaculture engineering?Aquaculture engineering is a multidisciplinary field of scientific engineering that aims to solve the technical problems which are associated with the farming of aquatic vertebrates, invertebrates, and algae. Common aquaculture systems are used for requiring optimization and engineering include the sea cages, ponds, and recirculating systems.
Aquaculture engineering provides insights into the biological, chemical, and physical processes which govern aquatic ecosystems and the organisms which inhabit them. Aquaculture engineering can be used to develop new techniques as well for manipulating, monitoring, and optimizing aquatic systems, as well as for the evaluation of their ecological impacts.
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Which of the following best describes homeostasis? the state of maintaining a stable internal environment despite changing external conditions the state of maintaining a stable internal environment due to electrical impulses the state of maintaining a stable internal environment due to chemical signals the state of maintaining a stable internal environment when the external conditions are constant
Answer:
the state of maintaining a stable internal environment despite changing external conditions
Explanation:
homeostasis is all about regulating, whether it be regulating body temperature through shivering, regulating body water levels, etc..
The best description of homeostasis is "the state of maintaining a stable internal environment despite changing external conditions." Homeostasis is a vital physiological process that helps to maintain the internal environment of an organism.
What is homeostasis?To achieve homeostasis, the body uses various physiological and biochemical mechanisms to monitor and respond to changes in the external environment. For example, if the external temperature becomes too high, the body will respond by sweating to cool down and maintain a stable internal temperature. Similarly, if the blood pH becomes too acidic, the body will respond by increasing the excretion of hydrogen ions to restore a more neutral pH.
Hence, the best description of homeostasis is "the state of maintaining a stable internal environment despite changing external conditions."
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Which best describes the movement through the nephron?
A. Blood is passed into the nephron and removed through the urethra.
B. All materials that exit the blood into the nephron are removed in the urine.
C. Some of the materials that exit the blood can be returned to the blood.
D. High quantities of sugars and water are excreted in the urine.
Some of the materials that exit the blood can be returned to the blood is the best description of the movement through the nephron. Therefore, the correct statement is option C.
What is the nephron?The nephron is the functional unit of the kidney that is responsible for filtration of blood, regulation of the balance of fluids and electrolytes, and removing waste products from the body.
It is filtered by the glomerulus as blood flows through the nephron, and the filtrate then passes through the renal tubules, where substances such as glucose are reabsorbed back into the bloodstream.
The process is important for maintaining the homeostasis of the body, such as regulating blood pressure and the remaining waste products are excreted out of the body in the form of urine through the ureters and urethra.
Therefore, the materials that exit the blood can be returned to the blood is the best description of the movement through the nephron.
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2. Evaluate Claims A student claims that the four types of macromolecules make up all of
important compounds of the human body. Provide evidence and reasoning to support or
refute this claim.
Answer:
Yes, our body is made up of four Macromolecules.
Explanation:
Yes, the claim of the student is right that Macromolecules such as carbohydrates, lipids, proteins, and nucleic acids makeup the human body because all the cells are made up of carbohydrates, lipids, proteins, and nucleic acids. We know that our body is made up of cells so we can say that our body is made up of four Macromolecules. For example, our muscles are made up of protein, the fats present in our body are the lipids, carbohydrates are stored in the form of glycogen In liver and nucleic acids are present in the form of DNA and RNA.
The four main macromolecules in the body are; carbohydrates, proteins, nucleic acids and lipids.
Macormolecules are those large biological molecules that play important roles in the body. The human body is filled with these macromolecules and they perform functions such as mechanical support, protection of organs, insulation etc.
There four main types of macromolecules in the body;
carbohydrates. lipids. proteins. nucleic acids.Theses macromolcules are the basis of all the complex molecules found in the human body. For instance, steroids are composed of lipids and they play very important roles in hormones in the body.
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I am made of many folds, I package molecules to leave the cell. I am the UPS guy who ships things out. What am I?
Answer:
golgi apparatus
Explanation:
the golgi apparatus packages molecules to leave the call
which genes are responsible for an autosomal dominant form of breast cancer?
The genes responsible for an autosomal dominant form of breast cancer are BRCA1 and BRCA2.
These genes are involved in DNA repair, and when they mutate, the risk of developing breast cancer increases significantly.
There are several genes that have been identified as being responsible for an autosomal dominant form of breast cancer, including BRCA1 and BRCA2. Mutations in these genes can significantly increase a person's risk of developing breast cancer. Other genes that have been linked to this type of cancer include TP53, PTEN, and STK11. It is important to note that while these genes are associated with an increased risk of breast cancer, not everyone with a mutation in one of these genes will develop the disease.
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The BRCA1 and BRCA2 genes are responsible for an autosomal dominant form of breast cancer.
The proteins that are produced by these genes help to suppress tumor growth and mutations in these genes can increase the risk of breast and other cancers. Mutations in BRCA1 and BRCA2 genes have been found to cause up to 5-10% of breast and ovarian cancers. These mutations can be inherited from either parent in an autosomal dominant pattern.
BRCA1 and BRCA2 are two genes that are responsible for an autosomal dominant form of breast cancer. These genes produce proteins that help to suppress tumor growth, and mutations in them can raise the risk of breast and other cancers. Up to 5-10% of breast and ovarian cancers are caused by mutations in the BRCA1 and BRCA2 genes. These mutations are inherited from either parent in an autosomal dominant pattern.
Thus, BRCA1 and BRCA2 genes are responsible for an autosomal dominant form of breast cancer. Mutations in these genes can increase the risk of breast and other cancers.
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Describe the mechanisms
by which enzymes lower
activation energy
Answer: applying torque on the substrates
Explanation:
Enzymes lower activation energy through various means, including positioning substrates together in the proper orientation, applying torque on the substrates, providing the proper charge or pH microenvironment, and adding or removing functional groups on the substrates.
A scientist creates a pedigree to map out a family’s inheritance pattern for a genetic disorder. After analyzing the chart, it is determined that the genetic disorder is likely autosomal recessive. Which of the following genotypes would best represent individual B and individual C?
A. Individual B: Hh / Individual C: Hh
B. Individual B: HH / Individual C: HH
C. Individual B: HH / Individual C: hh
D. Individual B: hh / Individual C: hh
Answer:
A
Explanation:
only one is black while the rest is white
B is out because all the children would be the same
C is out because the children would all be the same
D is out because all the children would be the same
The element nitrogen is present in all of the following except A) proteins.B) nucleic acids.C) amino acids.D) DNA.E) monosaccharides.
Nitrogen is present in all of the options listed except for monosaccharides. Thus, correct option is (E).
A crucial component of biological compounds is nitrogen. Nitrogen is a component of proteins, nucleic acids (DNA and RNA), amino acids (which serve as the building blocks for proteins), and DNA. Amino acids, which make up proteins, contain nitrogen as a necessary part of their structure.
Adenine, cytosine, guanine, and thymine/uracil are nitrogenous bases that are essential for the operation of nucleic acids, including DNA. Monosaccharides, simple sugars and the fundamental unit of carbohydrates, do not, however, include nitrogen. Instead, the majority of their atoms are made up of carbon, hydrogen, and oxygen.
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I NEED HELP WITH FLVS BIOLOGY 3.05 ASSIGNMENT!!!
Answer:
what's the question?
Explanation:
So I can help you luv♡
Answer:
we need to know the answers
Explanation:
Where do the atoms come from for MOST of the organic materials in the plant?
A: air
B: water
C: soil
Where do the atoms come from for MOST of the organic materials in the plant?
B. Water#CarryOnLearning\( \mathfrak{WatanabeHaruto}\)
This image displays a model of:
a.
an amino acid.
c.
a cancerous cell.
b.
an unfolded, unstable protein.
d.
none of the above
Answer:
c
Explanation:
i took test This image displays a model of:
a.
an amino acid.
c.
a cancerous cell.
b.
an unfolded, unstable protein.
d.
none of the
Answer:
B
Explanation:
took in ege
Meaning of digestion
Answer:
is the breakdown of large insoluble molecules into smaller and water soluble ones that can be used by cells as survival resources
Digestion
║Digestion is the mechanical and chemical breakdown of food in the ║gastrointestinal tract into smaller, more soluble components so that it is ║utilized easier by the body.
What is the main problem for people who don't take the simplest under- standing of the first few chapters of Genesis?
The separation of the erratic waters and the orderly creation in Genesis 1 demonstrate the great power of God. God creates time, the sky, the sea, and the land before populating them with life.
What is meant by Genesis?Husserl's problem with genesis is that while transcendental subjectivity must be created by an act of genesis, temporality and meaning must be produced by preceding actions of transcendental subject.
The creation of the planet and all life on it, the fall of Adam and Eve and the introduction of sin into the world, the history of the house of Israel, and the making of covenants by the loving Father in heaven for the salvation of His children are all described in the Book of Genesis.
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