Answer:
The second code in this case is the procedure for perfusion
Explanation:
Extracorporeal perfusion is the process of diverting the patient's blood via an artificial circulatory device to enable the gas exchange (oxygen absorbed, carbon dioxide removed) to take place. Only medical experts should handle this procedure so as to avoid any and all undesired scenarios or negligence towards patient care.
Which class of protozoa shows nuclear dimorphism:
Answer:
Protozoan Tetrahymena
hope it helps!
Protozoa are eukaryotic organisms that are single-celled and free-living. Paramecium and Tetrahymena are the members of the ciliated class of Protozoan showing nuclear dimorphism.
What are Protozoa?Protozoans has been defined as unicellular eukaryote that is either parasitic or free-living. Ciliate is one of the classes of Protozoans that are characterized by the presence of cilia on the outer surface of the body.
The genus Paramecium and Tetrahymena of ciliated Protozoans show nuclear dimorphism as they have two different types of nuclei in their cell. One of the nuclei is somatic and the other is germline.
This property of nuclear dimorphism is seen in the lower organism like the Protozoans that needs a micronucleus for reproduction and the other macronucleus for the functioning and regulating of the cell. This property of the Protozoans makes them different from the other eukaryotes that possess only a single nucleus in their cell.
Therefore, the ciliated class of Protozoans shows nuclear dimorphism.
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PLEASE HELP ME FIND THE ANSWERS
The answer responses are:
The human and cow genes are very similar, but not identical. There will be some differences in the codons (mRNA) that code for certain amino acids. It is difficult to determine exactly how many codons are the same without knowing the specific genes being compared. Similarly, the number of identical amino acids in the sequence will depend on the specific genes being compared. Yes, it is possible for two humans or two cows to have differences in their DNA sequences for insulin, yet still make the exact same insulin proteins. This is because the genetic code is degenerate, meaning that multiple codons can code for the same amino acid. Additionally, there are often variations in non-coding regions of DNA that do not affect the final protein product. The six codons that can code for the amino acid leucine are: UUA, UUG, CUU, CUC, CUA, and CUG.What is the gene about?In terms of question 5, A. The mutant DNA codes for the amino acid tyrosine (Y), while the normal DNA codes for a stop codon. The person with this mutation will not be diabetic because the protein product will be truncated and not functional.
B. The mutant DNA still codes for the amino acid leucine (L), although it is coded for by a different codon. Depending on the exact location of the mutation, this person may or may not be diabetic. If the mutation occurs in a critical region of the insulin gene that affects its function, the person may be diabetic. However, if the mutation occurs in a non-critical region, the person may still be able to produce functional insulin.
Therefore, Based on the amino acid sequences, the human and chimpanzee are the most closely related organisms. The two sequences are almost identical, differing only by a single amino acid at position 2. The pig and cricket sequences are much more different from the human and chimpanzee sequences, differing at multiple positions.
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See transcribed text below
1. Comparing the human gene to the cow gene, how many of the codons (mRNA) are exactly the same?
2. How many of the amino acids in the sequence are exactly the same?
3. Could two humans (or two cows) have some differences in their DNA sequences for insulin, yet still make the exact same insulin proteins? Explain.
4. Find ALL of the codons that can code for the amino acid leucine and list them. There are 6 total.
5. Often a person with diabetes has a defect in the sequence of DNA that codes for making the insulin protein.
A. Suppose a person has a mutation in his or her DNA and the first triplet for the insulin gene reads TA T. The normal gene reads TAG. What amino acid does the mutant DNA and the normal DNA code for, and will the person with this mutation be diabetic? Explain.
B. Another mutation changes the insulin gene to read T C T (instead of the normal T A G). Will this person be diabetic? Explain.
6. DNA sequences are often used to determine relationships between organisms. DNA sequences that code for a particular gene can vary, although organisms that are closely related will have very similar sequences. This table shows the amino acid sequences of 4 organisms. Based on these sequences, which two organisms are the most closely related? Explain.
Human:
Chimpanzee:
CCA TAG CAC CTA
CCA TAA CAC CTA
Pig:
CCA TGT AAA CGA
Cricket:
CCT AAA GGG ACG
Draw and label the structure of a neuron.
The nervous system's basic unit is a neuron. The cell body, dendrites, and axon make it up.
Cell Body (Soma): The cell body contains the nucleus and other neuron-essential components. It integrates and sends dendritic signals.
Dendrites: These branches receive input from other neurons or sensory receptors. They receive neuronal impulses as key input locations.
Axon: The long, thin axon conducts electrical signals from the cell body. The fatty myelin coating insulates and transmits signals. Axon terminals or synaptic terminals connect with other neurons or target cells through synapses.
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Please look at the photo and help me ASAP
Answer:
1 red, 2 pink, 1 white
1) What three things do geologis look at when studying a rock
Sample
Answer: When studying a rock sample, geologists observe the rock's mineral composition, color, and texture.
Explanation:
Answer:
When studying a rock sample, geologists observe the rock's mineral composition, color, and texture.
identify the molecules below. be as specfic as possible.
Five substances that are not pure
What kind of cell has one copy of each chromosome
Answer:
Germline cells
Explanation:
Germline cells, also known as se.x cells or zygotes, are the cells that are responsible for passing along the genetics of an individual to the offspring.
There is only one copy of each chromosome in these cells because they fertilize (combine) with another individual's germline cell to create the offspring. If there were more than one copy, the resulting offspring would not have diploid chromosomes.
Which color of light has the least energy?
A. Blue
Ο Ο
B. Red
C. Orange
D. Violet
2 examples of what resources that humans use and how they affect the hydrosphere
Answer:
Fossil Fuels and Water resources
Explanation:
Humans use fossil fuels for transportation and other industries, but their combustion releases greenhouse gases that cause climate change and pollution that can harm aquatic ecosystems. Freshwater resources are also used by humans, but overuse and pollution can cause water scarcity and harm aquatic life, and the construction of dams and other infrastructure can alter natural water flows and ecosystems.
How many base pairs per turn of the helix would most likely correspond to a positively supercoiled DNA molecule
Answer: Five
Explanation:
A positively supercoiled DNA is a overwound DNA. It forms a twisted shaped of figure eight. The lobes of the figure will appear rotated in clockwise or anticlockwise direction with respect to each other. The base pair per turn for the helix in positively supercoiled DNA molecule is five. This conformation of DNA inhibits the replication and transcription processes due to overwound nature of DNA.
The ________ of a protein is the specific order of amino acids that makes it up, but it needs to undergo much more modification before it is a finished protein.
Select one:
a.
mRNA
b.
primary structure
c.
tRNA
d.
DNA code
The precise arrangement of amino acids that make up a protein forms its main structure, but before a protein is considered complete, it must go through considerably more change.
The sequence of amino acids encoded in the DNA code determines the main structure, which is the building block of a protein. This sequence is initially translated into mRNA by tRNA before being translated again into a protein.
The final three-dimensional structure of the protein is formed after the primary structure is altered by procedures including folding, phosphorylation, glycosylation, and disulfide bridges. The biological activities of proteins are made possible by their three-dimensional structure.
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uses of biotechnology in washing powder making
Answer:
Here are some uses of biotechnology in the production of washing powders:
Enzymes: Enzymes are commonly used in washing powders to enhance the cleaning efficiency and remove various types of stains. Proteases, amylases, lipases, and cellulases are examples of enzymes used in washing powders. These enzymes break down protein-based, starch-based, lipid-based, and cellulose-based stains, respectively, into smaller fragments, making them easier to remove during the washing process.
Bio-surfactants: Surfactants are essential components of washing powders as they help to remove dirt and oil from fabrics. Biotechnology allows for the development of bio-surfactants, which are surfactants derived from biological sources, such as bacteria or yeast. These bio-surfactants are more environmentally friendly than traditional surfactants as they are biodegradable and have lower ecological impact.
Microbial Strains: Biotechnology can be used to isolate, characterize, and optimize microbial strains that produce enzymes or bio-surfactants. Microorganisms, such as bacteria and fungi, can be engineered or selected for their ability to produce specific compounds that enhance the cleaning performance of washing powders.
Genetic Modification: Genetic modification techniques can be employed to enhance the properties of microorganisms used in the production of enzymes or bio-surfactants. This allows for the creation of microorganisms with improved characteristics, such as increased enzyme activity or enhanced stability under varying conditions.
Fermentation Processes: Biotechnology facilitates the use of fermentation processes to produce enzymes and bio-surfactants at a large scale. Fermentation involves the controlled growth of microorganisms in bioreactors, where they produce enzymes or bio-surfactants through metabolic processes. This enables the efficient and cost-effective production of these ingredients for use in washing powders.
Explanation:
Male organisms are more susceptible to genetic disorders linked to the sex chromosome then female because they have _______, and therefore, the law of dominance doesn’t apply
Because male creatures contain X and Y chromosomes, which are sex chromosomes, the law for dominance does not apply to them and they more susceptible to sex-related genetic diseases than female species.
Why are sex-related features more prevalent in males than females?Males only inherited one X chromosome, hence they only have one chance to receive the "good" allele because females contain two versions of an x-linked allele whereas males only carry one. Males are more likely than females to exhibit X-linked characteristics.
Why are sex-related genetic diseases exclusively inherited by women?That's because X-linked diseases are typically brought on by a lack of functional copies of a gene found on the X chromosome. Males are born with just one X chromosome. Hence, they just require one malfunctioning .
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El acero es homogénea,heterogénea,elemento,compuesto?
Answer:
El acero es una mezcla homogénea, sin embargo, está hecho de hierro y carbono. Una sustancia pura es diferente de una mezcla homogénea porque una sustancia pura tiene un solo componente.
A botanist wanted to see if a new strain of corn could germinate in soil that was too salty for regular corn. She conducted a study on the germination success of seeds from the new strain that were exposed to various levels of salty soil, from zero to normal (100 mg/L), high (200 mg/L), very high (400 mg/L), to normally lethal (800 mg/L). The table below shows her data for this study.
Write a formal hypothesis for this study.
Does her data support or reject the hypothesis? Explain your reasoning.
Formal hypothesis: The new strain of corn can germinate in soil with higher salt concentrations than regular corn.
The data from the study shows that the new strain of corn has a higher germination success rate than regular corn in soil with increasing salt concentrations. At normal salt concentration (100 mg/L), the germination rate for both the new and regular corn strains was high, with 90% of seeds germinating. At higher salt concentrations of 200 mg/L and 400 mg/L, the new strain of corn still showed a relatively high germination rate of 90% and 55%, respectively, while the regular corn strain had a lower germination rate of 90% and 35%, respectively.
Even at the highest salt concentration tested (800 mg/L), some seeds from the new strain of corn were able to germinate, although the percentage was not reported. Therefore, the data supports the hypothesis that the new strain of corn can germinate in soil with higher salt concentrations than regular corn.
Expansion:
Plants require a certain amount of salt to grow and function properly, but too much salt can be harmful and even lethal to them. The ability to germinate and grow in soil with high salt concentrations is an important trait for plants, particularly in regions with high soil salinity.
The study conducted by the botanist aimed to assess whether a new strain of corn had this desirable trait. The data collected from the study supports the hypothesis that the new strain of corn can germinate in soil with higher salt concentrations than regular corn.
The fact that the new corn strain had a higher germination success rate than regular corn at higher salt concentrations suggests that it may have adaptations that allow it to tolerate salt stress more effectively. These adaptations could include mechanisms for excluding salt from the plant, or for storing salt in compartments that are less harmful to the plant.
Overall, the results of this study are promising for the potential use of the new strain of corn in regions with high soil salinity. However, further research is needed to determine whether the new strain of corn has other desirable properties, such as higher yields or better nutritional value, and to assess its performance in field conditions.
Imagine you have collected data on the temperature and dissolved oxygen (mg/L) in a eutrophic lake over 5 years. You want to see if dissolved oxygen varies with temperature in this lake. What statistical test would you do? Explain why you chose this test.
2. Imagein the Biology department needs to decide which lab curriculum yeilds better student outcomes. Five sextions are assigned to curriculum A, and five sections are assigned to curriculum B. All sections are administered a pre- and post-test that measures students’ attitudes toward science and knowledge of biology. The department wants to see if students’ gains are greater in one curriculum or the other. What statistical test should be done to determine if there is a significant difference? Explain why you chose this test.
Answer:
1. Temperature Vs dissolved oxgen in eutrophic lake: Temperature and dissolvec oxygen are two variables given which changes with time. To test the relationship between 2 variables, we can use correlation and regression and statistical T test.
Correlation between 2 variables is determined by correlation coefficient r, whose value lies between +1 to -1. Correlation is the measure of linear relationship between variables.If we get non-zero value in correlation, the relationship can be further tested with statistical T test. This test is done to check whether the correlation is significant. If the null hypothesis is rejected at p value of 0.05, the correlation is considered significant.To get precise relationship between 2 variables, we use linear regression. It gives a straight line graph for 2 variables.Correlation coefficient tells how much one variable change with respect to the change in another variable. The regression straight line is used to predict the value of dependent variable from the value of independent variable.
2. Measure of student attitude in field of science and knowledge by pre and post test in curriculum A and curriculum B:
We can use T test to determine the differencesCalculate the difference in gains for each student in their post and pre exams in both curriculums. (Gain in post- test ) minus ( gain in pre-test) for both curriculumsCalculate mode values of the of the above 2 test on curriculum and find out the highest mode.Perform a unpaired T test to find out significant difference in post and pre exams of curriculum.Unpaired T test is the T test of 2 independant variables which predicts the significant difference.Learn more about eutrophic lake
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5. Unsaturated fats that are liquids are called:
Answer:
Unsaturated fat are usually called oils.
Answer:
oils
Explanation:
bacteria can normally be found in many areas of the body. where should they never be found related to the body
Answer: Brain and Circulatory system
Explanation:
when the endangered species act was established in 1973 the endangered and threatened species list included 78 u.s. species. in 2018 that number had risen to . question 2 options: 356 507 770 1000 1661
In 2018, the number of endangered and threatened species listed in the United States under the Endangered Species Act of 1973 was 507.
Endangered species are those species of plants, animals, and other organisms that are at risk of extinction due to declining populations and threats to their habitats. The Endangered Species Act of 1973 in the United States provides a framework for the protection and recovery of these species. As of 2018, there were 507 species listed as endangered or threatened in the US. Human activities such as habitat destruction, introduction of non-native species, and climate change are some of the major factors contributing to the decline of these species. It is important to take action to protect and conserve these species as they play an important role in maintaining the balance of ecosystems and preserving biodiversity.
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Ý nghĩa chủ yếu của việc phát triển các vùng chuyên canh cây công nghiệp lâu năm ở Tây Nguyên là
What is coded by the codon UAA?
Answer:
its A
Explanation:
Three sequences, UAG, UGA, and UAA, known as stop codons, do not code for an amino acid. instead' they signal the release of the nascent polypeptide from the ribosome.
How is carbon dioxide fixed into carbon that is usable for biological life?
Volcanic activity
Decomposition
Photosynthesis
Answer:
The answer is photosynthesis
Explanation:
carbon dioxide fixed into carbon that is usable for biological life
What do you think energy really is?
Answer:
sugar
Explanation:
The following lines from Frost's "The Road Not Taken" indicate what about the Speaker? Line 2: And sorry I could not travel both Line 3: And be one traveler long I stood A. The spaaker is waiting for someone TOT a long time ("long I stood"). B The speaker is traveling by himself- just "one traveler." C. The speaker is sorry he can't travel both roads can you help me
collect sunlight for photosynthesis
Flower
Flower Stalk
Leaf
Xylem
Phloem
Stem
Roots
Tap Roots
Answer:
phloem,xylem,and leaf
Explanation:
Submission 3 Capstone Project: How can you make your community more environmentally sustainable? Below are 3 Crosscutting Concepts. Select two and provide an explanation for how your investigation/”research” on energy usage in the home addresses them.
1.Crosscutting Concepts Patterns: Observed patterns in nature guide organization and classification and prompt questions about relationships and causes underlying them. Explanation
2. Cause and Effect: Claim uses empirical evidence to differentiate between cause and correlation, and supports specific cause and effect relationships. Explanation
3.Explanation Stability and Change: Analysis and explanation of geoscience data and global climate models show that a change in one Earth system can result in feedbacks (negative or positive) that can stabilize or destabilize a system. Explanation
Crosscutting Concept: Patterns
Patterns observed in the natural world facilitate organization and classification, as well as raise inquiries about the underlying relationships and causes.
During my exploration of energy usage in residential settings, I discerned several discernible patterns. For instance, a prominent pattern emerged, indicating that the bulk of energy consumption in homes pertains to heating and cooling, followed by lighting and appliances. Moreover, I discovered that energy usage displays notable variations based on factors such as dwelling size, number of occupants, and climatic conditions.
These identifiable patterns enable us to comprehend the factors influencing energy consumption and identify avenues for conservation. By acknowledging that heating and cooling dominate energy use, we can channel our efforts towards enhancing the efficiency of these systems.
Patterns Cause and Effect?Utilizing empirical evidence, claims can differentiate between causal relationships and mere correlations, thus supporting the establishment of specific cause and effect linkages.
During my investigation into energy usage in residential environments, I employed empirical evidence to unveil distinct cause and effect associations. For instance, I observed a positive correlation between energy consumption and dwelling size. This relationship can be attributed to the increased energy requirements for heating and cooling in larger homes.
Similarly, I discovered that energy consumption rises alongside the number of occupants. This phenomenon arises due to the presence of more individuals utilizing appliances and lighting fixtures.
These cause and effect relationships foster a deeper comprehension of how our choices impact energy consumption. For instance, if we aspire to curtail our energy usage, we can opt for smaller homes or limit the number of occupants.
Crosscutting Concept: Stability and Change
Analysis and explication of geoscience data and global climate models reveal that modifications within one Earth system can yield feedback loops, which can either stabilize or destabilize the system.
Throughout my examination of energy usage in residential settings, I ascertained that alterations in a single energy-consuming appliance or behavior can trigger a chain reaction affecting other appliances and behaviors. Consider replacing inefficient light bulbs with energy-efficient alternatives; this simple change can prompt a behavioral shift to turn off lights when leaving a room, subsequently resulting in a substantial reduction in energy consumption.
These feedback loops empower us to comprehend how our choices can influence the environment. For instance, collectively opting for reduced driving can mitigate air pollution and greenhouse gas emissions.
By comprehending the crosscutting concepts of patterns, cause and effect, and stability and change, we can make informed decisions regarding energy usage. These choices enable us to diminish our environmental footprint and forge a sustainable future.
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Will Gatorade help a low sodium level?
Question 5 (1 point)
The more basic a solution is the lower its pH will he
True or false?
Answer:
False
Explanation:
The more basic a solution is the higher the pH will be.
In regards to the question proposed to our class (included above) during our genetics unit on whether
children of married identical twins will end up being identical twins themselves, my claim is:
Answer:
will this work or help?
Explanation:
Multiple births can include fraternal or identical multiples ... This can happen if your body releases multiple eggs and ... Are a twin yourself or have twins in your family.
I really need help with number 7 no one was able to help me yet and I need the help thanks
Answer:
insulin it is used by the diabetes patient when they are diabetes level is high and on that time there to use this because medicines is not able to work properly on that time so this insulin have been used injection
jai hind
When blood glucose levels is too high, insulin is secreted and is responsible for increasing the absorption of glucose into the body cells for its own use which decreases the blood glucose level to normal levels. Insulin regulates blood glucose levels.
On the flip side, if blood glucose levels are too low, glucagon is secreted and is responsible for converting stored glycogen into glucose which are then secreted into the blood, thus increasing blood glucose levels.