If there is an asymmetric charge distribution on a molecule creating a positively charged sector and a negatively charged sector, the type of molecule resulting would be polar.
What is asymmetric charge distribution?Asymmetric charge distribution may be defined as a type of dissemination of charges between the molecules of compounds in an irregular pattern or at unequal frequencies.
The characteristic of polar molecules is that they occupy a charge on one side of the molecule. These molecules possess a region of partial charge. One side of these molecules is slightly positive and one side of the molecule is slightly negative.
Therefore, the polar molecules occupy an asymmetric charge distribution on a molecule creating a positively charged sector and a negatively charged sector.
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Discuss the function of hemoglobin in human body and the consequences of hemoglobin
deficiency
Hemoglobin: The high iron-containing protein in red blood cells (RBCs) is known as hemoglobin. This gives the blood a red color.
It has two main functions: it carries oxygen from the lungs to tissues of the body, and it carries carbon dioxide from cells back to the lungs for excretion.
Functions of hemoglobin:
Hemoglobin is the main reason for the red color in our blood.Hemoglobin carries oxygen and carbon dioxide. Hemoglobin interacts with other ligands.Hemoglobin plays a crucial role in maintaining the shape of red blood cells.Consequences of hemoglobin deficiency:
Hemoglobin deficiency leads to having fewer red blood cells and causes anemia.It is found in red blood cells and acts as a carrier of oxygen and carbon dioxide.Low levels of hemoglobin in the blood cause parts of the body to function more slowly and weaken due to reduced oxygenation.Hemoglobin deficiency reduces the blood's oxygen-carrying capacity.
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What determines which protein will be synthesized?
A b or c?
Answer:
I believe its the number and arrangement of amino acids PLEASE READ EXPLANATION!!!
Explanation:
Not quite sure I'm learning the same exact thing but my class had only brushed this topic at least twice and only for a little bit but we are talking a lot about amino acids so I'm making an educated guess that its the number and arrangement of amino acids
which of the following are true statements regarding the treatment of benign prostate hyperplasia (bph)? select all that apply
Benign prostate hyperplasia (BPH) is a condition in which the prostate gland grows in size and can cause urinary problems such as frequent urination, difficulty starting and stopping urination, weak urine flow, and the need to urinate urgently.
The treatment of BPH depends on the severity of symptoms and can include the following:
Watchful waiting: If the symptoms of BPH are mild, doctors may recommend watchful waiting, which involves monitoring the condition and avoiding treatment unless symptoms worsen.
Medications: Alpha-blockers such as tamsulosin and alfuzosin can relax the muscles in the prostate and bladder neck, making it easier to urinate. 5-alpha reductase inhibitors, such as finasteride and dutasteride, can reduce the production of dihydrotestosterone (DHT), a hormone that contributes to prostate growth.
Minimally invasive procedures: Procedures such as transurethral microwave thermotherapy (TUMT), transurethral needle ablation (TUNA), and laser therapy use heat or other forms of energy to reduce the size of the prostate and relieve symptoms.
Surgery: In more severe cases of BPH, surgery may be necessary. Transurethral resection of the prostate (TURP) is a common surgical procedure in which a portion of the prostate is removed to relieve urinary obstruction.
The choice of treatment depends on several factors, including the severity of symptoms, the size of the prostate, the patient's age and overall health, and the presence of other medical conditions. It is important to consult a healthcare professional to determine the most appropriate treatment for BPH.
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please help asap. sarah no longer responds to fear or excitement. what part of the endocrine system is most likely being affected? A: adrenal gland B: parathyroid gland C: pituitary gland D: thyroid gland
Answer: Adrenal gland
Body systems in the human body work together to support the essential life functions of the body. The urinary system is under influence of several other body systems to help it function properly. Which of these CORRECTLY pairs a body system and its influence on the urinary system?
Question 31 options:
The nervous system releases the hormones, ADH and aldosterone, which adjust the rates of fluid and electrolyte reabsorption in the kidneys.
The nervous system monitors distention of the bladder, controlling urination.
The cardiovascular system makes erythropoietin to make new red blood cells.
The digestive system excretes wastes not filtered by the kidneys.
Answer:
The urinary system works with the digestive system and in other systems in your body. It releases the waste from the food they digest and it also works with the circulatory system. It works in other systems in the body to help the body maintain the homeostasis says the Biologists. The waste product is kept dissolved in the liquid (water) and in mammals is stored in a bladder. The work of the kidney inside the body is to maintain acid and water-salt levels of the blood. It releases the waste in the body and it also filters the blood inside of you.
Explanation:
I dont know if this helps but its what I have gotten told. I know its not the exact answer but when i looked up your question its what i got.
Answer:
The nervous system monitors distention of the bladder, controlling urination.
Explanation:
The endocrine system releases the hormones, ADH and aldosterone, which adjust the rates of fluid and electrolyte reabsorption in the kidneys. The kidneys make erythropoietin to make new red blood cells for the cardiovascular system. The digestive system absorbs water needed by the kidneys to excrete wastes.
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the ratio of alcohol to total blood volume is the group of answer choices complete blood count. red blood cell volume. blood alcohol concentration. ethyl alcohol density.
The ratio of alcohol to total blood volume is the blood alcohol concentration.
The blood alcohol concentration (BAC) is the ratio of alcohol to total blood volume. It is used to measure the amount of alcohol in a person's blood. BAC is measured by taking a sample of blood from a person's vein and testing it for alcohol content. The results of a BAC test are expressed as a percentage of alcohol in the blood.The BAC is measured in units of alcohol per 100 milliliters of blood. A BAC of 0.01% means that there is one part of alcohol in 10,000 parts of blood.
How much alcohol you've consumed, your weight, your gender, and how quickly you're drinking, might have an impact on your blood alcohol concentration. Your blood alcohol content will increase as you consume more alcohol. If you consume too much alcohol, your blood alcohol level may rise dangerously high, which could cause serious illness or even death.
Alcohol that is consumed is absorbed into the bloodstream and distributed throughout the body. Because alcohol is a central nervous system depressant, it has an impact on your brain. This indicates that it causes a slowdown in brainfunction. A breathalyzer, a device that gauges the level of alcohol in your breath, can determine your blood alcohol content.The legal limit for driving in most states is 0.08%.
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This passage describes the antenna type trait in fruit flies:
Most fruit flies have a pair of antennae on their head. But, some flies appear to have an extra pair of legs on their head instead! These flies have a mutation, or change, in a gene that affects body development. This mutation makes the cells in the fly's head form mutated antennae that are like legs.
In a group of fruit flies, some individuals have mutated antennae and others have normal antennae. In this group, the gene for the antenna type trait has two alleles. The allele A is for mutated antennae, and the allele a is for normal antennae.
A certain fruit fly from this group has normal antennae. This fly has two alleles for normal antennae.
Based on this information, what is this fruit fly's genotype for the antenna type gene?
Describe a physical adaptation of chipmunks. Use complete sentences.
Answer:
A physical adaptation of chipmunks would be their fur thinness or thickness. If their environment demands that they need thicker fur to keep them warm, they will start to grow more fur to adapt physically to the environment.
Explanation:
.True or False: Most mutations are neutral; they have little or no effect.
Answer:
true
Explanation:
the majority of mutations are neutral in their effects on the organisms in which they occur . beneficial mutations may become more common through natural selection. harmful mutations may cause genetic disorders or cancer :))
what is the connection between poverty and food deserts?.(ecology)
Answer:
it is a connection problem
both of them are problems
A(n) ___ worldview puts humans above the earth.
A. planetary-management and stewardship
B. none of these
C. planetary-management
D. environmental-wisdom
E. stewardship
F. all of these
Answer: C
Explanation:
How does meiosis help maintain diploid cells in offspring? Use the terms chromosomes,
diploid, haploid, fertilized egg, and sex cells in your answer.
Answer: Meiosis forms sex cells with the correct haploid number of chromosomes. This maintains the correct diploid number of chromosomes in organisms when sex cells join. 2. Meiosis creates genetic variation by producing haploid cells.
Explanation:
Please help me with this
Answer:
1. Physiological 2. Behavioral 3. Behavioral 4. Structural 5. Physiological 6. Physiological 7. Physiological 8. Behavioral
Explanation:
what would you call the process that is occurring
Answer: happen or take place
Write an essay describing your chosen genetic disorder. Include information about the genetic mutation that cause the disorder the effects and symptoms of the mutation how it is acquired and how common it is
A genetic disease is a condition that, entirely or in part, results from a change in the usual DNA sequence.
Sickle cell anemia is one of the inherited illnesses. The structure of red blood cells, which carry oxygen to every part of the body, is impacted.Typically rounded and flexible, red blood cells may flow through blood veins with ease. Sickle cell anemia is characterized by red blood cells having crescent-shaped or sickle-shaped hemoglobin. These sickle cells also form a tough, sticky covering that may slow or prevent blood flow. Cause: A mutation in both copies of the hemoglobin-Beta gene (HBB) gene on chromosome 11 results in the hereditary illness sickle cell disease (SCD). An element of hemoglobin, the protein in red blood cells that carries oxygen, is encoded by this gene. Because of the mutation, hemoglobin molecules clump together to form red blood cells with a sickle shape.Symptoms: Anemia, Periodic episodes of extreme pain, Swelling of hands and feet, Frequent infections, Delayed growth or puberty and Vision problems.You receive 1 set each from your father and mother as inheritance. A kid must receive a copy of the sickle cell gene from both of its parents in order to be born with sickle cell disease. This often occurs when both parents have the sickle cell trait, commonly known as being "carriers" of the sickle cell gene.Learn more about the Genetic disorder with the help of the given link:
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microtubules start at the centrosome and then connect to the kinetochores, which are structures at the central region of chromosomes
Microtubules start at the centrosome and then connect to the kinetochores, which are structures at the central region of chromosomes. The centrosome is the main microtubule-organizing center (MTOC) in most animal cells, whereas plant cells lack a typical centrosome.
The two spindle poles are the central region of a chromosome where a kinetochore is connected. Microtubules are a type of cytoskeletal protein filament that plays a crucial role in the mechanics of cell division.
Microtubules, together with actin and intermediate filaments, form the cytoskeleton, which is the structural framework of the cell. Microtubules also transport vesicles and organelles, support cell shape, and mediate cell signaling.
They are also crucial in cell division, serving as a framework for the mitotic spindle, a structure that segregates chromosomes during cell division.
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Someone plz help me
Answer:
a
Explanation:
sorry if wrong
have a great day
How do you relate the classification of organisms to other concepts or topics in biology or other disciplines?
Classification of organisms is a fundamental concept in biology, and it can be related to many other topics as well.
What is classification of organisms?Classification of organisms is the process of grouping organisms into categories based on their characteristics. It is an important step in understanding the diversity of life on Earth.
For example, the classification of organisms is important for understanding the evolutionary relationships between species, as well as the changes in species over time. Additionally, it can be related to concepts such as biodiversity, conservation, and ecology, as it is a way to measure and compare the diversity of different species and their habitats. Classification of organisms is also connected to topics in chemistry, such as biochemistry and genetics, as the genetic make-up of an organism can help to classify it into a particular group. Finally, the classification of organisms is often related to the study of taxonomy, as it is used to determine the naming and organization of organisms.
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The following map was created using modern technology to determine the overall temperature of the
oceans. What can be concluded about the salinity of the areas near the equator? (2 points)
LA NINA
Jan-Mar 1989
40N
20N
EO
209
ADS
120E 15000 150W 120W DOWODW
181920212223242526282930
Public Domain
The polar regions increase salinity because the water is frozen
The cooler waters decrease the salinity of the water near the equator,
Evaporation rates of warm water increase, which increases the salinity of water
Warmer waters cause evaporation to be slowed down, which decreases salinity of water,
Answer:
Evaporation rates of warm water increase, which increases the salinity of water.
Explanation:
Evaporation rates of warm water increase, which increases the salinity of water because the amount of water is decreases which automatically increases the salinity in water. This higher salinity can be balanced by the continuous falling of fresh water from rivers into the sea ocean. There is higher rate of evaporation in warm water due to intensity of sunlight which cause the change of state from liquid to vapor form of water.
Give several reasons why nutrition has become a national concern.
Answer: A healthy diet prevents malnutrition and protects from diseases like obesity, heart disease, diabetes, cancer and stroke. Today, many people's diets consist of more saturated fat, trans fats, sugars, and more sodium than fruits, vegetables and dietary fiber. Your body's health reflects what you put into it.
What type of light caused a plant to photosynthesize and what type of light caused damage to a plant? :3
Answer: The best wavelengths of visible light for photosynthesis fall within the blue range (425–450 nm) and red range (600–700 nm). Therefore, the best light sources for photosynthesis should ideally emit light in the blue and red ranges.
Explanation:
Answer: UV-B radiation
Explanation:
If an organism’s somatic cells have 60 chromosomes, how many chromosomes should healthy gametes have?
Answer:
Somatic cells = 2n = 60
Gamete = n = 30
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Explain why these two plants look so similar if their common ancestor was very distant
Answer:
The two diverse cactus species see comparative since they live within the same environment. They have advanced comparative structures, closely resembling structures, to adjust to this environment.
hope this helped
Explanation:
this is the picture
These two plants look so similar if their common ancestor was very distant because it shows analogous evolution which is the evolutionary process in which organisms exhibit similarities in function but differ in the evolutionary origins.
What is Analogous Evolution?The term analogous is derived from Greek analogos, which means “according to a proper ratio or proportion".
Analogous evolution is the type of evolution having similarities in function but have different evolutionary origins. In analogous evolution, different species with different evolutionary lines use their biological structures for the same purpose. This type of evolution is called as convergent evolution.
The structure evolved independently in different individuals which serve the same function. Examples of Analogous evolution, Wings of Birds and insects.
Thus, these two plants look so similar if their common ancestor was very distant because it shows analogous evolution which is the evolutionary process in which organisms exhibit similarities in function but differ in the evolutionary origins.
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Your question was incomplete, but most probable image for the full question is attached to the image below.
When large amounts of carbohydrates have been digested and absorbed, what process will happen first?
When large amounts of carbohydrates have been digested and absorbed, the first process that occurs is the increase in blood glucose levels.
Carbohydrates are broken down into glucose during digestion, and glucose is then absorbed into the bloodstream through the small intestine. As a result, the concentration of glucose in the blood rises.
To maintain stable blood glucose levels, the body initiates a series of processes to regulate glucose utilization and storage. The first response to elevated blood glucose levels is the release of insulin from the pancreas. Insulin acts as a hormone that facilitates the uptake of glucose by cells, primarily in the liver, muscle, and adipose tissue. This process allows glucose to be used as an immediate energy source or stored as glycogen (in the liver and muscle) or converted into triglycerides and stored as fat in adipose tissue.
So, after the digestion and absorption of carbohydrates, the initial response is an increase in blood glucose levels, followed by the release of insulin to regulate glucose utilization and storage in the body.
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if there are 20 centromeres in a cell at anaphase, how many chromosomes are there in each daughter cell following cytokinesis?
a. 20
b. 10
c. 30
d. 40
Answer:
10 chromosomes
Explanation:
At anaphase, there are 20 centromeres, indicating 20 chromosomes.
Following cytokinesis, the chromosomes are equally distributed between the two daughter cells, resulting in each daughter cell having 20 chromosomes.
During anaphase, the sister chromatids of each chromosome are pulled apart and move toward opposite poles of the cell. This separation is facilitated by the spindle fibers that attach to the chromosomes via the centromeres.
The number of centromeres and chromosomes present in a cell at anaphase is the same as that in the previous stage of mitosis, which is metaphase.
Therefore, if it is given that at anaphase, there are 20 centromeres, then there are 20 chromosomes present in the cell. After the chromosomes are separated, cytokinesis occurs, resulting in the formation of two daughter cells, each containing 20 chromosomes.
It is important to note that the number of chromosomes and centromeres in a cell may vary depending on the organism, tissue type, and stage of the cell cycle.
For instance, human somatic cells typically contain 46 chromosomes or 23 pairs, while sex cells or gametes contain only 23 chromosomes. Additionally, some cells, such as those in cancerous tissues, may have an abnormal number of chromosomes due to mutations or chromosomal abnormalities.
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HELP PLEASE! WILL GIVE BRAINLY! Describe a strong, bond in which electrons are unevenly shared between two atoms due to a different in electronegativity. A. Adhesion b. Hydrogen bond c. Polar covalent bond. Ionic bond
Answer: Polar covalent bond
Explanation:
In ionic compounds, electrons are transferred between atoms of different elements to form ions. But this is not the only way that compounds can be formed. Atoms can also make chemical bonds by sharing electrons equally between each other. Such bonds are called covalent bonds
which step of scientific inquiry involves testing the hypothesis and collecting data?
The answer for this question would be letter A. Experimentation takes in by experimenting with your hypothesis, knowing what will happen and then gathering data from the outcome of the experiment. For your data, you create your analysis of what had happened then conclude.
Hi can someone please help me with this!!
Section A;
Hypothesis - If birds seed A is used then more cardinals are attracted.
Prediction - Bird seed A attracts cardinals the most
Section B;
Hypothesis - If a chemical spray is used, then the number of mosquitoes decreases
Prediction - Chemical sprays are the most effective mosquito repellants
Section C;
Hypothesis - If snickers candy is used, then kids are happiest
Prediction - Snickers candy makes kids happiest
What is an experiment?An experiment is an interlay of variables- the independent variable and the dependent variable. The independent variable is the variable that we have to manipulate in the experiment while the dependent variable is the variable that changes as we change the independent variable.
Let us now try to write the hypothesis in each case;
Section A;
Hypothesis - If birds seed A is used then more cardinals are attracted.
Prediction - Bird seed A attracts cardinals the most
Section B;
Hypothesis - If a chemical spray is used, then the number of mosquitoes decreases
Prediction - Chemical sprays are the most effective mosquito repellants
Section C;
Hypothesis - If snickers candy is used, then kids are happiest
Prediction - Snickers candy makes kids happiest
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Which of the following mutations would most likely be passed along to an organism's
offspring?
A. Mutation that occur during crossing over during the prophase stage of mitosis
B. Mutations that occur in both DNA strands synthesize do the S-phase of mitotic cell cycle
C. Mutations that involve translocation of chromosomes in gametes
during meiosis
D. Mutations that occur in Somatic cells During cell division
Mutations that involve the translocation of chromosomes in gametes during meiosis are likely to be passed to offspring (Option C). It is because mutations are inherited from germinal cells.
Mutations and MeiosisMeiosis is a cell division by which a cell produces four daughter germinal cells having half of the genetic material.
Moreover, a mutation is any alteration in the genetic material of the genome of an organism.
Germinal mutations can be inherited because they occur in the germinal meiotic cells, whereas mitotic (somatic) cells are not inherited.
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Consider the following two statements about succession.
Student 1:
Matthew - As succession begins, communities tend to be dominated by mostly K-selected species. As succession continues, r-selected species tend to compete better and therefore become more and more common.
Student 2:
Iman - As succession begins, communities tend to be dominated by mostly r-selected species. As succession continues, K-selected species tend to compete better and therefore become more and more common.
Which student is correct?
a. Provide a rationale for your answer (2 marks)
b. Provide a specific example of succession which includes at least one example of an r-selected and one example of a K-selected species. (1 mark)
Note - No marks are earned by simply agreeing with either Matthew or Iman