An ultrasound procedure that evaluates blood flow in an effort to determine the cause of a localized reduction in blood flow is
Why is the cost of reproduction different for males and females?
A patient with metastatic lung cancer is suspected to have malnutrition. the nurse reviews the results of the serum albumin and serum prealbumin laboratory studies. how should the nurse interpret the findings?
Although most gray squirrels have gray fur, sometimes individuals with white or black fur are born. if a white-furred individual were born in a population of gray squirrels living in a florida forest, what would be the most likely long-term consequence of its presence for the squirrel population if the forest remained unchanged for the next several generations? the population would very quickly become predominantly white since the white squirrels would be camouflaged against the sand. the number of white squirrels in the population would slowly increase as the original white squirrel produced white offspring. the population would remain primarily gray, and the white squirrel would likely get eaten prior to adulthood. the white squirrel would draw more predators to the area since it was more visible, and many gray squirrels would get eaten.
The answer is
The population would remain primarily gray, and the white squirrel would likely get eaten prior to adulthood.
Answer:
The population will remain primarily gray and the white squirrel would probably be eaten prior to adulthood.
Explanation:
The predators would notice the white squirrel on the trees easily. Squirrels with white fur can not hide from predators very well, so the white squirrel would probably be eaten at some point.
Which statement best describes why carbon is the key element in organic compounds?
Carbon is extremely reactive and must form bonds for stability.
Carbon is the most abundant element in the universe.
Carbon is the least reactive element on the periodic table.
Carbon has a strong tendency to form chains or rings.,
A bicameral legislature describes a legislative body made of _____.
Learning that is not directly observable is called ________.
Answer:
This is known as latent learning: learning that occurs but is not observable in behavior until there is a reason to demonstrate it. Latent learning also occurs in humans.
Explanation:
The right answer is D. Latent Learning. This type of learning is not visible or expressed by the person until a reinforcement occurs that drives the person to do what they have learned. For example, a young man makes a sandcastle when they go to the beach, when they ask him how he learned to remember that it was through a television program he saw years ago.
A mismatch of blood types during a transfusion is dangerous because ________. preformed antibodies in the recipient's blood will bind and clump (agglutinate) the donated cells antibodies in the donor's plasma will attack and kill the recipient's healthy blood cells white blood cells from the donor's blood cause inflammation clotting factors in the donor's blood will cause unwanted clots known as thrombus
The answer is Preformed antibodies in the recipient's blood will bind and clump the donated cells.
Every person’s blood type is determined by the antigen on their blood cells. If a person is of blood group A, then they have antigen A in their blood cells. Additionally, the same person will have antibodies to the alternative antigen, i.e in our case the person with blood group A will have antibodies for antigen B. Therefore if a patient with blood group A is transfused with blood group B blood, then the antibodies in the patient will bind to the transfused blood cells and cause agglutination.
What evidence is most important when using relative dating? a the position of fossils in sedimentary rock layers b the types of minerals in a petrified fossil c the position of sediment in petrified rock d the half-life of a radioactive element?
It is possible for a cell to make proteins that last for months; hemoglobin in red blood cells is a good example. however, many proteins are not this long-lasting; they may be degraded in days, hours, or even minutes. what is the advantage of short-lived proteins? (concept 18.2)
This enables homeostatic regulation. It allows the cells to regulate, in real time, the amount of a particular protein at a particular time period. Different proteins are useful in different biological pathways and their amounts in the body are significant in determining the progress of these pathways.An example of such protein is insulin responsible for regulating blood sugar levels
Ghrelin is secreted primarily by the stomach cells and promotes eating and weight gain.
a. True
b. False
The answer is true. Ghrelin is produced by ghrelinergic cells of the stomach. When the stomach is empty, the neuropeptide is absorbed into the blood and induces a response from the hypothalamus. The hypothalamus increases the feeling of hunger, appetite, and gastric secretion.
This infectious disease is transmitted by a virus. Symptoms may vary, from a stuffy nose to coughing and a fever. This disease basically attacks the mucous membranes of the nose and throat but can attack the entire respiratory system. This infectious disease is
The right answer is D. the common cold.
The cold is caused by a virus. It is a frequent infection of the nose and throat also called viral or acute rhinitis.
The cold is responsible for sneezing, nasal congestion (feeling of a stuffy nose), a runny nose that requires a nose and often a sore throat.
Its symptoms appear gradually and persist for 5 to 7 days, rarely more.
What happens during meiosis that would allow genes located on the same chromosomes to separate independently of one another?
List the structures that make up the pathway of air through the respiratory startin with the external nares
Placer deposits form when _____.
heavy eroded particles settle out of moving water
hot, metal-rich fluids cool below the surface
magma cools in underground chambers
organic matter is compressed over millions of years
Answer: heavy eroded particles settle out of moving water
Placer deposits forms when rocks weathered due to the effect of water. The heavy minerals from the rocks get settled down in water. Minerals that form placer deposits have high specific gravity, they are resistant to chemical weathering process and are durable.
Placer deposits form when (D) organic matter is compressed over millions of years.
Further Explanation:
During the sedimentaryprocess when the heavy and valuable minerals accumulate, placer deposits/ placer is formed. These are found in the mountain streams. Placer deposits are usually associated with precious metal mining like gold. Sedimentation is the process of settling down of the particles in a medium according to their size.
In the presence of gravity sedimentation occurs. The larger particles have more gravitational force that pulls them down followed by the lighter ones. When the heavy and stable minerals are introduced to weathering, the particles get eroded and flow down through a stream. Because of the heaviness, the metals then settle down at some place and this phenomenon results in the formation of placer deposits.
Placer deposits are usually used in economic geology because metals of high specific gravity which settle down and are concentrated over time are used for valuable purposes.The few varieties of the so-called placer deposits would include: stream or alluvial placer deposits; beach placer deposits; eluvial placers; and eolian placer deposits. Stream or alluvial deposits are so far the most significant placer deposits because these have yielded the most placer gold, cassiterite, platinum, and gemstones. Placer deposits can demonstrate to be truly significant because of a similar reason of high measures of important metals found there.
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AnswerDetails:
Grade:Middle School
Subject:Biology
Chapter:Types of Soils
Keywords:
Sedimentary process, heavy metals, sedimentation, minerals, minerals accumulation, gravity, gravitational pull, placer deposits, economic geology, high specific gravity.
Are pterosaurs more closely related to turtles or to crocodilians? Explain your answer.
Since a pterosaur species has now been found with feathers, they have to have some connection with dinosaurs, which have connections with crocodillians. Therefore pterosaurs are more related to crocodillians than turtles.
How can pets affect vernal pool creatures?
Vernal pools are unique wetland habitats where some of the state’s most recognizable reptiles and amphibians can be found. Vernal pools are small, shallow wetlands that do not have a permanent inlet or outlet of water flow. They fill in the fall or spring when rain or snowmelt drains into shallow depressions, and can retain water due to non-porous soils. Vernal pools only hold water for part of the year and experience a drying phase every year or every few years, usually in late summer.
Because their aquatic habitats are temporary, animals that depend on seasonal pools are adapted for both aquatic and terrestrial habitats at different life stages. These animals also benefit from the dry phase, because it prevents year-round water-dependent animals like fish from living in the pools. Fish prey heavily on eggs and larvae, and without seasonal pools some species would not be able to compete and reproduce. Although there are obvious challenges for an animal using an aquatic environment that disappears for part of the year, the benefit is a habitat free from predation by fish.
To mitigate the impacts, pet owners should keep their pets on leashes when near vernal pools, clean up after their pets, and avoid allowing pets to enter vernal pools or their surrounding buffer zones.
Pets can affect vernal pool creatures in several ways:
1. Predation: Domestic pets such as dogs and cats may prey on vernal pool animals. For example, a dog might catch and harm or kill frogs, salamanders, or fairy shrimp.
2. Disturbance: Pets can trample vegetation and disturb the habitat of vernal pool creatures. This can lead to habitat destruction and can also cause stress to the animals, affecting their breeding and feeding behaviors.
3. Contamination: Pet waste can introduce harmful pathogens and excess nutrients into vernal pools. This can lead to water quality degradation, which can be detrimental to the sensitive ecosystems of vernal pools.
4. Introduction of Invasive Species: Pets, especially if they have been in contact with water bodies elsewhere, can inadvertently introduce non-native species into vernal pools. These invasive species can outcompete native species for resources, leading to a decline in biodiversity.
5. Alteration of Hydrology: The activities of pets around the edges of vernal pools can alter the natural flow of water, potentially affecting the hydrology of the pool, which is critical for the life cycles of many vernal pool species.
6. Noise Pollution: The presence of pets can introduce noise into the environment, which may disturb the natural behaviors of vernal pool creatures, many of which rely on sound for communication and mating.
7. Chemical Exposure: Pets that are treated with chemicals such as flea and tick medications can potentially introduce these substances into the water, which may be toxic to aquatic life.
It is also important to educate the public about the ecological significance of vernal pools and the potential impacts that pets can have on these unique and valuable ecosystems.
"the term normally applied when two genes fail to assort independently is ________."
A population is defined as all of the inhabitants of a given country or area considered together.
a. True
b. False
Which mechanism(s) are responsible for introducing new alleles into a population's gene pool?
A) gene flow
B) emigration
C) niche shift
D) natural selection
Answer: The right answer is -
A) Gene flow
Explanation:
Gene flow is a process of gene migration or the transfer of gene variant (also called allele, which is responsible for genetic variation in population) from one population to another population.
As a consequence of gene migration, new alleles are introduced or added in the already existing population, thereby increasing genetic diversity.
Thus, option A) is the right answer.
What are the differences between the pubertal growth of girls and boys? select all that apply?
Final answer:
The main differences between the pubertal growth of girls and boys include the onset of puberty, the growth spurt, and distinct features such as menstruation in girls. Girls start puberty and their growth spurt earlier, and by adulthood, they are generally shorter than males.
Explanation:
Differences Between the Pubertal Growth of Girls and Boys
Puberty marks significant growth and development during adolescence with notable differences between girls and boys. In girls, puberty typically begins between the ages of 9 and 10 with the development of breasts and pubic hair. Girls experience a menstruation cycle, with the first menstrual period being called menarche. Boys generally begin puberty between the ages of 11 and 12, with developments like the growth of external genitals, facial hair, and a deepening voice.
The growth spurt timing also differs; girls start their growth spurt earlier than boys, which leads to an earlier peak growth rate but a lower one compared to boys. By adulthood, these differences in timing and rate contribute to why females are about 10 centimeters shorter than males on average.
Menstruation and Growth Patterns
Menstruation is a regular discharge of blood and mucosal tissue from the inner lining of the uterus through the vagina. Adolescent growth spurt (AGS) is marked by these distinct puberty changes in both sexes but leads to sexual dimorphism in adult size, body composition, and overall shape.
organisms that have two identical alleles for a particular trait are said to be
Answer:
Homozygous
Explanation:
The obvious traits in living organisms are usually controlled by molecular structures called GENES. A gene exists in two contrasting forms called ALLELES. Based on this, there are two different alleles for two different traits in a gene.
An organism that contains the same/identical alleles for a particular trait is said to be genotypically HOMOZYGOUS while an organism that possesses two different alleles for a particular trait is said to be HETEROZYGOUS.
For example, height trait controlled by a single gene that possesses two alleles: T for tallness and t for shortness. An organism that has two identical alleles e.g TT and tt is said to be homozygous for that trait while an organism that possesses Tt is heterozygous.
Organisms with two identical alleles for a trait are defined as homozygous. They can be homozygous dominant (two dominant alleles) or homozygous recessive (two recessive alleles). This determines the expression of traits in organisms.
Explanation:Organisms that have two identical alleles for a particular trait are said to be homozygous for that trait. They can be either homozygous dominant, if they carry two copies of the same dominant allele, or homozygous recessive if they carry two copies of the same recessive allele.
For example, let's consider the trait of flower color in peas. Yellow flowers (Y) is dominant over white flowers (y). If a pea plant has two 'Y' alleles, it is homozygous dominant and will display yellow flowers. On the other hand, if it has two 'y' alleles, it is homozygous recessive and will display white flowers.
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All of the following are examples of voluntary muscle movement except
A. heart beating
B. leg kicking a soccer ball
C. arm picking up a glass
Which specific term describes teeth with two ridges, as found in old world-monkey molars?
If the water concentration inside a cell is higher than the water concentration outside the cell, water flows out of the cell. This method of molecular transport is called
osmosis.
exocytosis.
a sodium pump.
endocytosis.,
Answer: Osmosis
Explanation:
The water from the higher concentration moves to a lower concentration through a semipermeable is known as osmosis. As the cell membrane is semi permeable it is considered as osmosis.
The water inside the cell is more and the water outside the cell is less so the passive flow of water takes place from the higher concentration to the lower one.
So, the correct option is Osmosis.
Sensory cells and sensory neurons allow multicellular animals to sense physical and chemical cues from their environment. what key properties of these cells enable them to perform this function? (select all that apply.) sensory cells and sensory neurons have electrically excitable membranes that change in charge potential in response to binding an environmental signaling molecule. sensory neurons have myelinated dendrites that serve as nerve endings. all sensory cells and sensory neurons fire action potentials when they bind a signaling molecule. sensory cells and sensory neurons have protein receptors linked to intracellular or membrane-based signaling pathways that alter ion channel permeability.
Answer:
A. Sensory cells and sensory neurons have electrically excitable membranes that change in charge potential in response to binding an environmental signaling molecule
B. Sensory cells and sensory neurons have protein receptors linked to intracellular or membrane-based signaling pathways that alter ion channel permeability.
Explanation:
Neurons have ability to change the charge potential across their membrane in response to certain stimulus or binding of signaling molecule. To allow the binding of signaling molecules, these neurons have receptors on their surface. The binding of signaling molecules affects the charge potential by affecting the permeability of ion channels. Hence, presence of receptors and ability of changing the ion concentration and thereby charge across their membrane allow the sensory cell and neuron to sense the stimulus.
A group of researchers is collecting data on the foraging patterns of a population of wagtail birds, which feed on an insect called the dung fly. These graphs show some of the data collected by the team:
Given the data presented in each of the graphs, what conclusion can you draw from this data about the feeding practices of the wagtail birds?
From the end of the small intestine, the segments of the large intestine, in order, are:
Final answer:
The large intestine begins with the cecum followed by the ascending, transverse, descending, and sigmoid colons, rectum, and ends at the anus, responsible for absorbing water, forming feces, and defecation.
Explanation:
From the end of the small intestine, specifically the ileum, the segments of the large intestine, in order, are as follows: the cecum, ascending colon, transverse colon, descending colon, sigmoid colon, rectum, and anus. The ileocecal valve, located between the ileum and the large intestine, regulates the movement of chyme into the large intestine. Once in the large intestine, the digestion process continues with the absorption of water and nutrients, the breaking down of carbohydrate residues by bacterial flora, and the synthesis of certain vitamins. The goblet cells within the mucosa of the large intestine secrete mucus, easing the passage of feces.
The large intestine's function is to absorb water and form feces in preparation for defecation, and its various sections each play a role in this process. The cecum is the first part where chyme enters, followed by the ascending, transverse, and descending colons, the sigmoid colon, and ultimately the rectum. The rectum serves as storage for feces before elimination occurs, ending with the anus, where feces are expelled.
If there is a blockage between the av node and the av bundle, how will this affect the appearance of the electrocardiogram?
Out of the following given choices;
A. PR interval would be smaller
B. QRS interval would be shorter
C. There would be more P waves than QRS complexes
D. There would be more QRS complexes than P waves
E. The T wave would be absent
The answer is C. Waves on the ECG represent the depolarization an repolarization of the atrial and ventricular walls. The sequence of waves on the ECG is P waves, QRS complex, then T waves. Therefore, If there is a blockage between the av node and the av bundle, P waves of atrial contraction are of longer intervals (more than 200 ms)compared to those of QRS complex of ventricular contraction. This is referred to as the First Degree Heart Block. In second-degree heart block, no QRS complex follows the P waves
What do aerobic respiration and anaerobic respiration have in common?
A) Both begin with glycolysis.
B) Both occur in mitochondria.
C)Both require oxygen to proceed.
D)Both end with the electron transport chain.
The right answer is A) Both begin with glycolysis.
Glycolysis is still called Emben-Meyeroff-PARNAS pathway. It degrades glucose with the production of ATP and metabolites.
Whether in the presence or absence of oxygen, the production of energy (ATP) passes first by the degradation of glucose, and therefore it passes through glycolysis.