Answer:
The cell would crenate, the solvent would move in to the cell
Explanation:
From the options ;The cell would crenate, the solvent would move into the solution ( A )
Hello your question is incomplete attached below is the complete question
since the cell has a 50% solute and 50% solvent while the solution where the cell is sitted contains a 30% solvent and a 70% solute. and the cell membrane allows for osmosis. this shows that the solute concentration in the solution is higher than solute concentration in the cell.
The solution is hypertonic ( has a higher solute percentage ) therefore the water ( solvent ) from the cell will move into the solution causing the cell to crenate.
hence we can conclude that the cell would crenate and the solvent would move into the solution
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If the second (blue) front travels fast enough to reach bellingham at the same time that the closer (red) front reaches the city, what type of front is likely to result? what type of weather is this front likely to produce?
If the second (blue) front travels fast enough to reach Bellingham at the same time that the closer (red) front reaches the city, a occluded front is likely to result. This front is likely to produce a mix of precipitation, including rain and potentially heavy showers or thunderstorms.
An occluded front occurs when a faster-moving cold front catches up to a slower-moving warm front. In this scenario, the blue front represents the cold front, while the red front represents the warm front. Since the blue front is traveling fast enough to reach Bellingham at the same time as the red front, it indicates that the blue front is moving quickly and catching up to the slower red front.
When an occluded front forms, it signifies the end of a cyclone's life cycle. The warm air ahead of the warm front is pushed aloft as the colder air of the advancing cold front undercuts it. This lifting motion leads to the formation of clouds and precipitation.
The collision of the two fronts can result in a variety of weather conditions. Typically, an occluded front brings a mix of precipitation, including rain, and depending on the atmospheric conditions, it may also produce heavy showers or thunderstorms. The severity and intensity of the precipitation will depend on factors such as temperature, humidity, and instability in the atmosphere.
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Answer:
An occluded front would form and likely lead to strong winds and heavy precipitation.
Explanation:
sample answer
The Philadelphia chromosome results when a portion of chromosome 9 is swapped for a portion of chromosome 22. This type of mutation is called a _______ and leads to cancer.
Answer:
translocation
Explanation:
part of the solar system actual diameter (km) scaled diameter (mm)
true or false
The statement "part of the solar system actual diameter (km) scaled diameter (mm)" is true.What is the content loaded part of the solar system?
The content loaded part of the solar system includes planets, moons, asteroids, and comets that revolve around the sun in the solar system.What is the actual diameter of the solar system?The actual diameter of the solar system is estimated to be about 12 billion kilometers (7.5 billion miles).
What is scaled diameter (mm)?Scaled diameter (mm) is the representation of actual sizes of objects in the universe, such as planets, stars, galaxies, etc., on a much smaller scale. It can be expressed as the ratio of the actual size of an object to its scaled size in millimeters.The actual diameter of the planets and other celestial objects in the solar system is very large. Therefore, scientists use scaled diameter (mm) to represent the size of these objects on a much smaller scale.
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what physiological events occur between presentation and the pressing of the hand switch?
Physiological events such as sensory perception, neural processing, and motor response occur between presentation and the pressing of the hand switch.
When a stimulus is presented, sensory receptors in the body detect the stimulus and convert it into electrical signals. These signals are then transmitted to the brain through sensory pathways. In the brain, the signals are processed and interpreted, allowing for the perception and recognition of the stimulus. Once the stimulus is recognized, motor commands are generated in the brain and transmitted through motor pathways to the muscles responsible for hand movement. These commands initiate muscle contractions, leading to the pressing of the hand switch.
Overall, this sequence of physiological events involves sensory input, neural processing, and motor output, enabling the individual to perceive the stimulus and respond accordingly.
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Can someone help me if this is correct
Answer:
I believe it's correct
Explanation:
I haven't taken this course in a few years but it looks correct, from what I remember that is true
Over years of selective breeding, French bulldogs have developed extremely short snouts and flat faces. These traits, although attractive to the dog owners, can make it difficult for the dogs to breathe.Which of the following processes led to the presence of these traits?
(Choice A)
A
Artificial selection
(Choice B)
B
Natural selection
(Choice C)
C
Environmental selection
(Choice D)
D
Sexual selection
Answer:
Artificial selection
Explanation:
Choice A, artificial selection, led to the presence of these traits in French bulldogs.
What is Artificial selection?Artificial selection, also known as selective breeding, is the process of breeding organisms with desirable traits in order to produce offspring with those traits. In the case of French bulldogs, humans selectively bred dogs with shorter snouts and flatter faces in order to create a breed that was aesthetically pleasing. However, these traits also led to health problems such as difficulty breathing.
Natural selection, on the other hand, is the process by which organisms with advantageous traits are more likely to survive and reproduce, leading to the evolution of those traits in a population.
Environmental selection refers to the process by which the environment favors certain traits over others. Sexual selection is a type of natural selection that occurs when individuals with certain traits are more likely to attract mates and reproduce.
In the case of French bulldogs, these traits were not naturally selected for based on survival advantages, nor were they the result of environmental or sexual selection. Rather, they were artificially selected for by humans, leading to unintended consequences for the dogs' health.
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What is the difference between central vision and peripheral vision? How is this difference related to overt attention, fixations, and eye movements?
Central vision and peripheral vision are two different types of visual perception. Central vision refers to the area of our visual field that we focus on when looking at something directly, while peripheral vision refers to the surrounding area outside of our central focus.
The difference between central and peripheral vision is related to overt attention, fixations, and eye movements. Overt attention refers to the intentional directing of our attention towards a specific object or location, and fixations refer to the brief pauses in our eye movements as we process visual information.
When we use our central vision to focus on an object, we are able to see it with greater detail and clarity, while peripheral vision provides us with a broader awareness of our surroundings. Our eye movements and fixations play an important role in processing visual information, as we use these movements to scan our environment and gather information about our surroundings.
Overall, the difference between central and peripheral vision is related to how we focus our attention and process visual information, and our eye movements and fixations play an important role in this process.
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In what year did Oxford scientist Robert Brown discover the motion of small particles?
1880
1908
1987
1827
Blood passes from the right ventricle to the _____ and then the _____ before reaching the lungs to pick up oxygen. Multiple choice question.
Blood passes from the right ventricle to the Pulmonary valve and then the Pulmonary artery before reaching the lungs to pick up oxygen
Blood circulation procedureWhen the blood enters the right ventricle it contracts and sends the blood through the Pulmonary valve before it reaches the Pulmonary artery which is passes the blood to the Lungs where it becomes oxygenated.
Hence we can conclude that Blood passes from the right ventricle to the Pulmonary valve and then the Pulmonary artery before reaching the lungs to pick up oxygen.
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Enzymes perform which of the following functions within living cells?
Enzyme perform all biochemical reaction in our cell to complete various cellular activity.
What are the properties of an enzyme ?Enzymes are protein catalysts that speed up the rate of biochemical reactions
The enzyme activity is pH-specific, catalyze both forward and reverse reaction but do not decide the direction of the biochemical pathway.
An enzyme have active site which bind to substrate and form desired products.
Several factors influence the enzyme activity like heat, temperature and varying pH.
Enzyme show absolute, relative, group, stereo-specificities and regulatory function.
Physical properties include enzyme act as colloid, it become inactivated below boiling point of water.
Enzymes are thermos-labile as it can withstand temperatures of 100 degrees.
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How does cellular respiration provide energy for life processes?
During cellular respiration animal cells combine oxygen with food molecules to release energy to live and function. Remember that cellular respiration produces carbon dioxide as a waste product. Animals use energy to grow, reproduce, and to function. They release the carbon dioxide into the air as a waste product.
The appearance or quality of light reflected from the surface of a mineral is known as ________.
The appearance or quality of light reflected from the surface of a mineral is known as luster.
In mineralogy, luster refers to how a mineral surface appears in terms of its capacity to reflect light. The degree of transparency, diaphaneity, and structure of a mineral all affect its luster.
A mineral's ability to reflect light is referred to as luster. The first step in identifying a mineral is to measure it. Always examine a brand-new surface for luster; you might need to remove a tiny amount of material to reveal a clean sample. Metallic luster, which is extremely reflective and opaque, to dull luster (non-reflective and opaque.)
Mineralogists use the physical characteristic of luster to identify minerals. A mineral's luster defines how its exterior reflects light and how its inside may bend or refract light. Some minerals have a metallic sheen, while others don't.
A mineral reflects light by having a luster. The two main categories of luster are described by the labels metallic and nonmetallic. The most popular words for luster are shown in Table 7, along with an illustration of a comparable mineral. Some minerals are described as "earthy," "chalky," or "dull" because they lack luster.
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100 PTSSS PLEASEE HELPPPPPPP I NEED THIS PLSS IVE BEEN TRYING FOR 30 MINNSS
1 relative humidity:
Low
high
2 Air temp
cold
warm
3 air pressure
high
low
Answer:
Air pressure : high
Air temp : cold
Relative humidity: low
Does an euglena an autotrophic or hetrotrophic?
And a clear definition about auto and hetrotrophics.
Please be fast .
Answer:
It's both.
Explanation:
We can say it is a heterotrophic organism since it can make its own food by photosynthesis using the chlorophyll(the green pigment) that makes them prepare food.
It has both animal and plant characteristics.
Autotrophic: Consume food.
Heterotrophic: Prepare food.
What gave the smooth ER its name?
The smooth endoplasmic reticulum (smooth ER) got its name due to its appearance under an electron microscope.
Unlike the rough endoplasmic reticulum, which has ribosomes attached to its surface giving it a rough texture, the smooth ER has a continuous, smooth membrane without ribosomes. This membrane-bound organelle plays a crucial role in lipid synthesis, metabolism, and detoxification of drugs and toxins. It also helps regulate calcium ions in the cell and participates in the breakdown of glycogen.
This structure allows the smooth ER to perform specific functions, such as lipid and steroid synthesis, detoxification of harmful substances, and calcium ion storage. The absence of ribosomes and its associated smooth appearance led scientists to name this organelle the smooth endoplasmic reticulum.
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what do you call the two unzipped strands of dna are they identical
The two unzipped strands of DNA are called "single-stranded DNA" (ssDNA). During DNA replication and transcription, the two strands of double-stranded DNA (dsDNA) separate, creating two separate templates for the synthesis of new DNA or RNA molecules.
While the two strands of DNA are complementary and complementary base pairing occurs between them, they are not identical. Each strand has a unique nucleotide sequence that encodes different genetic information. The specific sequence of nucleotides on each strand determines the sequence of amino acids in the protein that the gene codes for.
Additionally, the two strands of DNA have opposite orientations, with one strand running in the 5' to 3' direction and the other running in the 3' to 5' direction. This polarity is important for DNA replication and transcription, as it allows the enzymes involved in these processes to correctly synthesize new DNA or RNA molecules based on the template strands.
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HELP I WILL MARK BRAINLIEST BUT YOU HAVE TO BE CORRECT!! 37 POINTS!!!
To formulate the Hardy-Weinberg principle, what imaginative leap did both Godfrey Hardy and Wilhelm Weinberg have to make?
They had to imagine what might cause a species to become extinct.
They had to imagine which alleles each new species would have.
They had to imagine a world in which evolution did not happen.
They had to imagine how many offspring an individual could produce.
Answer:
The answer is C
Explanation:
Hope this helps!!
Answer:
they had to imagine a world in which evolution did not happen
Explanation:
the pain of angina pectoris comes from a blockage in an artery that supplies the ____
a. heart. b. left arm and shoulder. c. neck and jaw. d. sternum.
The pain of angina pectoris comes from a blockage in an artery that supplies the heart (option A).
Angina pectoris is a condition characterized by chest pain or discomfort caused by reduced blood flow to the heart muscle. It occurs when the coronary arteries, which supply blood to the heart, become narrowed or blocked due to a buildup of plaque. This narrowing restricts blood flow, leading to inadequate oxygen supply to the heart muscle, resulting in chest pain.
The pain typically radiates to the left arm and shoulder (option B), neck and jaw (option C), and sometimes the sternum (option D) due to the interconnected nerve pathways. However, the primary source of the pain originates from the heart, making option A the correct answer.
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mr. huff and puff exhales normally; then, using forced expiration, he exhales as much air as possible. the volume of air still remaining in his lungs is called
The volume of air still remaining in Mr. Huff and Puff's lungs after exhaling as much air as possible using forced expiration is called the residual volume.
The lungs never completely empty of air even when you exhale as much air as possible. The residual volume (RV) is the volume of air that remains in your lungs after maximal expiration. The residual volume is what helps maintain the alveoli open, allowing oxygen to flow in and carbon dioxide to flow out during the respiratory cycle, even though the lungs deflate and inflate with each breath taken.
The RV can't be measured by spirometry; instead, it must be determined by another technique. The residual volume is computed in the context of lung function testing as it may provide important diagnostic information and may be utilized to aid in the treatment of patients with obstructive lung illnesses. The RV, along with other lung volumes, is a useful tool for diagnosing and managing respiratory diseases and disorders such as chronic obstructive pulmonary disease (COPD). Residual volume (RV) is the volume of air that remains in your lungs after maximal expiration. The lungs never completely empty of air even when you exhale as much air as possible.
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Mosquitoes are able to walk on top of the water in a pond without falling in. Which of the following explains why this is possible?
A
gravity
B
adhesion
C
surface tension
D
convex meniscus
Answer:
B. Surface Tension
Explanation:
"The force they exert downward is less than the forces exerted among the water molecules on the surface of the pond, so the insect does not penetrate beneath the surface of the water."
Answer:
C
Explanation:
The force they exert downward is less than the forces exerted among the water molecules on the surface of the pond, so the insect does not Penetrate beneath the surface of the water.
BIOLOGY LOVERS????? Any help
Answer: 164 pounds
Explanation:
All the different plant populations make up the plant ?
All the different plant populations make up the plant community in this swamp. The plants are part of a bigger ecosystem that contains many abiotic and biotic factors.
What is an Ecosystem?An ecosystem may be defined as a place or an area that involves individuals of different species that live together and interact with one another for the purpose of food, shelter, and space.
In ecology, a community may be defined as a group of individuals belonging to different species that are living in the same area at a given time.
So, all the different plant populations make up a plant community.
Therefore, the community is the collection of all different forms of species but the ecosystem is the community has highly influenced by abiotic and biotic factors.
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Which of the following is an example of a direct observation?
A. collecting online surveys
В. viewing cell division
C. interviewing witnesses to an automobile accident
what is the function of Motor Proteins
Answer:
Motor proteins propel themselves along the cytoskeleton using a mechanochemical cycle of filament binding, conformational change, filament release, conformation reversal, and filament rebinding.
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one currently accepted hypothesis for the formation of eukaryotic cells involves
The currently accepted hypothesis for the formation of eukaryotic cells is the endosymbiotic theory. According to this theory, eukaryotic cells evolved from a symbiotic relationship between different types of prokaryotic cells. mitochondria and chloroplasts, organelles found in eukaryotic cells, were once free-living prokaryotes that were engulfed by a larger host cell. Over time, these prokaryotes became integrated into the host cell and formed a mutually beneficial relationship.
The formation of eukaryotic cells is a topic of great interest in the field of biology. One currently accepted hypothesis for the formation of eukaryotic cells is the endosymbiotic theory. According to this theory, eukaryotic cells evolved from a symbiotic relationship between different types of prokaryotic cells.
The endosymbiotic theory proposes that mitochondria and chloroplasts, which are organelles found in eukaryotic cells, were once free-living prokaryotes that were engulfed by a larger host cell. Over time, these prokaryotes became integrated into the host cell and formed a mutually beneficial relationship. The host cell provided protection and resources, while the engulfed prokaryotes provided energy through processes like aerobic respiration (in the case of mitochondria) or photosynthesis (in the case of chloroplasts).
This hypothesis is supported by several lines of evidence. Firstly, the DNA of mitochondria and chloroplasts is similar to that of free-living prokaryotes. Additionally, both mitochondria and chloroplasts have their own double membrane, which is similar to the membranes of prokaryotic cells. These organelles also have their own ribosomes, which are similar to prokaryotic ribosomes. Furthermore, the endosymbiotic theory explains the presence of mitochondria and chloroplasts in eukaryotic cells, as these organelles are responsible for energy production.
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In a nonpolar environment such as the interior of a membrane, the proteins presumably are folded with (a) side chains to the outside and (b) side chains neutralized by interaction with each other
The correct answer is (a) side chains to the outside. In a nonpolar environment such as the interior of a membrane, the hydrophobic amino acid residues in proteins tend to form the interior of the protein, while the hydrophilic amino acid residues form the exterior.
This is because hydrophobic residues have a tendency to repel water and interact with each other, creating a stable and compact structure.
In contrast, hydrophilic residues have a tendency to interact with water and repel each other. Therefore, when proteins are in a nonpolar environment, the hydrophilic residues tend to be neutralized by interaction with each other and oriented towards the exterior of the protein, where they can interact with water.
In summary, when proteins are in a nonpolar environment such as the interior of a membrane, the side chains are oriented towards the exterior of the protein, where they can interact with water, while the interior of the protein is occupied by hydrophobic residues that repel water and interact with each other.The correct answer is (a) side chains to the outside.
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What is reproductive isolation?Why is it necessary for speciation to occur? Explain one way reproductive isolation might occur.
Reproductive isolation is a process in which individuals in a population are prevented from reproducing. This isolation can occur in several ways, such as a physical barrier that separated these species into two groups that will reproduce with each other and generate a new species.
Why is it necessary for speciation to occur?Speciation is an essential evolutionary process for the creation of new species. It is worth remembering that from reproductive isolation, the individuals of a population have been differentiating and evolving and in the end, there will be a different species from the initial one. Therefore, speciation is necessary for the emergence of new species.
Explain one way reproductive isolation might occur.Reproductive isolation may occur due to a geographic barrier. In this case, a population is separated by a geographic barrier such as a river, a canyon, or a mountain, thus generating subpopulations that will begin to evolve and adapt in different ways. In the end, we will have different subpopulations, but in the beginning, they were part of the same population.
All of the organisms in the domain Archaea are
A. prokaryotes
B. eukaryotes
C. autotrophs
D. multicellular
All of the organisms in the domain Archaea are prokaryotes.
Archaea are unicellular organisms with no nuclei, hence are prokaryotes.
Characteristics of Archaea Greek word Archaios means ancient.They are unicellular organisms that resemble bacteria and have some similarity to eukaryotes.Hence a third domain Archaea was introduced by Carl Woese based on ribosomal RNA analysis.They can live in extreme conditions like higher temperature, higher cold regions etc.To learn more about prokaryotes :
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What do traits of anatomically modern humans include?
The traits of the anatomically modern humans include the following below:
High vertical foreheadRound and tall skullSmall browridges.What is Anatomy?This is defined as a branch of science which involves the study of the body structure of humans, organisms etc and how they are responsible for certain types of activities performed by certain parts of the body. For example, the skull is a structure which helps to protect the brain and other vital organs which are present in the body system.
Due to evolution, the modern experienced some changes anatomically which include round and tall skull and a high vertical forehead with the other features which are mentioned above. This helps it to see objects from different directions.
This is therefore the most appropriate anatomically modern human traits present today.
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Translation is occurring and amino acids are being produced at the ribosome. What are the three amino acids being coded, in order of formation?.
Translation is occurring and amino acids are being produced at the ribosome, and the three amino acids that are formed from the GGU AUC GCA are Gly-Ile-Ala (Glycine- isoleucine- alanine), which is the polypeptide chain.
What is the work of translation in the cell?The cell has one fundamental property, which is the translation in which the protein or enzyme is made, and in this process, the ribosomes play an important role by assembling the aminoacyl tRNA and the mRNA; without this function, the proteins can't be formed in the cell.
Hence, translation is occurring and amino acids are being produced at the ribosome, and the three amino acids that are formed from the GGU AUC GCA are Gly-Ile-Ala (Glycine- isoleucine- alanine), which is the polypeptide chain.
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The question is incomplete, the complete question is the below.
Translation is occurring and amino acids are being produced at the ribosome. GGU AUC GCA The three amino acids, coded here, are assembled during translation. What are the three amino acids, in order of formation? A) glycine, isoleucine, alanine B) proline, alanine, glycine C) serine, alanine, cysteine D) glutamic acid, valine serine