Groups of small cells better than one large cell at moving material in and out because they have a lower surface to volume ratio. Option D
What is cell?A cell can be defined as the simplest, basic, structural and functional unit of life. The study of cell is known as cytology.
There are two types of living organisms based on the numbers of cells they have; these are
Unicellular organismsMulticellular organismsTherefore, groups of small cells better than one large cell at moving material in and out because they have a lower surface to volume ratio.
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What happens during crossing over?
1. spindle fibers form and attach to centromeres.
2. Homologous chromosomes trade pieces of DNA.
3, Sister chromatids form tetrads and line up randomly.
4. Tetrads separate and produce two haploid daughter cells.
Would you rather work as a veterinarian with birds or reptiles? Why?
And which reptile or bird is your favorite? **Just curious:)
birds
hummingbird because of its wing speed
Advantages of vegetative reproduction
Answer:
Vegetative reproduction is any form of asexual reproduction occurring in plants in which a new plant grows from a fragment or cutting of the parent plant or specialized reproductive structures, which are sometimes called vegetative propagation.
see the attached file for advantages
If a group of black true-breeding mice and a group of white true-breeding mice are mated, and the result is all gray offspring, what inheritance pattern would this be indicative of
If a group of black true-breeding mice and a group of white true-breeding mice are mated, and the result is all gray offspring, what inheritance pattern would this be indicative of incomplete dominance.
Incomplete dominance consequences from a move wherein each parental contribution is genetically precise and offer upward thrust to progeny whose phenotype is intermediate.
Incomplete dominance is also known as semi-dominance and partial dominance. Mendel defined dominance however not incomplete dominance.
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Explain the processes of venous return in the abdomen. do not just list them! why must the veins employ these methods?
Answer:
Venous return (VR) is the flow of blood back to the heart.
Venous return to the right atrium is the most important factor determining cardiac output, provided both ventricles and the pulmonary circulation are normal.
Explanation:
Venous return refers to the flow of blood from the periphery back to the right atrium, and except for periods of a few seconds, it is equal to cardiac output.
Venous return is facilitated by a number of factors, including inspiration, increased total blood volume, increased venomotor tone, the cardiac suction effect, the presence of venous valves and the skeletal muscle pump.
Contraction of the skeletal muscles surrounding veins increases the pressure within the veins, pushing open the proximal valve and forcing blood toward the heart. For example, when calf muscles contract during exercise, blood is forced toward the heart, thus increasing venous return.
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The best definition for a fossil is:
A. An artifact from an ancient society
B. The remains of an organism that just died
C. The remains of organisms that lived millions of years ago
D. Something very old
abc or d and a simple explanation
pls be 100% sure of your answer
A recent study of a model organism found that a specific HMG protein localized mainly to the ends of chromosomes. Given this result, the site of localization for this HMG protein would correspond to regions in humans that:
A recent study of a model organism found that a specific HMG protein localized mainly to the ends of chromosomes. Given this result, the site of localization for this HMG protein would correspond to regions in humans that Contain heterochromatin similar to that of centromeres.
Telomeres are regions at chromosomal ends that are time and again truncated with every round of the cellular department. Centromeresjoin sister chromatids and are required for correct chromosome division for the duration of mitosis.
Notwithstanding their different chromosomal locations, each telomere and centromere are composed of heterochromatin, a tightly condensed complex of DNA wrapped around histones.
Due to its structurally restrictive form, heterochromatin is transcriptionally inactive, which means that proteins liable for regulating gene expression can't get entry into the tightly packed DNA. As an end result, hetechromatic regions are often gene-bad and incorporate repetitive DNA.
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Which form of oral contraceptive releases different levels of estrogen and progesterone to mimic the hormonal fluctuations of the natural menstrual cycle
Multiphasic pills form of oral contraceptive releases different levels of estrogen and progesterone to mimic the hormonal fluctuations of the natural menstrual cycle.
What is the purpose of multiphasic pills?The dosages and progestin-to-estrogen ratios during the 21-day cycle are changed using multiphasic tablets.
What is oral contraceptive?a pill that is used to avoid pregnancy. It contains hormones that prevent the ovaries from releasing eggs.
What are the types in oral contraceptives?The combination pillThe progestin-only pillThe continuous use pill.Learn more about oral contraceptive here:
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Distinguish between fast and slow twitch fibers. When are they used? Which have more mitochondria?
Fast twitch fibers is used for powerful movement whereas slow twitch fibers are used for long endurance.
What are the difference between fast and slow twitch fibers?The main difference between slow and fast twitch fibers is that the slow twitch fibers are the muscle fibers that are used for long endurance such as distance running while on the other hand, fast twitch fibers are the muscle fibers used for a powerful movements such as sprinting. Slow twitch fibers have have more mitochondria as compared to fast twitch fiber.
So we can conclude that fast twitch fibers is used for powerful movement whereas slow twitch fibers are used for long endurance.
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The answers include:
Slow twitch fiber use energy slowly and fairly evenly while the fast twitch fiber use up energy very quickly.Slow twitch fiber are used for long term actions while fast twitch fiber is used for short term actions.Slow twitch fiber has more mitochondrion.What is Mitochondrion?This is referred to the organelle which is known as the power house of the cells where ATP is produced.
Slow twitch fiber contain more mitochondrion which is why they are fatigue resistant. Fast twitch fiber on the other hand, gets tired quickly due to the lesser number of mitochondrion.
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Select the right coronary artery. This artery and its branches supply blood to the right ventricle and the right atrium. It extends from the _________________________ and runs to the right of the _________________________.
This artery and its branches supply blood to the right ventricle and the right atrium. It extends from the right anterior aortic sinus and runs to the right of the coronary sulcus.
The right coronary artery components the right atrium, the right ventricle, the posterior one-1/3 of the interventricular septum, and the inferior portion of the septum.
right coronary artery (RCA). The right coronary artery components blood to the proper ventricle, the right atrium, and the SA (sinoatrial) and AV (atrioventricular) nodes, which alter the coronary heart rhythm.
The proper coronary artery (RCA) is certainly one of the primary coronary vessels that deliver the myocardium (the other being the left coronary artery). It originates from the right aortic sinus of the ascending aorta and runs within the right part of the atrioventricular groove (coronary sulcus) wrapping across the right side of the coronary heart.
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Sickle cell anemia is a disease that causes the blood cells to be shaped like sickles instead of being circular. The table describes the phenotype of red blood cells when a particular genotype is present.
The type of inheritance that is shown by the genes that control sickle cell anemia is Codominance. The genes have a codominant pattern of inheritance because the heterozygous forms depict both traits equally.
What is Codominance?Co dominance may be defined as a condition where both alleles in heterozygous conditions give visible expression. In this situation, there is no dominant-recessive relationship between the alleles is observed.
In sickle cell anemia, the heterozygous conditions show the traits of both normal shapes of RBCs as well as the sickle shapes of RBCs. Thus, this type of inheritance pattern is known as Codominance.
The complete question is as follows:
Genotype Effect
homozygous recessive sickle cellshomozygous dominant normal, circular blood cellsheterozygous some normal cells and some sickle cells in the bloodWhat type of inheritance is shown by the genes that control sickle cell anemia? Explain your response.
Therefore, the type of inheritance that is shown by the genes that control sickle cell anemia is Codominance.
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Describe one method for temporarily storing carbon in the natural cycle.
The one method for temporarily storing carbon in the natural cycle are Most carbon is stored in rocks and sediments, and the rest is stored in the ocean, atmosphere and organisms.
How can I control the carbon cycle?It destroys the carbon cycle by burning fossil fuels and clearing land. When logging, we remove the dense plant growth, or biomass, that stores carbon in trees, stems, and leaves. Logging of forests eliminates plants that absorb carbon froThe the atmosphere as they grow.
These are reservoirs or sinks for carbon to remove carbon dioxide from the air through the process of photosynthesis in order to convert carbon to produce food for plant growth.
Carbon moves from plants to animals. The carbon contained in plants travels through the food chain to the animals that eat them. Animals that eat other animals also get carbon from their food. cycle. The sea is a huge carbon sink that absorbs carbon. Carbon is temporarily stored in soil organic matter because plants can take years (or decades for large trees) to decompose.Read more about carbon :
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Beginning with the flow phase, arrange the biochemical processes in the order in which they occur during the menstrual cycle.
FSH and LH stimulate the follicles to develop and the oocyte to produce estrogen.
A breakdown of corpus luteum causes progesterone levels to drop.
A spike in LH causes the follicle to rupture.
The endometrial lining breaks down and low levels of estrogen stimulate the pituitary to release FSH and LH.
Rising estrogen levels suppress FSH production and development of other follicles.
High progesterone levels maintain the endometrial lining of the uterus.
The biochemical processes in the order in which they occur during the menstrual cycle.
FSH and LH stimulate the follicles to develop and the oocyte to produce estrogen.Rising estrogen levels suppress FSH production and the development of other follicles.Elevated levels of progesterone maintain the endometrial lining of the uterus.An LH surge causes the follicle to rupture.The breakdown of the corpus luteum causes progesterone levels to drop.The endometrial lining breaks down and low estrogen levels stimulate the pituitary gland to release FSH and LH.How is the menstrual cycle regulated?The menstrual cycle is regulated by the complex interaction of hormones: luteinizing hormone, follicle-stimulating hormone, and the female hormones estrogen and progesterone.
With this information, we can conclude that progesterone is a hormone that is responsible for regulating a woman's menstrual cycle, preparing the uterus to receive the fertilized egg and preventing it from being expelled by the body.
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Gymnosperms and angiosperms evolved ______ allowing them to live and reproduce in drier habitats than bryophytes and seedless vascular plants.
Gymnosperms and angiosperms evolved seeds and pollen grains allowing them to live and reproduce in drier habitats than bryophytes and seedless vascular plants.
Gymnosperms are plants which bear seeds without fruits or without any outer coverings. These plants also do not produce flowers. Most plants under this group have needle-shaped leaves. This is an adaptation as these plants grow in colder conditions. Gymnosperms. These plants produce pollen without bearing flowers. Angiosperms are found in almost all climatic conditions. These plants bear flowers and produce seeds that are enclosed inside a fruit or inside an ovary. The seeds of angiosperms have a single cotyledon.
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What process can account for the phenomenon wherein a normal xy male produces a sperm carrying two y chromosomes?.
Answer:
second division nondisjunction
Explanation:
The presence of ________ dramatically increases the speed at which an action potential moves along an axon.
Answer:
Myelin
Explanation:
Liam is dehydrated because he has not drank enough water and has been exercising.
how will his body's endocrine system respond? why?
Antidiuretic hormone (ADH) is released by the hypothalamus through the posterior pituitary gland. The kidneys receive a signal from ADH to extract water from urine, which effectively dilutes the blood plasma.
What is dehydration?A condition that develops when the body loses too much of the fluids it needs to function normally, including water.
How does the endocrine system respond to dehydration?A person who is dehydrated, characterized by a net loss of water, which leaves insufficient water in the tissues and blood. Eventually, blood plasma is used to remove the water that leaves the body as exhaled air, perspiration, or urine. The thirst response, a chain of physiological events, is initiated as the blood gets more concentrated. In the thirst center of the hypothalamus, osmoreceptors are sensory receptors that keep track of the blood's osmolality, or solute content. The hypothalamus sends signals that cause a person to become aware of their thirst if blood osmolality rises above a healthy level. Water consumption is the appropriate response, and it usually is.
A dehydrated person's hypothalamus also releases antidiuretic hormone (ADH) via the posterior pituitary gland. The blood plasma is diluted as a result of ADH telling the kidneys to extract water from urine. A dehydrated person's hypothalamus also tells the salivary glands in the mouth to preserve water through the sympathetic nervous system. The signals cause a decrease in the release of watery, sour substances. This alteration in secretions causes "dry mouth" and a thirst-inducing sensation.
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Nitrogen released from the breakdown of proteins A) is used to synthesize liver glycogen. B) travels in the bloodstream to the lungs, where it is excreted when we exhale. C) triggers acidosis. D) is used in the synthesis of urea, which is excreted by the kidneys in the urine.
Nitrogen released from the breakdown of proteins is used in the synthesis of urea, which is excreted by the kidneys in the urine.
The urea acid cycle transforms the nitrogen waste released during this process into urea, which is then excreted in the urine. Amino acids can be converted into energy during famine and go via the Krebs cycle.Muscle protein is broken down into amino acids while fasting, some of which are partially oxidized to provide energy. These amino acids are split up into alanine and glutamine, which are released into the circulation together with other amino acids. Several tissues, notably the stomach and kidney, oxidize glutamine, converting some of its carbons and nitrogen to alanine. The liver is where alanine and other amino acids are processed into glucose and ketone bodies and nitrogen.learn more about urea here: https://brainly.com/question/14718113
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What is the process that all grade a milk must go through to destroy pathogenic bacteria?.
Answer:
pasteurization
Explanation:
10. Suppose a human blood cell containing a 0.9 percent solute concentration was put into a container of a 30 percent solute solution. Would the blood cell get bigger or smaller?
If the blood cell (hypotonic) is placed inside the 30% solute solution (hypertonic), then the cell will become smaller in the size (shrink) because of the osmotic pressure.
What are hypotonic and hypertonic solutions?Hypotonic solutions have lower solute concentrations compared to the hypertonic solution with a higher solute concentration. The blood cells have a hypotonic environment on their inside as it contains 0.9 % solute concentration.
The outer of the cell has a 30 % solute concentration making it hypertonic and hence the water from the cell will move out into the more concentrated solution making the cell shrink in the size.
Therefore, the blood cell will shrink in hypertonic solution.
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Why can water provide a stable liquid environment within cells when the temperature changes?
Answer:
Water has a very high specific heat capacity. This is because energy is needed to break hydrogen bonds. water resists temperature changes, providing a more stable environment within cells and for aquatic organisms.
what are the feutures are class hexactinellida
Answer:lack an epidermal covering, and their skeletons are composed of spicules of silica.
Explanation:
The spicules, which often form a latticework, have six points or some multiple thereof. Glass sponges are pale in color and are cup- or basket-shaped.
The specific pattern of genes inherited at conception defines an individual's Group of answer choices phenotype. genotype. genomic imprint. somatotype.
The specific pattern of genes inherited at conception defines an individual's is genotype.
What is a genotype?The genotype of an organism is the particular arrangement of alleles for a particular gene.
The term "genotype" refers to a person's entire gene pool. All visible traits for which genes contain the coding are collectively referred to as phenotypes.
There are three types of genotypes:
homozygous dominanthomozygous recessiveheterozygous.So, The correct option is B.
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What are the 4 main steps of cellular respiration
Answer:
glycolysis, pyruvate oxidation, the krebs cycle, and oxidative phosphorylation
Explanation:
The stages of cellular respiration include glycolysis, pyruvate oxidation, the citric acid or Krebs cycle, and oxidative phosphorylation.
A dilated vein that returns blood from the coronary circulation to the right atrium is the __________.
help pls! The chart below shows the primary energy production methods in two locations.
Location A - burning of fossil fuels
LocationB - geothermal energy
If both the locations produce the same amount of energy, which of these statements best compares the two locations?”
A. Location A has more bodies of water than Location B.
B. Location B has more bodies of water than Location A.
C. Location B uses more nonrenewable resources than Location A
D. Location A uses more nonrenewable resources than Location B.
Location A uses more nonrenewable resources than location B. The correct option is D.
What are nonrenewable resources?They are resources that are consumed at a much faster rate than they can be naturally replaced, if at all.
Nonrenewable resources are different from renewable resources. The latter can be replenished at a much faster pace than they are consumed.
An example of nonrenewable resources is fossil fuels while that of renewable resource is geothermal energy.
Thus, location A burning fossil fuels uses more nonrenewable resources than location B which uses geothermal energy.
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Suppose that you were a researcher trying to understand how rising levels of atmospheric CO2 might affect ragweed plants, and thus seasonal ragweed allergies. What questions, hypotheses, and predictions might you want to study
Prediction a - Plants grown at higher CO2 levels will produce more pollen.
Hypothesis 2 b - CO2 levels affect the concentration of protein allergens in ragweed pollen.
Prediction c - Plants grown at higher CO2 levels will produce higher concentrations of allergens.
Researchers developed two hypotheses to explain why ragweed allergies appear to be getting worse as the global climate changes.• CO2 levels affect ragweed pollen production, with plants that grow at higher CO2 levels producing more pollen.
CO2 levels affect the concentration of allergens (the proteins that actually trigger allergic reactions) found in ragweed pollen, with plants that grow at higher CO2 levels characterized by pollen with higher concentrations of allergens.
The image is attached below showing the flow chart with answers.
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If your fingernails grew at the same rate as the Atlantic Ocean is spreading , how long would they be after one year ?
Explanation:
My nails will be 50 cm long as the Atlantic grows 2cm
3. A gene has the base sequence that starts with GAC TGA CGA TTA.
a) What would be the complementary DNA strand formed from this DNA?
(ctg acr get aat)
b) What would be the mRNA base sequence formed from this DNA sequence? (3 points)
(I need help on B)
The complementary base sequence is CTG ACT GCT AAT whereas the mRNA is CUG ACU GCU AAU.
What is RNA?The RNA is a complementary nucleic acid sequence of a DNA strand obtained from the process of transcription.
In RNA, Thymine bases are replaced by Uracil bases (other nucleotide bases are equal to DNA sequence).
In conclusion, The complementary base sequence of this gene is CTG ACT GCT AAT and the mRNA encoded from this sequence is CUG ACU GCU AAU.
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Which element is a metal?
O A. Ne
O B. Xe
C. F
D. Mo
Answer:
D. Molybdenum
So a metal is: a class of elements characterized by physical properties that include shininess, malleability, ductility, and conductivity.
So what is molybdenum?
It has the atomic number 42 and is a silvery-gray transition metal. Although the free element is not found in nature, it has an extremely high melting point—the sixth highest of all known elements. It is mostly mined and manufactured for alloying, notably with steel.
Uses for molybdenum metal include:
An alloying agent gives quenched and tempered steels their hardenability and toughness. Additionally, it increases steels' strength at high temperatures (red-hardness). In nickel-based alloys (such Hastelloys) and stainless steels, it gives chemical solutions heat resistance and corrosion resistance. Electrodes for forehearths and glass furnaces that use electricity for heating. Uses for nuclear energy, such as in missile and aircraft parts (where high temperature resistance is vital).As a catalyst in the petroleum refining process. In electronic and electrical applications as a filament material.As a pillar of support for lightbulbs and radios.Electric connections that are arc resistant.Sheaths for thermocouplesCoatings for other metals that prevent corrosion and flames (generally arc deposited for metallising).