Answer: The suffix that means surgical crushing is: otripsy | A medical term that means pertaining to the seminal vesicles is Vesicular.
The suffix indicating surgical crushing is '-tripsy', as in lithotripsy. The term referring to the seminal vesicles is 'seminal'.
Explanation:The suffix that means surgical crushing is -tripsy. An example of a medical term using this suffix is lithotripsy, which means surgical crushing of stones (usually in the kidney or ureter).
A medical term that means pertaining to the seminal vesicles is seminal. Seminal vesicles are glands that secrete a fluid that forms part of semen, and a condition affecting these would be referenced using the term 'seminal'.
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In a food chain 200 kg of wheat is fed on by 18 kg of mice which in turn are eaten by 1kg of hawk. What is the percentage energy transferred from the first trophic level to the third?
Answer:
0.1% of energy
Explanation:
Energy flow: From the whole quantity of energy that reaches the earth's surface, autotroph organisms or producers absorb only 0.1 or 1%.
From the input of solar energy begins a unidirectional energy flow through all the organisms in the ecosystem, from autotrophs to heterotrophs, until it is dissipated in the environment.
At each trophic level occurs an energy transfer to the next, with only 10% being usable in each of them. This assessment is called "The 10% rule". As a general rule, only about 10% of the energy stored as biomass at one trophic level, per unit time, ends up as biomass at the next trophic level, in the same unit of time.
If wheat transferred 10% of the energy to mice, and of that 10% mice transferred 10% of the energy to hawk, then the percentage of energy transferred from the first trophic level to the third equals 0.1%.
10% (1st TL-2nd TL) / 10% (2nd TL - 3rd TL) = 0.1% (1stTL - 3rd TL)
TL = Trophic level
why does dna appear as a thick material?
Answer: DNA is very long, and able to stick to itself via AT and GC pairings.
Explanation: adenine (A) and thymine (T) pair together, and cytosine (C) and guanine (G) pair together. guanine always pairs with cytosine
Meiosis is an example of which type of process? A. asexual B. sexual C.generic D. somatic
Sexual reproduction includes meiosis, gamete production occurs during meiosis (eggs and sperm), hence option B is correct.
What is sexual reproduction?Meiosis specifically produces novel genetic material combinations in each of the four daughter cells. These novel pairings are the consequence of DNA switching between linked chromosomes.
Meiosis specifically produces novel genetic material combinations in each of the four daughter cells.
These novel pairings are the consequence of DNA switching between linked chromosomes.
Therefore, because of this interaction, the gametes created during meiosis display a remarkable diversity of genetic variation, hence option B is correct.
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1. Carbon dioxide. Water • Energy - Sugar • Oxygen
2. Sugar + Oxygen - Water + Carbon Dloxide + Energy
In the second reaction shown here (cellular respiration), which of these descriptions compares the products and reactants?
Water and carbon dioxide are changed into oxygen and glucose during photosynthesis. Oxygen and glucose are transformed into water and carbon dioxide during cellular respiration
What cellular process is the opposite of photosynthesis?The reverse of photosynthesis is the process of respiration. Animals like us get their energy from sugars. In cells, the mitochondria are where respiration occurs. During breathing, oxygen and sugar combine chemically to break down sugar.
Biochemical processes like photosynthesis and cellular respiration move matter and energy across the biosphere. Cellular respiration generates carbon dioxide, water, and ATP, which serve as the precursors for photosynthesis along with sunlight.
Hence, cellular respiration is reversal of photosynthesis.
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The survival of a species depends on its ability to adapt to changes in the environment. A species must be capable of surviving and reproducing despite changes to food sources, climate, or threats from predators. Which statement correctly describes a way that mutations increase the likelihood that a species will survive in a changing environment?
Mutations are always passed on to subsequent generations of the species
Mutations lead to genetic variation
Mutations are the cause of disease in the species
Mutations are not harmful when they occur in somatic cells of a species
Answer:
Your answer is B) Mutations lead to genetic variation.
Think of it like this, when rays were first starting to develop, they probably started with only one kind, stingless. Somewhere down the line, the genes of the rays started to mutate and eventually, there were stingrays and stingless rays. Now at this point there are predators that frequently feast upon the rays, so which of the two rays are more likely to defend themselves, and get away to live long enough to reproduce and pass on their genes? The stingrays! The mutation that may have occurred millions of years ago, has determined which organisms were more fit for a changing environment.
The survival of the species depends on the resources available and environmental conditions. The species or organisms capable to adapt to the surrounding have higher chances of reproduction and survival.
The correct answer is:
Option B: Mutations lead to genetic variation
The organisms adapting to the surrounding will undergo an alteration in their genetic sequence, known as mutations. The mutations are heritable and lead to genetic variation.
The mutation leads to genetic variation as:
It leads to the introduction of new alleles in the gene pool.Sexual reproduction and random mating also contribute to genetic variation. The mutations are heritable, and thus can cause an increase in the frequency of the mutated allele in the gene pool.
Thus, the correct answer is that mutation leads to genetic variation.
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Enamel is the hardest substance in the human body. Justify your answer.
Enamel is indeed the hardest substance in the human body. It is present in teeth of humans. It covers every tooth and provides the hard layer.
Tooth Enamel is hard glossy substance that is comprised of calcium and phosphate mineral crystals which in return makes our teeth more stronger. Teeth enamel care is extremely important to maintain the oral health of teeth.
Tooth Enamel is one of the major tissue that make up tooth in humans. It covers the top layer of the teeth known as Crown. Calcium hardens the tooth enamel. Enamel contains 96% of the minerals. The color of Enamel varies from light yellow to white.
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you are doing a mark-recapture experiment to determine the population size of the mendaliens living on an island in my back yard. initially, you catch and mark 130 mendaliens, which you then release. next, you capture 90 mendaliens, of which 20 are marked. what is your estimate of the population size of mendaliens living on the island in my back yard? you are doing a mark-recapture experiment to determine the population size of the mendaliens living on an island in my back yard. initially, you catch and mark 130 mendaliens, which you then release. next, you capture 90 mendaliens, of which 20 are marked. what is your estimate of the population size of mendaliens living on the island in my back yard? 234,000 29 130 585 14
Your estimate of the population size of mendaliens living on the island in your backyard is 585.
1. First, note the marked mendaliens (130) and the proportion of marked mendaliens in the second capture (20/90).
2. Use the formula: Total population = (Marked mendaliens * Total captured in the second attempt) / Marked mendaliens captured in the second attempt.
3. Substitute the values: (130 * 90) / 20 = 585.
4. The estimated population size is 585 mendaliens. This mark-recapture method assumes equal catchability, closed populations, and marks remain detectable throughout the study.
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Examine the diagram of a cell.
Which organelle is marked with an X?
Answer:
Mitochondrium
Explanation:
|•-•| :)
Answer: the mitochondrion
which is the organ (or organs) in which a fertilized egg is developed into an embryo?
The organ in which a fertilized egg is developed into an embryo is the uterus (also known as the womb) in the female reproductive system.
After fertilization occurs, the fertilized egg, known as a zygote, undergoes multiple cell divisions and develops into a ball of cells called a blastocyst.
The blastocyst then travels through the fallopian tubes and implants itself into the thick and nourishing lining of the uterus.
Once implanted, the uterus provides a suitable environment for the embryo to develop and grow. The lining of the uterus, called the endometrium, undergoes changes to support the development of the embryo.
Blood vessels supply oxygen and nutrients to the growing embryo, and the uterus provides protection and support throughout the gestation period.
The uterus is a vital reproductive organ responsible for nurturing and supporting the developing embryo during early pregnancy.
It plays a crucial role in facilitating the implantation, growth, and development of the fertilized egg into a developing embryo and eventually a fetus.
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Can someone please help me
Answer:
The answer is somewhere on braninly
Explanation:
Just use the search var and type your question.
A ____________ is a synergist muscle that will stabilize a joint when another contracting muscle exerts a force on something else.
A fixator muscle is a synergist muscle that will stabilize a joint when another contracting muscle exerts a force on something else.
The blank is filled with the word “fixator” which refers to a synergist muscle that will stabilize a joint when another contracting muscle exerts a force on something else.Synergist muscles are the muscles that work in conjunction with prime mover muscles.
Synergist muscles are those that contribute to the movement by helping the agonist perform the action more efficiently. As the agonist does its thing, the synergist works to stabilize the joint and helps with movement accuracy.
A fixator muscle, on the other hand, stabilizes a bone so that a contracting muscle can act more effectively. When a muscle contracts, the fibers shorten, and the muscle pulls on the bone to which it is attached. This creates a leverage system where the muscle belly serves as the lever arm and the tendon as the attachment to the bone.
Fixator is a synergist muscle that will stabilize a joint when another contracting muscle exerts a force on something else. The primary function of a fixator muscle is to stabilize a bone so that the prime mover or agonist muscle can exert a more effective force.
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Explain how the daily energy needs are different between the zebra and its predator, the lion. Be certain to include any pertinent differences in the digestibility of these organisms’ food sources, along with differences in digestive tracts and energy spent on digesting. Cite any behaviors you feel may play a role as well.
Answer:
Both animals eats different types of food so they have different digestive system.
Explanation:
The daily energy needs are different between the zebra and its predator, the lion because they have difference in daily activities and they eat different types of food and. Zebra is herbivorous animal while the lion is carnivorous so there is highly difference occurs in their digestive system. Zebra activities is to eat plants and run from the prey which needs more calories but the lion needs very high amount of calories for catching their pray for food.
Can you help me with the question listed in the pictures below? Please and thank you. Will mark BRAINLIEST!!! :)
Answer: Today humanity uses the equivalent of 1.6 Earth's to provide the resources we use and absorb our waste this means that it now takes the Earth one year and 8 months to regenerate what we use in a whole year
Explanation:
It is found that different enzymes have different temperatures at which they work best as shown in the graph. For example, the Enzyme 1 shown is found in humans and is active at 37 degrees C, the human body temperature. What can we say about Enzyme 2?
Answer: It could have a temperature difference or could be the same temperature
Explanation:
If all enzymes work at different temperatures some enzymes might work at 38 degrees C or 37 degrees c etc.
Based on the information provided, it can be inferred that Enzyme 2 is most active at a temperature different from 37 degrees Celsius, the body temperature of humans.
What is enzyme activity?Enzyme activity refers to the ability of an enzyme to catalyze a chemical reaction. Enzymes are proteins that facilitate chemical reactions in the body, and they do so by lowering the activation energy required for the reaction to occur. This allows the reaction to proceed more quickly and efficiently.
Enzyme activity can be affected by various factors, including temperature, pH, and the presence of specific substrates or inhibitors. Different enzymes have optimal temperatures at which they function most efficiently, and these can vary widely depending on the enzyme and the organism in which it is found.
Some enzymes are more stable and can function over a wide range of temperatures, while others are less stable and may be denatured or become inactive at higher or lower temperatures
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which enzyme can repair breaks to the phosphate-sugar backbone of dna?
Answer:
Helicase unwinds the DNA and creates the replication fork for other enzymes to bind.
Explanation:
I hope this helps :)
X+6=12 solve and show working
abnormal cells can often be identified in the fluids or secretions that come in contact with the epithelial surface. the type of examination that uses this is called a/an . a. pap smear b. ct scan c. mri d. clinical laboratory test
Abnormal cells can often be identified in the fluids or secretions that come in contact with the epithelial surface. The type of examination that uses this is called a/an a. pap smear.
A Pap smear, also known as a cervical screening test, is a medical test that helps doctors identify precancerous or cancerous cells on the cervix (the lower part of the uterus that opens into the vagina). By collecting and examining cells from the cervix, a Pap smear can detect any cell changes that might be cancerous or indicate the potential for cancer.
Early detection and treatment of abnormal cervical cells help prevent cancer from developing. For women over the age of 21, Pap smears are strongly recommended every three years. Women aged 30 to 65 who have had negative Pap smear results for at least three consecutive years are advised to get a Pap smear every five years. However, women with certain risk factors, such as a history of cervical cancer, may require more frequent screenings. So therefore the correct answer is a. pap smear.
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Define plumule, radicle, coleoptile, coleorhiza, hypocotyl, after-ripening, stratification, and vivipary.
Plumule: Embryonic shoot; Radicle: Embryonic root; Coleoptile: Sheath covering shoot; Coleorhiza: Sheath covering root; Hypocotyl: Connection between root and shoot. After-ripening: Maturation of dormant seeds. Stratification: Controlled seed exposure to break dormancy. Vivipary: Seeds germinate while attached.
1. Plumule: The embryonic shoot of a plant found within a seed, which eventually develops into the stem and leaves.
2. Radicle: The embryonic root of a plant found within a seed, which grows downward to anchor the plant and absorb water and nutrients from the soil.
3. Coleoptile: A protective sheath that covers the emerging shoot (plumule) in certain monocot plants, aiding in the penetration of the soil during germination.
4. Coleorhiza: A protective sheath that surrounds the radicle in certain monocot plants, facilitating the penetration of the soil during germination.
5. Hypocotyl: The region of a plant embryo situated between the radicle and the cotyledons, which serves as the connection between the root and the shoot.
6. After-ripening: The process in which dormant seeds undergo a period of maturation or aging, leading to changes in their physiological state that promote successful germination and growth.
7. Stratification: The controlled exposure of seeds to specific environmental conditions, such as cold and moist conditions, to simulate natural winter conditions and break seed dormancy, enhancing germination.
8. Vivipary: A reproductive adaptation in certain plants where seeds germinate while still attached to the parent plant, allowing them to establish themselves before being dispersed.
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Is it a good or bad thing that minerals are present in water?
Answer: Tap water contains added minerals, including calcium, magnesium, and potassium. Hard tap water has higher mineral contents, which some consider more healthful. However, minerals in hard water form deposits that can corrode pipes or restrict the flow.Apr 9, 2019
Explanation:
According to Darwin’s theory of natural selection Why do species evolve over time
Answer:
According to Darwin, species evolve because those with undesirable or dangerous traits don't reproduce as much or die before they can reproduce. This causes the organisms with the most desirable traits that allow for higher reproduction or survival rates (which go hand in hand) to pass those traits on until they eventually evolve into a different species.
Which of the following are predators? There may be more than one answer.
cat
bee
rabbit
spider
snake
lion
Answer:
Cat, Spider,Snake,lion
Please design an experiment that would test the following hypothesis:
If two species have identical ecological requirements, then they will not compete with each other.
I need a examples of two species have identical ecological requirement.
Hypothesis: If two species have identical ecological requirements, then they will not compete with each other.
Experimental Design:
To test this hypothesis, you can set up a laboratory experiment using two species of microorganisms that have identical ecological requirements. Here is an example of an experimental design:
1. Selection of Species:
Choose two species of microorganisms that have similar nutritional requirements, temperature preferences, pH tolerances, and other ecological requirements. For instance, you can select two species of bacteria that thrive in the same growth medium and environmental conditions.
2. Preparation of Growth Medium:
Prepare a growth medium that provides the necessary nutrients, minerals, and other factors required for the growth of both selected microorganisms. Ensure that the growth medium supports the growth of both species equally.
3. Experimental Setup:
Divide the growth medium into three groups:
a. Group 1: Contains only species A (single-species control)
b. Group 2: Contains only species B (single-species control)
c. Group 3: Contains both species A and B (mixed-species treatment)
Prepare multiple replicates of each group to ensure statistical validity.
4. Inoculation and Incubation:
Inoculate the growth medium with a known quantity of each microorganism in the appropriate groups:
a. Inoculate Group 1 with species A only.
b. Inoculate Group 2 with species B only.
c. Inoculate Group 3 with both species A and B simultaneously.
Place all groups in a controlled incubator set to the optimal growth conditions for the selected microorganisms.
5. Monitoring and Measurements:
Over a defined period, monitor the growth of each microorganism in the different groups. Take regular measurements of population density, such as optical density (OD) or colony-forming units (CFUs), at specific time intervals. Record the data for further analysis.
6. Data Analysis:
Compare the growth patterns and population densities of species A and B in the single-species control groups (Groups 1 and 2) with their growth in the mixed-species treatment group (Group 3). Look for any differences in growth rates, population sizes, or competition for resources.
If the hypothesis is supported, you would expect to see similar growth patterns and population densities of species A and B in the mixed-species treatment group compared to their growth in the single-species control groups. This would suggest that the two species with identical ecological requirements do not compete with each other.
If the hypothesis is not supported, you may observe differences in growth rates or population sizes, indicating that competition occurs even when species have identical ecological requirements.
Remember to use appropriate statistical analysis methods to determine the significance of any observed differences.
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Which statement describes how globes represent Earth’s surface? They model all of Earth’s surface. They are flat and two dimensional. They represent underwater features using symbols. They provide detailed information about towns or cities.
Answer:
they model all of earths surface
Explanation:
i took the test
They model all of Earth's surface describes how globes represent Earth’s surface. Therefore, option (1) is correct.
Three-dimensional globes depict Earth's surface. Globes more accurately depict Earth's shape and dimensions than flat maps. Globes model all of Earth's landmasses, oceans, and other geographic characteristics. For spatial relationships and distances, the globe's spherical shape better represents the Earth's curvature.
Globes show the Earth's rotation and axial tilt, helping humans recognise seasons and time zones. They show political boundaries, terrain, and climate trends. Globes may not provide precise city information due to their three-dimensional structure.
Globes help students understand Earth's geography, interdependence, and spatial linkages, whereas flat maps are utilised for navigation. They remind us that our world is a complex, linked system that needs careful study and protection. Therefore, option (1) is correct.
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Which statement describes how globes represent Earth’s surface?
They model all of Earth’s surface. They are flat and two dimensional. They represent underwater features using symbols. They provide detailed information about towns or cities.the movement of chloroplasts remind me of....
The chloroplasts are these. Maintain a close eye out for any movement in the chloroplasts. Cytoplasmic streaming is the term for movement within a cell.
In both low-light and high-light conditions, efficient photosynthesis depends on chloroplast mobility. The aforementioned claim is true since chloroplasts are an organelle that travel throughout cells through cytoplasm. Every type of cell is filled with a thick fluid called cytoplasm, in which organelles are both suspended and free to move. The cytoplasm is the home of all organelles, including the nucleus, endoplasmic reticulum, chloroplasts, and mitochondria. We may infer that chloroplast is an organelle that moves inside the cell with the help of cytoplasm since the section of the cytoplasm that does not contain organelles is known as cytosol.
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What should you do if you spill chemicals on your skin?
Answer:
If you spill an acid or base on your skin
★ Wash it with water.
★Strong bases react with oils,to produce a soapy feeling layer.
★Rinse it till that feeling is gone.
★Do not attempt to neutralize a spill on your skin.
Answer:c
Explanation:
how a dog meets all of the characteristics of life.
Answer:
the characteristics of life are sensitivity or response to the environment, reproduction, growth and development, regulation, homeostasis, and energy processing.
Explanation:
a dog responds to stimulus such as pets. they reproduce and have puppies, and also grow in size over time. they process energy by eating food, which helps them maintain homeostasis.
Show your work (calculations) 0.1 mL of an original sample is diluted into 9.9 mL of water, and then 0.1 mL of this is spread on a plate. 54 colonies grew. What was the original cell density of the sample?
The original cell density of the sample was 540 cells/mL. This was calculated based on the dilution factor and the number of colonies that grew on the plate.
To calculate the original cell density, we need to consider the dilution factor and the number of colonies that grew on the plate.
First, we determine the dilution factor. The original sample was diluted 1:100 (0.1 mL into 9.9 mL), resulting in a dilution factor of 1/100 or 0.01.
Next, we calculate the number of cells in the diluted sample. Since 0.1 mL of the diluted sample was spread on the plate and 54 colonies grew, we can assume that each colony represents one cell from the original sample.
Therefore, the number of cells in the diluted sample is 54 cells.
To find the original cell density, we divide the number of cells in the diluted sample by the dilution factor:
Original cell density = (Number of cells in diluted sample) / (Dilution factor)
= 54 cells / 0.01
= 540 cells/mL.
Thus, the original cell density of the sample is 540 cells/mL.
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which of the following lists the steps to obtain metagenomic data in the proper order? choose one: a. sample the community, break open cells to harvest dna, sequence the dna, amplify the dna, assemble genomes b. sample the community, break open cells to harvest dna, amplify the dna, assemble genomes, sequence the dna c. sample the community, break open cells to harvest dna, amplify the dna, sequence the dna, assemble genomes d. sample the community, amplify the dna, sequence the dna, break open cells to harvest dna, assemble genomes
The proper order to obtain metagenomic data is: c. Sample the community, break open cells to harvest DNA, amplify the DNA, sequence the DNA, and assemble genomes.
First, a sample of the microbial community is collected from the environment. Then, the cells within the sample are broken open to extract their DNA. The DNA is then amplified using polymerase chain reaction (PCR) to make more copies of the genetic material. Next, the DNA is sequenced to generate a large amount of genetic information. Finally, the sequenced DNA is assembled into larger sequences to reconstruct the genomes of the microorganisms present in the sample.
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Looking at colony morphology is useful for identifying different bacteria species because of which of the following: A. An individual colony (on a petri dish) represents a single bacterial speciesB. a rapidly growing bacteria speciesC. has multiple types of bacteria that can be separated by streaking a plate with the colony.
Looking at colony morphology is useful for identifying different bacteria species because of An individual colony (on a petri dish) represents a single bacterial species. The correct option is A.
Colony morphology is the appearance of bacterial colonies when they are grown on a solid medium, such as a petri dish. Each individual colony on the plate represents a single bacterial species because it has grown from a single cell. This is a useful way to identify different bacterial species because each species has its own characteristic colony morphology.
By looking at the size, shape, color, and texture of the colonies, scientists can distinguish between different bacterial species. It is important to note that colony morphology alone is not always enough to accurately identify a bacterial species, and additional tests may be required.
Thus, the correct option is A.
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Please fill in!!
a. ATP
b. Light energy
C. C02
d. 02
e. Carbohydrate
f. Water
Would greatly appreciate if you answered like this:
18: ATP
19: etc..
18. b
19. c
20. f
21. e
22. d
23. c
24. f
25. a