What is the primary function of the phloem in vascular plants?
Answer:
Phloem is the food transporting vesicles of a vascular plant
Explanation:
Phloem and Xylem together forms the vascular tissue. While Xylem transport fluid in the plant , phloem is responsible for transportation of soluble organic substances such as sugar, protein etc. Phloem transports food produced during the process of photosynthesis in leaves to all other non-photosynthesizing body parts such as stem and roots. The food travels from the leaves to the roots with the assistance of gravity.
The substance in phloem travel through the “sieve tube members” and “ companion cells” .
Definition: vocabulary audio this is the stage of mitosis where chromosomes align in the middle of the cell before being separated into each of the two daughter cells.
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Which of the following waves, from the electromagnetic spectrum, have the highest energy?
Radio wave
Microwave
Visible light
Gamma wave
Humans and other animals need a variety of materials in order to form the molecular building blocks of life. what is the primary source of these materials?
The constant balancing of an organism's energy-producing and its energy-using processes is called
A(n) __________ is a rule that describes a pattern in the natural world.
The nurse recognizes that which patient condition is associated with a sweat chloride level of 75 mmol/l and chromosome 7 mutation's effect on the development of bone?
If the victim of a toxicologic emergency vomits, an emt should _________.
Name the organelles that are only found in the plant cell but not in the animal cell.
Certain amino acids are called essential because they ______.
Certain amino acids are called essential because they cannot be synthesized from the scratch. There are nine essential amino acids.
What are the essential amino acids?
An essential amino acid or the indispensable amino acid is an amino acid which cannot be synthesized from that of scratch by the organism fast enough to supply its demand in the body, and must therefore come from the diet they eat. Out of the 21 amino acids which are common to all the life forms, the major nine amino acids include humans those who cannot synthesize include phenylalanine, valine, threonine, tryptophan, methionine, leucine, isoleucine, lysine, and histidine amino acids.
Foods which contain all the nine essential amino acids are called as complete proteins. These food components include beef, poultry, fish, eggs, dairy, soy, quinoa, and buckwheat.
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The patient is a 10-month-old boy who fell while trying to walk. he cut the bottom of his lip open. sutures are necessary, but due to the patient's age and excessive movement, general anesthesia is needed. what modifier should be used?
What model organism did mendel use for determining the inheritance of traits?
Explain why soft-bodied invertebrates, like slugs, die when you pour salt on them.
When using a rock hammer to take a sample of a rock in the field, which of the following pieces of safety equipment should you use?
A.
ear plugs
B.
heat-resistant gloves
C.
eye goggles
D.
apron
Birds and strawberries benefit each other. Strawberries provide food for the birds; the birds provide a way for strawberries to widely disperse their seeds. This kind of animal/plant interdependence is known as _____. commensalism mutualism parasitism dispersism
Answer: mutualism
Mutualism is a symbiotic relationship, between two organisms, living in close association with each other. In this relationship both the organisms gains benefit. Both organisms are dependent on each other for competing their life cycle.
The given situation is an example of mutualism because both the species are benefited for the relationship. Birds receive food from strawberries in turn birds disperse the seeds of strawberry to promote growth of more strawberry plants. Both organisms are interdependent on each other.
In ____________ , signals pass through a cell junction from one cell to adjacent cells.
Which actions help keep your digestive system healthy?
Drink plenty of water and avoid fatty foods.
The nurse is reviewing aspects of cultural care. which statements illustrate proper cultural care? select all that apply
The question is
missing the options, here are the options for the above question:
A. Examine the patient within the context of one's own cultural
health and illness practices.
B. Select questions those are not complex.
C. Ask questions rapidly.
D. Touch patients within the cultural boundaries of their
heritage.
E. Pace questions throughout the physical examination.
The correct choices are “B, D, and E”.
Complex questions may not be responded in satisfactory ways due to cultural variations and touching patients have various boundaries as in every cultural heritage that is different and finally pacing the question throughout the examination may help patient get better care.
What is the primary difference between impersonation and masquerading?
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What method would you use to assess the status of the biosphere on a global basis?
The status of the biosphere can be assessed globally using remote sensing and biodiversity studies. Remote sensing involves using satellite technology to track environmental and biological conditions, while biodiversity studies involve detailed analysis of the variety of life in different regions.
Explanation:To assess the status of the biosphere on a global basis, scientists and researchers could use a method called remote sensing. This involves satellites and radars that monitor conditions on Earth, providing important data on global indicators. For example, NASA's Earth Observing System tracks parameters such as temperature, humidity, vegetation, carbon dioxide and other critical measurements. Data from remote sensing offers comprehensive, global information about environmental and biological processes in the biosphere.
Another method is through biodiversity studies. This involves counting, comparing and monitoring the variety of life, including plants, animals and microorganisms, in different areas of the biosphere. Many of these studies are conducted through field work, laboratory research and statistical analysis, all aiming to comprehend the dynamics of the biosphere.
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Which is an autonomic body function? squinting in the sunlight salivating at the thought of a hamburger raising your hand in class bending over to pick up a book you dropped
Answer:
salivating at the thought of a hamburger
Explanation:
The autonomic functions of the human body are governed by the autonomic nervous system, which is an involuntary system that transmits nerve impulses from the central nervous system to the periphery, stimulating peripheral organs and systems.
Salivating at the idea of a hamburger is an unconscious action, that is, we cannot control it; such as the heartbeat, breathing, among other actions of our human body.
In three (3) sentences, explain the function of a vacuole in plant cells.
ANSWER:
A vacuole is used for temporary storage of water, waste products, food, and cellular material. Plants take in large amounts of water and need a place to store the water. Vacuoles are larger in plant cells than animal cells to store the water and other materials needed by the cell.
A vacuole is an organelle found in different forms of life (i.e., animal, plant, protist, fungi and bacteria). The plant vacuoles are filled with water containing both inorganic and organic compounds in solution.
The plant cells contain one or more vacuoles, which are membrane-bound structures (organelles) surrounded by a membrane called tonoplast.In plant cells, the vacuole helps to provide structural support and plays diverse roles including storage of water, waste products and growth.The plant vacuoles also serve for maintaining internal hydrostatic pressure within the cell and balancing the internal (acidic) pH.In conclusion, a vacuole is an organelle found in different forms of life. The plant vacuoles are filled with water containing inorganic (salt) and organic (e.g. enzymes) substances in solution.
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A vacuole in plant cells serves as a storage area for water, nutrients, and wastes, maintains turgor pressure to support the plant's structure, and plays a role in protecting the plant from herbivory. It can occupy up to 90% of a plant cell's volume and is essential for the plant's responsiveness to water availability, contributing to cell expansion and wilting depending on environmental conditions.
Explanation:The function of the vacuole in plant cells is multifaceted, primarily involving storage and maintenance of internal pressure. A large central vacuole is a signature feature of plant cells, taking up to 90% of the cell's volume, and it is crucial for storing water, nutrients, and waste products. Additionally, the central vacuole helps maintain turgor pressure, which supports the cell structure and is vital for plant rigidity and overall health.
By regulating the water balance within cells, the vacuole plays a key role in cellular function, particularly in changing environmental conditions. When a plant lacks water, the vacuole will release some of its water content, causing the plant to wilt due to loss of turgor pressure. Furthermore, the vacuole is involved in the storage of pigments that color flowers and has a role in deterring consumption by animals and insects due to the bitter taste of the fluid within.
Two major differences in the morphology of spermatids and spermatozoa
The correct answer is that spermatids are larger and have a round shape, while spermatozoa are smaller and have a flagellum.
To understand the differences between spermatids and spermatozoa, one must consider their stages in spermatogenesis, the process by which sperm are produced.
Spermatids are the haploid cells that result from the second meiotic division of secondary spermatocytes. They are characterized by the following morphological features:
1. Size: Spermatids are larger than spermatozoa. This is because they have not yet undergone the final stages of differentiation and maturation that will transform them into mature sperm cells.
2. Shape: Spermatids have a round shape. They do not possess the elongated form that is typical of mature spermatozoa.
3. Nucleus: The nucleus of a spermatid is larger and less condensed compared to that of a spermatozoon. The DNA within the nucleus of a spermatid is not yet fully packaged with protamines, which are proteins that replace histones during spermiogenesis, leading to a more compact nucleus in the spermatozoon.
4. Cytoplasm: Spermatids have a significant amount of cytoplasm, which contains organelles and other cellular components necessary for their development into spermatozoa.
Spermatozoa, on the other hand, are the mature, motile sperm cells. They exhibit the following morphological characteristics:
1. Size: Spermatozoa are smaller than spermatids due to the loss of excess cytoplasm and the condensation of their nucleus.
2. Shape: Spermatozoa have an elongated shape with a distinctive head, midpiece, and tail. The head contains the condensed nucleus, the midpiece has mitochondria arranged in a helical fashion to provide energy for movement, and the tail is a flagellum that propels the sperm.
3. Flagellum: One of the most notable features of spermatozoa is the presence of a flagellum, which is an elongated structure that enables them to swim. Spermatids do not have a flagellum.
4. Acrosome: Spermatozoa have a specialized structure called the acrosome at the tip of their head. The acrosome contains enzymes that help the sperm penetrate the egg during fertilization. Spermatids begin to develop an acrosome, but it is not fully formed until the spermatozoon stage.
In summary, the two major differences in the morphology of spermatids and spermatozoa are that spermatids are larger and have a round shape, while spermatozoa are smaller, have an elongated shape with a distinct head, midpiece, and tail, and possess a flagellum for motility. These differences are crucial for the function of spermatozoa in fertilization.
Which is not a high-level radioactive waste? contaminated clothing fuel rods reactor coolant control rods
Answer:
A) contaminated clothing
Explanation:
You can safely treat and dispose of clothing contaminated with low-level radioactive waste by following specific guidelines. Highly radioactive nuclear reactor waste requires deep geological disposal due to its extreme radioactivity. You can dispose of radioactive waste, including contaminated clothes, gloves, and tools, by incineration, compaction, or burial at approved facilities.
In contrast, high-level waste remains radioactive for thousands of years and requires secure storage facilities. Regular monitoring and containment are necessary to prevent leaks and contamination. This includes nuclear fission waste components, such as reactor coolant and spent fuel. This hazardous waste poses a threat to both humans and the environment.
Mishandling this waste could result in permanent damage.Strict laws and standards ensure the safe handling and disposal of high-level nuclear waste. Specialized facilities separate this waste from the environment to minimize radiation exposure. Additionally, research is underway to find more sustainable and effective ways to handle high-level nuclear waste.
Amoebae move by crawling over a surface (cell crawling), which involves ________. amoebae move by crawling over a surface (cell crawling), which involves ________. assembly of microtubule extensions that vesicles can follow in the direction of movement reinforcement of the pseudopod with intermediate filaments growth of actin filaments to form bulges in the plasma membrane localized contractions driven by myosin and microtubules
Lard, butter, and cream are rich sources of ________. saturated fatty acids monounsaturated fatty acids polyunsaturated fatty acids trans fatty acids
Tina's 5-year-old cousin comes into the clinic and you notice that her heart rate increases with inspiration and decreases with expiration. what is your differential diagnosis and treatment plan for this finding
It is a normal situation in children in which heart rate increases with inspiration and decreases with expiration and is called Sinus Arrhythmia. If you find that child is not facing any serious problem then no treatment is required.
Further explanation
Sinus Arrhythmia
Respiratory sinus arrhythmia, in which heart rate increases with inspiration and decreases with expiration, isn't an anomalous mood and is most generally found in youngsters. Sinus arrhythmia is available when the P wave morphology is ordinary and predictable and the P-P interims fluctuate by in excess of 120 milliseconds. Nonrespiratory sinus arrhythmia, in which phasic changes in sinus rate are not identified with the respiratory cycle, can be complemented by the utilization of vagal operators, for example, digitalis and morphine; its mechanism is unknown.
Children and Arrhythmia
For childeren, the pulse, or a number of times a heart pulsates every moment, can change. Exercise, for instance, makes the heart beat all the more frequently, while the pulse backs off during rest.
The "typical" pulse for a more established youngster or adolescent very still is around 70 beats for each moment. In a newborn child, the heart thumps 140 times each moment by and large.
A few arrhythmias, or sporadic pulses, are ordinary. For instance, in numerous kids, the pulse accelerates while taking in, at that point backs back off while breathing out. This heartbeat variety with breathing is called sinus arrhythmia, and it's no reason for concern.
In the event that your kid's primary care physician finds an arrhythmia, the individual in question will probably perform tests to find out additional. You could likewise prefer to a pediatric cardiologist, who works in heart issues in kids.
Treatment of sinus arrhythmia
If doctor finds unusual heartbeats, child feel weak and lightheaded, fainted then he will prescribe medicine. By realizing all that you can about arrhythmias, you can play a functioning job in your childcare. Also, rest guaranteed, a few treatment alternatives are accessible. Together, you and your kid's primary care physician can decide the correct game-plan.
Answer details
Subject: Biology
Level: High school
Keywords
Sinus Arrhythmia Children and Arrhythmia Treatment of sinus arrhythmiaLearn more to evaluate
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The internal framework or stroma of organs such as the spleen, liver, and lymph nodes is made up of ________ tissue.
Final answer:
The internal framework or stroma of the spleen, liver, and lymph nodes is made up of reticular connective tissue, which is composed of reticular fibers forming a supportive mesh-like structure for these organs.
Explanation:
The internal framework or stroma of organs such as the spleen, liver, and lymph nodes is made up of reticular connective tissue. This tissue is mostly composed of reticular fibers that form a network or 'little net', supporting the shape and function of these organs. Reticular cells produce the reticular fibers that make up this mesh-like framework, which not only provides structural support but also serves as a scaffold for lymphatic and white blood cells.
Within the spleen, which is a component of the secondary lymphoid tissue, these reticular fibers support fixed macrophages and dendritic cells, as well as circulating B-lymphocytes and T-lymphocytes. This arrangement is essential for the spleen's function in filtering blood and capturing pathogens and antigens. Similarly, in lymph nodes, the reticular framework contains germinal centers rich in B and T lymphocytes, crucial for the immune response.
To study osmosis, a student placed a thin potato slice in a salt solution. The slice became soft and shriveled. Then, he placed the shriveled slice in water. The slice regained its original shape. Based on the observations, which of these statements is correct?
A) The slice regained its shape because salt moved into the potato.
B) The potato slice shriveled because water moved from the salt solution into the slice.
C) The potato slice shriveled because water moved out of the slice into the salt solution.
D) The slice regained its shape because the concentration of salt inside and outside the slice became equal.
what does trophic level mean in ecosystem