Explain how the appearance of the chromatogram might change if the chromatographic paper were initiallywet with water or had come in contact with the skin

Answers

Answer 1

Final answer:

The appearance of a chromatogram could be negatively affected if the chromatographic paper is wet or contaminated by skin contact, leading to uneven solvent front advancement and irregular sample migration, which disrupts the separation process.

Explanation:

When conducting paper chromatography, the condition of the chromatographic paper is crucial for achieving a clean separation of compounds. If the paper were initially wet with water, the starting condition for chromatography would be disrupted. The water would interfere with the movement of the solvent (the mobile phase) and the sample, possibly leading to uneven solvent front advancement, and it might solubilize the sample differently, altering the travel rate of the components. This could result in a smeared or distorted chromatogram.

Contact with skin oils can similarly alter the chromatography process. The oils could create regions on the paper with different affinities for the sample and the solvent, which can affect adsorption and cause irregular migration of the sample during solvent elution. Therefore, it's essential to handle paper chromatography materials with clean gloves to avoid contamination that can lead to a problematic chromatogram.


Related Questions

The thoracic cavity is separated from the abdominal cavity by the

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separated by the diaphragm

What spots on the stem allow a stem to exchange gases?

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is it the lenticels??

List the level of organization within a multicellular organism.

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Level 1 - Cells.
Level 2 - Tissues.
Level 3 - Organs.
Level 4 - Organ Systems.
Level 5 - Organisms.

Can a mutation be beneficial to an organism?

No, because any change to existing DNA is harmful.
No, because mutations are caused by exposure to harmful radiation.
Yes, because a mutation can help an organism survive in a particular environment.
Yes, because a mutation can give an organism what it needs to survive.

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Yes, the mutation can help the organism to survive it's environment  

Answer:

Yes, because a mutation can help an organism survive in a particular environment.

Explanation:

Mutations refer to the random changes in the genome of the organisms. A mutation can be beneficial, harmful or neutral for an organism. If a mutation imparts certain features to the individuals and helps them to survive under the prevailing surroundings, the mutation is said to be beneficial.  

For example, the mutation that resulted in antibiotics resistance in the bacterial population was beneficial as it helped the bacteria to survive in the presence of antibiotics.

While visiting the hospital, the spouse of a client slips and falls on a recently washed floor in the hallway leading to the client's room. to meet the criteria of ethical practice, what action should the nurse who witnessed the occurrence take?

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The nurse should fill out an incident report and submit it to her supervisor. She would just need to write a brief description of the events while it is fresh in her mind. Later on if there was a lawsuit or someone had questions, then she has already documented what happened when it happened.

Oxygen depleted zones at varying depths in marine waters between 100-1000m are called __________.

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photic zone The photic zone or daylight (Sunlit) zone is the part of the water in a lake or sea that is presented to such power of daylight which assigns remuneration point, i.e. the force of light at which the rate of carbon dioxide take-up, or identically, the rate of oxygen generation, is equivalent to the rate of carbon dioxide creation, comparably to the rate of oxygen utilisation, diminishing in this way the net carbon dioxide digestion to zero. Since the photic zone is the place the greater part of the photosynthesis happens, the profundity of the photic zone is for the most part relative to the level of essential generation that happens here of the sea. Around 90% of all marine life lives in the photic zone. A little measure of essential creation is produced somewhere down in the deep zone around the aqueous vents which exist along some mid-maritime edges.

What is atp and what is its role in the cell?

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ATP is energy produce by mitrocondria. main role of ATP energy is to give energy to all organells.


Fossils form by preservation when parts of living things remain exactly how they were.

Which part of a shark is most likely to form a fossil by preservation?

A. skin

B. gills

C. teeth

D. fins

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The most common and the hardest to erode are C. teeth.

Hope this helps!

c is the answer  i hope you get it right


What role(s) do gap phases play in the cell cycle? see section 12.1 ( page 255) ?

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Enable cells to imitate organelles and produce extra cytoplasm. The cell cycle or cell-division cycle is the arrangement of occasions that occur in a cell prompting its division and duplication of its (DNA replication) to deliver two girl cells. In microscopic organisms, which do not have a cell core, the cell cycle is separated into the B, C, and D periods.

The correct answer is Option d) They allow cells to replicate organelles and manufacture additional cytoplasm.

During the gap phases (G1 and G2) of the cell cycle, cells undergo significant growth and preparation for cell division.

Specifically, Gap 1 (G1) phase occurs after cell division and before DNA synthesis (S phase), while Gap 2 (G2) phase follows DNA synthesis and precedes mitosis (M phase).

In Gap 1 (G1) phase, cells primarily focus on growth and metabolic activities. They replicate organelles such as mitochondria and endoplasmic reticulum to ensure that each daughter cell will have sufficient resources to function after division. Additionally, cells synthesize proteins and other molecules required for cell division, including enzymes and structural proteins. This phase allows the cell to accumulate the necessary materials for DNA synthesis and eventual division.In Gap 2 (G2) phase, cells continue to grow and prepare for cell division. They further replicate organelles and manufacture additional cytoplasm to support the division of the cell into two daughter cells. Additionally, cells undergo a series of checkpoints during G2 phase to ensure that DNA replication has been completed accurately and that the cell is ready to proceed to mitosis. This phase provides a final opportunity for the cell to assess its readiness for division and make any necessary repairs or adjustments before entering the M phase.

Overall, Gap phases (G1 and G2) play a crucial role in the cell cycle by allowing cells to replicate organelles and manufacture additional cytoplasm, ensuring that each daughter cell receives the necessary components to function properly after division.

Complete Question:
What role(s) do gap phases play in the cell cycle? see section 12.1 ( page 255) ?

a) They allow chromosome replication to occur.

b) They allow chromosomes to condense prior to mitosis.

c) They allow the nuclear envelope to re-form after mitosis.

d) They allow cells to replicate organelles and manufacture additional cytoplasm.

Which stage of cell respiration makes the majority of atp?

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cellular respiration uses energy in glucose to make atp aerobic respiration occurs in three stages glycolysis the krebs cycle and electron transport.
Which stage of aerobic cellular respiration makes the majority of ATP?

what specimen has RNA but not DNA

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Both nucleic acids have Adenine, Cytosine and Guanine. DNA has an exclusive Thymine while RNA has Uracil which DNA doesn't have.

Answer:

Virus.

Explanation:

DNA is present as genetic material in all the living organisms except some viruses. The RNA is present as genetic material in few viruses only. Some virus has the ability to convert RNA into DNA.

Some viruses contain RNA as their genetic material and no DNA is involved in their replication. These viruses has the enzyme RNA dependent RNA polymerase that forms the RNA from the RNA molecule. Example: Mononegavirales.

Thus, the answer is virus.

With as much detail as possible, give another example of an analogy for describing the difference between prokaryotic cells and eukaryotic cells.

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An example of an analogy for describing the difference between prokaryotic cells and eukaryotic cells is eukaryotic cells and mansion with many rooms and prokaryotic cells and apartment with one-room or studio type. Eukaryotic has a nucleus and is large and complex like a mansion. Prokaryotic has no nucleus and is small and simple like an apartment. 

 

What are the three abnormal colors used to describe the skin and what might be the cause of each type?

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I think yellow is one and it can be jondus, red and puffy I guess which can be an infection, and occasionally some one can be a pale white green color from being very ill. I hope these are right and I hope this helps you out.  

The typical vegetarian diet supplies high amounts of

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Typically, a vegetarian diet supplies high amounts of antioxidants, certain vitamins, and healthy fats. As a vegetarian, your diet consists mainly of fruits, vegetables and grains. Vegetarians are usually seen as very healthy, however, they do struggle to maintain sufficient protein levels, and have to constantly remember to supplement their lack of protein with nuts or beans.
Final answer:

The typical vegetarian diet supplies high amounts of nutrients such as dark green leafy vegetables, beans and legumes, and nuts and seeds.

Explanation:

The typical vegetarian diet supplies high amounts of

Keywords: vegetarian diet, high amounts

Dark green leafy vegetables: Vegetables such as spinach, kale, and collard greens are rich in nutrients like iron, calcium, and vitamins.Beans and legumes: These are excellent sources of protein, fiber, and various essential nutrients, including folate, iron, potassium, and magnesium.Nuts and seeds: These are packed with healthy fats, protein, fiber, and various vitamins and minerals.

These are just a few examples of the high amounts of nutrients that can be obtained from a typical vegetarian diet.

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Can some help me?
Explain how heredity and family medical history can play a role in an individual’s personal health. Include examples in your explanation.

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To answer quickly, heredity and family medical history can serve to show issues which may arise in your own health. Doctors can look back at your relatives and see things that may be prevalent. Cancer, high blood pressure, diabetes, vision problems, may all be things which can be hereditary to your family. In a nutshell, that's about the best I can answer for you. Hope it helps.
Hereditary and family medical history can play a big role in someone's health. For example my family is known to have cancer, run through the family my grandpa died from cancer and my aunt's and grandma have had cancer in the past. Therefore I am at a higher risk of getting cancer due to my family's hereditary history. This could also be if for example your family has a history of type 2 diabetes you will have a higher chance of getting it. This is also why doctors will ask you if any diseases or anything runs in your family because it is important to know to be able to watch out for it.
hope this helps!

What is cancer? ??????

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Cancer is a disease in which abnormal cells divide uncontrollably and destroy body tissue. Hope this helps.
Condition in which cells grow without control and divide too much.

What are the three main products of cellular respiration?

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Most of the steps of cellular respiration take place in the mitochondria.Oxygen and glucose are both reactants in the process of cellular respiration.The main product of cellular respiration is ATP; waste products include carbon dioxide and water.

what is a type of prokaryotic cell

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A prokaryotic cell does NOT have a membrane. Eukaryotic does on the other hand. A great example of a Prokaryotic cell is bacteria.

What is the probability that two heterozygous parents would have an offspring that produces round seeds?

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fkfkfkkxkxorifkfkcksisi ok irifidifk chkkf ok k9r

If nearly all organisms break down food by the process of cellular respiration, why doesn't the Earth run out of oxygen? Where does the CO2 waste go?

Answers

Final answer:

The Earth maintains a balance of oxygen due to photosynthesis, where plants and other organisms convert CO2 into oxygen. Photosynthesis and cellular respiration work in a cyclical harmony, recycling atoms and maintaining the balance of gases in the atmosphere.

Explanation:

The Earth does not run out of oxygen because there is a balance between the oxygen-consuming process of cellular respiration and the oxygen-producing process of photosynthesis. Organisms such as plants, algae, and certain bacteria photosynthesize, taking in carbon dioxide (CO₂) and releasing oxygen (O₂) into the atmosphere. This oxygen is then utilized by organisms to perform cellular respiration, which in turn releases CO₂. This CO₂ is not a waste but a substrate for photosynthesis, thereby creating a cyclical relationship between the two processes. Additionally, geological evidence indicates that the original atmosphere lacked oxygen and it was not until the evolution of photosynthesis, roughly 3.8 billion years ago, that oxygen was introduced into the atmosphere as a byproduct.

Final answer:

Earth maintains its oxygen supply because the CO₂ produced in cellular respiration is utilized by plants in photosynthesis to produce oxygen. This cycle of photosynthesis and respiration ensures a balance that prevents the depletion of oxygen. Photosynthesis and cellular respiration operate in a global, cyclical harmony, with CO₂ and O₂ being continually recycled.

Explanation:

Earth doesn't run out of oxygen because the carbon dioxide (CO₂) produced by cellular respiration is used by plants during photosynthesis to create more oxygen. In this energy cycle, plants and other photosynthesizing organisms absorb CO₂ and light energy to build carbohydrates and release O₂ as a byproduct. This cyclical process occurs globally and allows the conservation of matter, ensuring that oxygen remains available in the atmosphere while CO₂ is continually recycled into new organic material.

In aquatic environments and some terrestrial habitats, certain organisms might experience oxygen scarcity and rely on anaerobic processes to generate energy. However, in most cases, the atmospheric mixing by winds allows for a constant supply of oxygen for cellular respiration. Thus, both processes of photosynthesis and cellular respiration maintain a balance that prevents the depletion of Earth's oxygen supply, supported by the vast range of photosynthetic organisms, from land plants to marine phytoplankton.

The only what that exist today are found in greenland and antarctica

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__________Ice Sheets___________

A __________ is a polysaccharide layer that lies outside the cell wall and is not easily removed.

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I believe it is a CELL CAPSULE. They are found in prokaryotic cells such as bacteria. Hope that helps. Have a nice day.

What characteristics distinguish invertebrates from invertebrates chordates

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Invertebrates lack a backbone while a vertebrate has one

Hope this helped :)

Invertebrates lack a backbone, while invertebrate chordates, part of the phylum Chordata, lack a backbone but have key features like a notochord and dorsal hollow nerve cord. Urochordata (tunicates) and Cephalochordata (lancelets) are examples of invertebrate chordates.

Invertebrates are animals that lack a backbone, whereas invertebrate chordates are a subgroup within the phylum Chordata that also lack a backbone but share key characteristics with vertebrates. The phylum Chordata includes both vertebrates and invertebrates, and is distinguished by the presence of a notochord, a dorsal hollow nerve cord, pharyngeal slits, and a tail at some point during the organism's lifecycle.Urochordata (tunicates) and Cephalochordata (lancelets) are two clades of invertebrate chordates. Tunicates are mostly found on the ocean floor and are suspension feeders, while lancelets are suspension feeders that feed on phytoplankton and other microorganisms.

A nurse is assessing a patient at a routine antepartum visit. for a rough estimate of the number of gestational weeks the patient is at, the nurse should measure the number of cm between which two anatomical landmarks?

Answers

Gestational age can also be estimated by measuring the fundal height.  This is done by measuring from the pubic bone to the top of the uterus. The measurement in centimeters roughly equal to the gestational age in weeks from the last menstruation.

What are several sources of error in conducting gram stains?

Answers

The sources of errors could be a reduction in the staining power of the stain, taking bacteria that lack a cell walls, etc

What is gram staining?

Gram staining is a common technique used in laboratories for the differentiation of two large groups of bacteria depending on the differences in the constituents of their cell walls.

The procedure distinguishes between the Gram-positive bacteria and the Gram-negative bacterial groups using stains for the coloring of these cells red/pink or violet.

Gram-positive bacteria get violet because of the presence of a thick layer of peptidoglycan in their cell walls. This peptidoglycan retains the crystal violet in the cell wall leaving the cells to appear violet.

Alternatively, the gram-negative bacteria stain pink/red. This is because of a thinner layer of peptidoglycan in the cell wall. This thin layer is not able to retain the crystal violet after treatment with a decolorizer.

Therefore, the sources of errors could be a reduction in the staining power of the stain, taking bacteria that lack a cell wall, etc

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Final answer:

Sources of error in gram stains include contamination during sample collection, improper decolorization time, incorrect reagent freshness and concentration, inadequate draining of slides before adding the next reagent, and the age of the bacterial culture.

Explanation:

Several sources of error in conducting gram stains can affect the accuracy of the results. Contamination during sample collection can introduce foreign bacteria or remove organisms from the sample, leading to inaccurate results. It's crucial to ensure that hands, gloves, and glassware are free from contaminants before beginning the staining procedure.

Missteps in the staining process itself can also lead to errors. If the decolorization step is too short, all cells may appear purple, suggesting they are all gram-positive, when this may not be the case. Conversely, if decolorization is too long, cells may all appear pink, indicating a false gram-negative result. Ensuring the correct length of the decolorization step is key for accurate differentiation between gram-positive and gram-negative bacteria.

The freshness and concentration of reagents is another crucial factor, as outdated or improperly concentrated reagents can lead to poor staining. Ensuring that slides are properly drained before adding the next reagent is important to prevent dilution of the stains. Moreover, the age of the bacterial culture can have a significant impact on the results, with older gram-positive organisms losing their ability to retain the primary stain.

Sleep deprivation increases levels of the stress hormone ________, which stimulates the body to make ________.

Answers

I think the stress hormone is cortisol and it stimulates the body to make glucose.

A client is admitted to the emergency department with chest pain and shortness of breath. an electrocardiogram indicates that the client is experiencing a myocardial infarction. an emergency cardiac catheterization is scheduled. what information should the nurse include in the preprocedure teaching?

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A few things the nurse should discuss are the risks and benefits of the procedures, the general plan for aftercare, the types of medications expected for use after the procedure, the types of durable medical equipment expected for use after the procedure, and the long term outlook on the procedure. Education on lifestyle changes are usually good to discuss with any patient as well.

What is the process of the ocean floor adds new material to its ocean floor called?

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Sea floor spreading. 

The heart pumps blood through __________ circuit(s).

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The heart pumps blood through the pulmonary and systemic circuits of the circulatory system. 

In humans, the blood flows from the heart in two circuits or paths. The pulmonary circuit allows blood to flow between the heart and the lungs, while the systemic circuit allows blood to flow between the heart and the rest of the body.

The right side of the heart pumps deoxygenated blood to the lungs through the pulmonary circuit to oxygenate the blood. The oxygenated blood returns to the heart and is pumped by left side of the heart through the systemic circuit to oxygenate the rest of the body. Then, blood becomes deoxygenated as is passes through the body. The deoxygenated blood from the body flows back into the heart via the systemic circuit. The deoxygenated blood onces again moves through the pumonary circuit for oxygenation and the cycle begins again. 

The heart pumps blood through two main circuits, the pulmonary circuit and the systemic circuit, in addition to a third circuit known as the coronary circuit that supplies the heart itself.

The heart pumps blood through two primary circuits: the pulmonary circuit and the systemic circuit. Firstly, the pulmonary circuit is responsible for transporting blood to and from the lungs. Here, the blood picks up oxygen and releases carbon dioxide. After oxygenation, the blood then re-enters the heart before being pumped out to the systemic circuit.

Secondly, the systemic circuit delivers this oxygen-rich blood to the tissues throughout the body. After the body's cells extract the oxygen, the now deoxygenated blood returns to the heart to repeat the process. Additionally, there is a third circuit known as the coronary circuit, which is dedicated specifically to providing the heart itself with a blood supply.

The contraction cycle of the heart demonstrates these two patterns of circulation—pulmonary and systemic—working in tandem to ensure vital oxygenation of the body's tissues, while also clearing carbon dioxide through the lungs. The heart's internal structures and the cardiac muscle cells, known as cardiomyocytes, are integral to this function.

Identify the cranial nerve that passes through the olfactory foramina. hints identify the cranial nerve that passes through the olfactory foramina. the abducens nerve (cn vi) the oculomotor nerve (cn iii) the optic nerve (cn ii) the olfactory nerve (cn i)

Answers

Final answer:

The olfactory nerve (CN I) is the cranial nerve that passes through the olfactory foramina. It is responsible for transmitting sensory smells to the brain through the olfactory foramina, which are tiny holes in the cribriform plate of the ethmoid bone.

Explanation:

The cranial nerve that passes through the olfactory foramina is the olfactory nerve (CN I). The olfactory nerve is responsible for transmitting sensory information related to smell to the brain. It passes through the tiny holes in the cribriform plate of the ethmoid bone, known as the olfactory foramina, where it then proceeds to the olfactory bulb and olfactory tract in the brain. Other cranial nerves mentioned like the oculomotor nerve (CN III), the optic nerve (CN II), and the abducens nerve (CN VI) are mainly associated with vision and eye movement and do not pass through the olfactory foramina.

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The olfactory nerve (CN I) is the cranial nerve that passes through the olfactory foramina, and it is responsible for the sense of smell.

The cranial nerve that passes through the olfactory foramina is the olfactory nerve (CN I). The olfactory nerve is responsible for the sense of smell. Axons of the olfactory receptor neurons pass through the cribriform plate of the ethmoid bone via tiny openings known as the olfactory foramina. These axons then extend to the olfactory bulb where they form synapses with mitral cells, which are part of the central olfactory pathway. This nerve is one of the purely sensory cranial nerves, with its primary function being the transmission of sensory information related to smell from the nasal cavity to the brain.

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