What effect does weather have on the process of photosynthesis?

Answers

Answer 1
I think the answer is: Although the light dependent reactions of photosynthesis are not affected by changes in temperature, the light independent reactions of photosynthesis are dependent on temperature. They are reactions catalyzed by enzymes. As the enzymes approach their optimum temperatures the overall rate increases.

Related Questions

What best describes the difference between protists that have cilia and those that have flagella

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The difference between protists with cilia and those with flagella is that cilia are short and numerous, aiding in locomotion and movement around the cell's surface, whereas flagella are long and fewer in number, primarily used for propelling the cell through its environment.

The main difference between protists with cilia and those with flagella lies in the structure and number of these organelles. Cilia are shorter, hair-like structures that typically exist in large numbers on the cell surface, often covering it completely to assist in locomotion or moving substances across the cell's surface. In contrast, flagella are longer, hair-like structures, and a cell will usually have just one or a few. Both are composed of microtubules in a 9+2 arrangement and functions in locomotion, but cilia may also be involved in moving materials around the cell.

While cilia and flagella are structurally similar in their internal configuration, consisting of 9 fused pairs of microtubules with side arms of the motor molecule dynein, their external functions differ. The cilia's dense coverage and shorter length are well-suited for either moving the cell through the liquid or pushing fluid and particles past the cell's surface. On the other hand, flagella with their length and lower numbers are more often used for propelling the cell itself through its environment.

Explain why a cell needs to replicate its DNA before the cell divides into two daughter cells.

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A cell needs to replicate before it divides in order for each daughter cell to receive a complete set of genetic information.

When messenger rna (mrna) is being transcribed, the rna base _____ always pairs with the base _____ in dna?

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In mRNA transcription, uracil (U) always pairs with adenine (A) from the DNA strand.

When messenger RNA (mRNA) is being transcribed, the RNA base uracil (U) always pairs with the base adenine (A) in DNA. The process of complementary base pairing is crucial for the synthesis of mRNA from a DNA template. In DNA, adenine (A) typically pairs with thymine (T), but since RNA contains uracil (U) instead of thymine, adenine pairs with uracil during transcription. This pairing is a fundamental aspect of the protein synthesis process as mRNA travels to ribosomes to help in the assembly of amino acids into proteins.

A Portuguese man-of-war is an example of ____.

A. an anthozoan.
B. a sea anemone.
C. a hydrozoan colony.
D. a large scyphozoan

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A Portuguese man-of-war is an example of C. a hydrozoan colony. 

ometimes the form or appearance of an organism is studied to determine a taxon. The scientist is using _____.

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The answer is Morphology.

Answer:

1 – Write A To Do List.  

2 – Remove Yourself From Distraction.  

3 – Take Breaks When Working.  

4 – Break Big Tasks Up Into Smaller Chunks.  

5 – Find Your Most Productive Times

Explanation:

NOT MY ANSWER

Choose all statements that accurately describe the transcription bubble

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Options are not provided in the question. Thus, all possible answers are included in the answer.
Transcription bubble is formed during the process of transcription of DNA where a small portion which is to be transcribed is unwound. After this, RNA polymerase binds to the single stranded DNA and RNA strand is synthesized.
It is a molecular structure which is formed only during transcription.

You check the barometric pressure and find that it is reading only 920 millibars. two possible effects could be responsible for this lower-than average reading. what are they?

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If you check the barometric pressure and find that [sic] it is reading only 920 millibars ... two effects possibly responsible for this lower than average reading are 1) elevation (~2500' MSL) or 2) a LOW pressure weather system such as a mid-latitude or tropical cyclone. Also A storm is approaching or barometer is read over a mountain
Final answer:

The two possible effects responsible for the lower-than-average reading of 920 millibars are weather systems and altitude.

Explanation:

The two possible effects that could be responsible for the lower-than-average reading of 920 millibars are weather systems and altitude.

Weather systems can cause fluctuations in barometric pressure. For example, a low-pressure system, such as a hurricane or a strong storm, can result in a decrease in barometric pressure.

Altitude also affects barometric pressure. As you go higher in elevation, the atmospheric pressure decreases. Therefore, if the measurement was taken at a higher altitude than usual, the barometric pressure reading would be lower than average.

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At the end of the chromatography process you observe that the developing solution is bright green. what is the most likely explanation for this?

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Final answer:

A bright green developing solution at the end of chromatography likely indicates the presence of a green pigment like chlorophyll, which has been separated from other components in the sample due to differences in affinity for the stationary phase and solubility in the mobile phase.

Explanation:

At the end of the chromatography process, if the developing solution is bright green, the most likely explanation is that compounds present in the mixture have separated, and the observed green color is due to the presence of a component that has this characteristic color. In chromatography, individual components of a mixture travel at different speeds, causing them to separate based on their affinity for the stationary phase (the material that does not move) and their solubility in the mobile phase (the solvent that moves through the column). For instance, chlorophyll is a green pigment that could result in a bright green color in a plant extract during chromatography.

If we look at the principles involved, we learn that molecules can be identified by the color they produce when separated. This color is based on the wavelengths of light they absorb and reflect. In our case, the green color might be due to a substance such as chlorophyll that absorbs light predominantly in the red and blue parts of the spectrum while reflecting green light. The resulting pale green coloration or bright green color observed at the end of chromatography suggests a successful separation of compounds, where one of the compounds exhibits this green color.

Final Answer:

The most likely explanation for a bright green developing solution at the end of chromatography is the presence of chlorophyll a, a pigment commonly found in green plants.

Explanation:

Several reasons support this answer:

Color: Chlorophyll a exhibits a bright green color, which matches the observed characteristic of the developing solution.

Mobility: Chlorophyll a is relatively non-polar and has low solubility in water, making it move slowly through the chromatography column. This could explain why it appears towards the end of the process.

Common occurrence: Chlorophyll a is abundant in plant tissues and can be extracted along with other plant-derived compounds during the sample preparation stage for chromatography.

While other green pigments exist, their presence in the developing solution is less likely due to:

Specificity of the sample: Depending on the sample analyzed, the presence of other green pigments like biliverdin or malachite green is less probable.

Development parameters: The choice of mobile phase and stationary phase in chromatography specifically targets certain molecules, making it unlikely for unrelated green pigments to be present.

Therefore, considering the green color, potential mobility, and common occurrence in plant extracts, the presence of chlorophyll a is the most likely explanation for the observed phenomenon.

What is the main use of freshwater worldwide? A. Industry B. Recreation C. Home D. Agriculture

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IF by home, you mean drinking, cleaning, etc, then it is home, because everybody needs to drink water.

However, if drinking water is not part of home, the answer should be D. Agriculture, since large amounts of water is needed to enable the plants to survive. 

You may argue Industry, but that depends on which one


hope this helps

Answer:

D. Agriculture

Explanation:

Freshwater refers to any water that occur naturally, but this does not include seawater and brackish water. Examples of fresh water are water in rivers, glaciers, ice sheets, underground (groundwater), icebergs, and among others. The main feature of freshwater is that its dissolved salt and other dissolved solids concentration are low

Freshwater is different from potable water which is water that safe to use to prepare food and drinking water. Human activities and natural occurrence like erosion can pollute freshwater. Therefore, it not save to drink freshwater or use it to prepare food without first treating it.

The uses to which freshwater is put to include sanitation system, drinking and crop irrigation in agriculture. Throughout the world, the major use of water is crop irrigation in agriculture as it agriculture accounts for about 70% of used.

Therefore, the main use of freshwater is Agriculture.

Passive transport needs energy true or false

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Passive transport DOES NOT need energy(ATP), while active transport does.

A scientist wants to study the interaction of different birds in the southern park of a desert. What should the scientists do first?

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they should set up all the equipment that they need

A plant grows faster and fuller due to large amounts of fertilizer. If the plant cross-pollinates with another plant later, how will the use of fertilizer on the parent plant affect the plant's offspring?


A). All of the offspring will be taller than average because the parent plant's genes were affected.

B). Some of the offspring will be taller than average because some of the alleles were affected.

C). The height of the offspring will not change because the parent's genes did not change.

D). The height of some of the offspring will be taller if the other parent plant was also fertilized.

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The answer is "C" because nothing that your parents do, unless it directly affects/changes the gametes, will pass down to the offspring. Fertilizer is like food, how much your parents have eaten in their childhoods will have no effect on if you are under or over weight. (Unless their weight was by a genetic cause, that might have been passed on to you.)

Both starch and cellulose are glucose polymers. why can animals easily degrade starch, but not cellulose?

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Human bodies contain enzymes that can break down starch into glucose and use it for fuel. We do not have the enzymes necessary to breakdown cellulose.

What name is given to fossils that are widespread geographically, are abundant in number, and are limited to a short span of time?

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Hi Shaw, thanks for posting a question here!

The index is a name given to fossils that are widespread geographically, are abundant in number, and are limited to a short span of time.

Answer: Index ✅ 

Hope that helps! ★ If you have further questions about this question or need more help, feel free to comment below or post another question and send the link to me. -UnicornFudge aka Qamar

Final answer:

Index fossils, which are geographically widespread, abundant, and limited to a short time period, are crucial for dating rock layers and identifying geological periods, such as the Mesozoic era indicated by Belemnites.

Explanation:

The fossils that are widespread geographically, are abundant in number, and are limited to a short span of time are known as index fossils. These unique fossils are very useful in geology for dating rock layers, as they indicate a very specific period in geologic time.

For example, Belemnites, a type of ancient cephalopod, signify the Mesozoic era because they only existed during that time. Another example is the extinct chordate Eoplacognathus pseudoplanus, which is associated with the Middle Ordovician period.

To be classified as index fossils, they must be easily recognizable, globally distributed, and represent a short geological timeframe, which makes them invaluable tools for the technique known as biostratigraphy.

Both the consumption of alcohol and the ingestion of antianxiety drugs work to increase the activity of __________, which is an inhibitory neurotransmitter.

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Ingestion of antianxiety drug and alcohol will likely result to an increase of GABA or also known as the gamma Aminobutyric acid. It is the one responsible of neuronal excitability reduction in the nervous system of an individual and it plays a neurotransmitter in the CNS.

What is the most common debilitating disease of childhood among those of european descent?

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CYSTIC FIBROSIS is the most common debilitating diseases of childhood among those of European descent. It is a genetic disorder affecting the lungs and sometimes pancreas, liver and intestine. It is an incurable autosomal recessive disease that affects the newborn babies. Males are relatively more at risk to be affected by this disease.

The remains of wild dogs were found among the prehistoric bones of our ancestors who lived thousands of years ago

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There is confirmation that humans who lived thousands of years ago had encounters with wild dogs. Their close proximity to humans in the burial process is evidence that the animals were domesticated. This, along with artifacts and art depicting dogs in positive ways, shows that humans and dogs have had close relationships for thousands of years.

What is homeostasis? How do cells use both diffusion and osmosis to help maintain homeostasis?

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Osmosis is the process cells use to move water molecules in and out of the cell through the cell membrane. When cells are put in different environments they will try to maintain an equilibrium with the water concentration outside the cell. Through osmosis the cell will lose or gain water molecules to become equal to the concentration in their environment.      
Final answer:

Homeostasis is a biological state of balance within life-compatible parameters, crucial for maintaining health. Cells use diffusion and osmosis to achieve homeostasis. Defining conditions such as hypertonic and hypotonic environments, cells either absorb or expel water to reach equilibrium - a state referred to as isotonic.

Explanation:

Homeostasis is a term used in biology that refers to a dynamic state of balance within parameters that are compatible with life. It involves maintaining equilibrium around a specific value of some aspect of the body or its cells. Variances in conditions such as blood pressure or oxygen content can lead to illness or death.

Cells use both diffusion and osmosis to help maintain homeostasis. Diffusion involves the movement of substances from an area of higher concentration to an area of lower concentration until a state of equilibrium is achieved, while osmosis is the diffusion of water across a membrane in response to osmotic pressure. The aim is to create an internal environment where all the body's cells are in an isotonic solution, which means the concentration of solutes inside and outside the cell is equal, thus equalizing the osmotic pressure on either side of the cell membrane.

For instance, in hypertonic solutions which have a higher concentration of solutes than inside the cell, water molecules tend to diffuse into the hypertonic solution causing the cell to shrivel, as water leaves the cell via osmosis. In contrast, in hypotonic solutions which have a lower concentration of solutes than inside the cell, water molecules tend to diffuse out of the hypotonic solution causing the cell to take in too much water and swell, with the risk of potentially bursting. The body's organ systems, especially the kidneys, work continuously to maintain this homeostatic balance.

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which plant and animal species are characteristics of the Sahara desert in Africa

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Plants like Olive tree, cactus, Doum palm tree, desert thyme, etc. and animals like Camels, jackals, scorpions, foxes, hyenas, etc. are the plants and animal species in the Sahara Desert .

The Sahara Desert is the biggest arid region on earth. The kinds of plants and animal species that live in the Sahara Desert depend on its climate.

There are few trees, bushes, and grasses in the Sahara, which has a dispersed distribution of them. For the purpose of surviving in the desert, the plants use a variety of adaption techniques.

In order to preserve water, plants frequently develop thin, tough leaves or succulent stems, and others become dormant during dry seasons until awakening after one of the infrequent rainstorms.

In deserts, animals live underground or take shelter in burrows during the scorching summer months.

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The Sahara desert features species that have adapted to its dry and harsh conditions, with low species diversity and plants and animals exhibiting fascinating survival strategies. Annuals plants grow following rainfall, while perennial plants conserve water. Nocturnal animal behaviors are common to cope with the desert heat.

The plant and animal species that are characteristic of the Sahara desert have adapted to cope with the extremely dry and harsh conditions. The low species diversity is a direct result of the desert's unpredictable rainfall. Most plants are annuals that germinate, grow, and reproduce quickly following rainfall, then die. Perennial plants, however, have developed various water conservation strategies such as deep roots, limited foliage, and water-storing stems. Meanwhile, many animals have become nocturnal, avoiding the intense heat of the day by staying underground. While the Sahara desert today does not support large foliage-dependent animals, it once housed grasslands with plant life similar to that of modern sub-Saharan Africa.

Characteristics of Sahara Desert Flora and Fauna

Low species diversity linked to scarce precipitation.Annual plants bloom after rare rainfalls, then die.Perennial plants have water conservation adaptations like deep roots and succulent stems.Nocturnal animal behaviors to avoid daytime heat.Endemic species exist due to historical climatic stability, like in the Namib Desert.

Despite its harshness, the Sahara desert is home to remarkable life forms that have evolved in isolation, with some, like the endemic species of the Namib Desert, unique to their environment. The Sahara's arid landscape contrasts sharply with the tropical ecosystems to the south, and human settlements are minimal, often centered around oases.

The ____________ is a law that requires an extension of health insurance benefits after termination

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The Consolidated Omnibus Budget Reconciliation Act was signed into law by president Ronald Regan, and it is designed to extend health insurance benefits after termination of a certain individual. This act is commonly referred to as COBRA and has some discrepancies with the year it was actually enacted verses the year it was drafted.

The majority of tsunamis are triggered by tectonic events in __________.

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The majority of tsunamis are triggered by tectonic events in the Pacific Ocean.
This is why most of tsunamis occur in the Philippines and Japan, which are surrounded by the Pacific Ocean. Tsunamis are huge tidal waves capable of great destruction. 

The most numerous types of interest groups in the united states are

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Economic interest groups.
Hope this helps! :)
Economic interest groups

Photorespiration lowers the efficiency of photosynthesis by

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adding oxygen to carbon, oxidation. Oxidation is the opposite of photosynthesis. As a result ribulose biphosphate will need to be recreated to lower the phosphoglycolate. Becuase photorespiration has has the opposite goal of photosynthesis, it creates more work for the organism.

14. List and describe the 4 levels of protein structure.

A.
B.
C.
D.

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Answer:

Explanation:

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Detect

Answers

Which of these structures can be found in eukaryotes, but not in prokaryotes?

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The mitochondrion is the structures found in eukaryotes but not found in prokaryotes. It is known as the powerhouse of the cell, the function of these structure acts like a digestive system, it generates large quantities of energy in the form of adenosine triphosphate. It is found in the cytoplasm of eukaryotic cells. 

Golgi Body

Why?

Because Only Eukaryotic structures have  membrane bound cells

The human heart, composed of specialized muscle cells, beats to a specific rhythm. The heart cell rhythm partly depends on the opening and closing of series of gateways within the cell membrane, called ion channels. Some channels let certain ions flow out, others let different ions flow in. The same membrane system is at work in other cells, helping to regulate what stays and what leaves the cell. This cell membrane gateway system is specifically called the

Answers

Sodium potassium pump

Answer:

Sodium-potassium pump.

Explanation:

Sodium and potassium pump is a cell membrane gateway system, present in all cells of the body and responsible for an active transport process that regulates the entry and exit of sodium potassium ions into and out of the cell. This exit and entry of ions is performed to prevent a concentration gradient between the intracellular and extracellular medium. As already mentioned, sodium and potassium pumps refer to an active type of transport, that is, they occur with energy expenditure.

Which term describes the area behind the membranous lining of the abdominopelvic cavity?

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The answer: Peritoneum.

The peritoneum is the serous membrane that lines the abdominopelvic cavity. This membrane is composed by two layers: parietal peritoneum and visceral peritoneum. This membrane supports the abdominal organs and serves as a channel for their blood, lymphatic vessels and nerves.






The animal cell did not have chloroplast. what can you infer about the animal cell?

Answers

  Chloroplasts are a plant's way of making energy. Plants are autotrophs, meaning they obtain their energy from food they make themselves. Obviously, unlike animals, plants can't eat other organisms, so they need chloroplasts to produce energy-rich nutrients. 

The most appropriate size needle for administering an im injection for a 200-lb male with a non-viscous solution is:

Answers

The appropriate needle size would be 1.5 in, 22 gauge to ensure intramuscular injection into the deltoid muscle. The skin at the site for the injection should be spread tight by using the thumb and forefinger; this helps in isolating the muscle. When administering the needle, it should be fully inserted into the muscle at a 90° angle.

Final answer:

For a 200-lb male, the appropriate needle size for an IM injection with a non-viscous solution is usually 1 to 1.5 inches in length and ranging from 22 to 25 gauge.

Explanation:

The most appropriate size needle for administering an IM injection for a 200-lb male with a non-viscous solution is typically a 1 to 1.5 inch long needle with a gauge size of 22 to 25. Given the patient's weight, a longer and thicker needle may be required to ensure the medication is injected into the muscle tissue proper. This choice also allows for the needle to penetrate the skin and subcutaneous tissue, which can be thicker in a person who weighs 200 pounds.

Describe the effect that exercise has on tidal volume, alveolar ventilation, and anatomical dead space compared to the resting rate based upon the data in the lab.

Answers

Exercise or any other physical activity, increases the oxygen demand in the lungs and affects the flow of air into the lungs.

Tidal Volume: The amount of air inspired (air that leaves or enters the lungs) during breathing is called tidal volume.  With the increase in physical activity such as exercise, the tidal volume increases to allow more gaseous exchange. During exercise, the amount of air to be inhaled increases, thus the tidal volume also increases.

Alveolar Ventilation: It is also known as alveolar volume. It is the amount of air that enters the alveoli in one minute. Alveolar ventilation also increases with the increase in the vital volume due to exercise. This is because oxygen demand increases during exercise.

Anatomical Dead Space: It refers to the air that is directed towards the alveoli but does not participate in the gaseous exchange It decreases during exercise due to increase in ventilation.

Exercising has a lot of effects on our body and brain. Physical exercise stimulates diverse brain chemicals that may have you feeling better and more relaxed. You will also feel happier about your appearance when you exercise regularly.

>Tidal Volume: This refers to the amount of air entering the lungs during breathing.  An increase in exercise results in tidal volume since this allows for a greater gaseous exchange.

 
>Alveolar Ventilation: Also called as alveolar volume, this refers to the amount of air in 1 minute that passes the alveoli. Just like tidal volume, alveolar ventilation increases with increasing exercise intensity.

>Anatomical Dead Space: This is the amount of air that enters the alveoli but has no direct participation in the gaseous exchange. This decreases during exercise due to an increase in ventilation. 
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