What energy molecule is produced during the light reactions and helps to power the calvin cycle?

Answers

Answer 1
The energy molecules released during the light reactions are ATP and NADPH.
Answer 2

The Calvin cycle uses CO2 from the light reactions to make sugars, and the light reactions use the sugars made by the Calvin cycle to make ATP.

What is the importance of Calvin cycle in light reaction?

To create three-carbon sugars, the Calvin cycle reduces the power of NADPH from light-dependent processes while utilizing the chemical energy of ATP.

The Calvin cycle is a set of chemical events that occur in plants as carbon dioxide is reduced or converted into glucose.

The Calvin cycle, the latter phase of photosynthesis, produces sugars using ATP and NADPH from the light-dependent processes.

The energy-storing two molecules are then used in the light-independent processes.

Therefore, ATP and NADPH are energy molecule is produced during the light reactions and helps to power the Calvin cycle.

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Related Questions

Put the steps of muscle contraction in order from first (1) to last (5). The sarcomere shortens. Calcium ions are released by a nerve cell. The sarcomere is relaxed. Actin and myosin overlap completely. Actin and myosin are activated.

Answers

Answer:

The sarcomere is relaxed. Calcium ions are released by a nerve cell. Actin and myosin are activated. The sarcomere shortens. Actin and myosin overlap completely.

Explanation:

For muscle contraction to occur it is necessary that the brain first sends signals to motor neurons that will quickly establish contact with muscle fibers.

At that time, the axons close to the muscle fibers will lose the myelin sheath, as a result of which, the axons will dilate forming a kind of plaque called the motor plaque. The main function of this motor plate is to allow the motor nerves to connect to the muscles.

Simultaneously, the nervous impulse will reach the aconic terminations of the motor nerves. This will cause the release of acetylcholine over the muscle fibers causing an action potential to occur. After that, the actin and misin filaments contract, as a result the sarcomere becomes decreased and as it decreases it causes muscle contraction.

In summary, muscle contraction happens as follows:

The sarcomere is relaxed. Calcium ions are released by a nerve cell. Actin and myosin are activated. The sarcomere shortens. Actin and myosin overlap completely.

Muscle contraction is a complex process beginning with the release of calcium ions by a nerve cell. This leads to the activation of proteins actin and myosin, which then overlap completely. This activity shortens the sarcomere, resulting in muscle contraction, after which the sarcomere relaxes.

The process of muscle contraction involves several steps. Here is the order of these steps from first (1) to last (5):

Calcium ions are released by a nerve cell. An electrochemical signal from a nerve cell triggers the release of calcium ions.

Actin and myosin are activated. The released calcium ions bind to the proteins called troponin and tropomyosin on the actin filament, exposing the binding sites and enabling myosin heads to attach.

Actin and myosin overlap completely. The myosin heads temporarily bind to the actin filament, resulting in cross-bridge formation and filament sliding.

The sarcomere shortens. The sliding of filaments continues leading to the shortening of the sarcomere and muscle contraction.

The sarcomere is relaxed. Once calcium ions are removed, actin-binding sites are shielded again, resulting in muscle relaxation.

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Synovial joints are classified into six main categories based on:

Answers

The movement that they permit. There are more Synovial joints in the body than any other type of joints and their distinguishing fact is by how and the type of movement that the permit.The ability of a bone to move without any interruption in the body is done by a synovial joint and this is aided by the presence of cartilage and also a joint cavity. There are about six different types of this joint in the body and they are planar, hinge, pivot, condyloid, saddle finally ball and socket joints.
Final answer:

Synovial joints are categorized into six main types based on their shape and structure, determining the type of movement they allow: pivot, hin_ge, condyloid, saddle, plane, and ball-and-socket joints.

Explanation:

Classification of Synovial Joints:

Synovial joints are classified into six main categories based on the shape and structure of the articulating surfaces of the bones that form each joint. The types of synovial joints are pivot, hin_ge, condyloid, saddle, plane, and ball-and-socket joints. This classification is significant because the particular shape and structure of each joint determine the type of movement it permits.

Pivot joints allow for rotational movement around a single axis.Hin_ge joints enable bending and straightening motions like the movement of a door hin_ge.Condyloid joints permit movement but with less rotation than ball-and-socket joints.Saddle joints provide a range of movements including back-and-forth and side-to-side motions.Plane joints allow bones to slide or glide past each other in a gliding movement.Ball-and-socket joints offer the most freedom of movement, enabling rotation and movement in all directions.

Why was it important to examine both the color and the streak of your minerals? Think about streak and explain why it’s called a mineral’s “true color”. Answer in at least 2 sentences.

Answers

The streak is the colour presented by a mineral when put into powder, in other words, in its most isolated way. The colour of a mineral, when in a rock, may be influenced by its crystal conformation, other minerals in it, or even the cut. That's why, the streak is considered the "true colour" of a mineral. 

Answer:

"The streak is the colour presented by a mineral when put into powder, in other words, in its most isolated way. The colour of a mineral, when in a rock, may be influenced by its crystal conformation, other minerals in it, or even the cut. That's why, the streak is considered the "true colour" of a mineral."

Explanation:

The person above meis correct.

The increase in the population of people living in urban areas will cause a decrease in urban sprawl.
TRUE OR FALSE ???

Answers

false as urban sprawl will increase too

Answer:

False

Explanation:

Urban sprawl in general terms refers to the movement of people from densely populated city cores to its peripheral areas. These peripheral residential areas having low density and more living space per person is termed as Urban sprawl.  

Basically the urban sprawl can be understood as city expansion towards its fringes in order to provide cheap and larger accommodation space as compared to accommodation space with in the city.  

Thus , increase in the population of people living in urban areas will cause a increase in urban sprawl

When a vaccine is given to a person with a healthy immune system, what is the long-term result? your body has built up an ___________?

Answers

When a vaccine is given to a person with a healthy immune system, what is the long-term result? your body has built up an IMMUNITY 

Aline is sitting in a physician's office and has just been told that a nurse will be coming in to measure her bmi. aline is not familiar with the term bmi and starts to panic. how should her mother reassure her about bmi tests?

Answers

Aline's mother should reassure her just by explaining what BMI is. BMI stands for Body Mass Index or also known as Quetelet Index. It will do no harm to person, because it just need to measure the person's height and weight for the BMI to be computed.

Aline's mother can reassure her by explaining that BMI, or Body Mass Index, is just a simple way for the nurse to check whether Aline is at a healthy weight for her height.

The nurse will measure Aline's height and weight, and use these numbers to calculate her BMI. This is done by dividing Aline's weight in kilograms by the square of her height in meters:

 [tex]BMI = \frac{\text{weight} (kg)}{\text{height}^2 (m^2)}[/tex].

The BMI helps to quickly and inexpensively screen if someone might be underweight, at a healthy weight, or overweight, but it doesn't measure body fat directly.

Aline's mom can also explain that the BMI test is very common and there is nothing to worry about. It's simply a tool that helps doctors and nurses make sure Aline is healthy.

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Which statement describes the movement of water when a cell shrinks and shrivels due to osmosis?

A.Water went into the cell because the concentration of water inside the cell was lower than the concentration outside the cell.

B.Water went out of the cell because the concentration of water inside the cell was higher than the concentration outside the cell.

C.The cell membrane used energy to move water into the cell through passive transport.

D.The cell membrane used energy to move water out of the cell through passive transport.

Answers

I would put B as the answer.

Answer:

Water went out of the cell because the concentration of water inside the cell was higher than the concentration outside the cell.

Explanation: when there is a higher concentration of water inside the cell, water will begin to move out of the cell, eventually creating a hypertonic solution in which the cell shrivels and shrinks. So, yes the answer is B.

What is one way that microorganisms can be beneficial to humans?
A) Microorganisms cause disease.
B) Microorganisms decompose wood.
C) Microorganisms decay tooth enamel.
D) Microorganisms are used to produce foods.

Answers

i would think it was d 

PLEASE HELP ASAP !!!!!Which process occurs last in the Calvin cycle? A. splitting of water B. carbon fixation C. formation of an "excited' electron D. formation of NADPH

Answers

Calvin cycle is the second phase of photosynthesis that occurs in the stroma of chloroplast of plant cells. It is a light-independent cycle as it does not directly dependent on light. Calvin cycle is completed in 3 steps such as carbon fixation, reduction of ATP and NADPH and regeneration of glucose-3-phosphate molecules. All these steps involved in the Calvin cycle leads to the formation of sugar and regenaration of RuBP and PGAL. Thus, the last step of Calvin cycle is carbon fixation.

The last process in the Calvin cycle is the formation of NADPH, an energy-rich compound required for the conversion of carbon dioxide during photosynthesis.

The Calvin cycle is a sequence of biochemical reactions that occur in the chloroplasts of green plants during photosynthesis.

The final process in the Calvin cycle is the formation of NADPH. This happens after the carbon fixation stage and does not involve splitting of water or formation of an 'excited' electron.

NADPH is an energy-rich compound needed for the reduction of carbon dioxide during the Calvin cycle.

In essence, NADPH provides the necessary electrons required to convert inorganic carbon (CO2) to organic carbon (sugars), which the plant utilizes for energy.

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A student isolates an unknown bacterial sample from the bottom of a swamp area. The student discovers that this species of bacteria is able to live and grow in an oxygen-free environment, but it requires a nitrate-rich soil.

Which of the following types of respiration is this species of bacteria most likely using?

Answers

anaerobic respiration

Answer:

A.

anaerobic respiration

Explanation:

explain the effects of unregulated (or abnormal) cellular processes on the body

Answers

If cells are unregulated they can over proliferate and cause things like cancer. Abnormal cellular growth causes tumors and improper resource distribution. Unregulated cellular processes use up nutrition not readily available and can cause harm to cells around the tumor.

Who is responsible for an area of the prison, such as recreation or the shu?

Answers

"Lieutenants" responsible for an area of the prison, such as recreation or the shu.

The Secure Housing Unit or in short SHU, or isolation facility of a maximum security jail. While in fact, SHU can be utilized to portray any jail's isolation facility, it normally alludes to the unit of the Pelican Bay State Jail , situated in Folsom, California. The term SHU (articulated "SHOE") suggests the lodging unit itself and additionally the Draconian arrangements that contain its operations program. The objective of the program is to "screen, control and separate" around 1,200 of the most unstable and risky detainees in the California prison framework.

In female philopatric species, __________ form the core of the social the group.
a. females
b. males
c. a polyandrous family
d. a polygynandrous grouping

Answers

In female philopatric species, _______________ form the core of the social the group.


Answer: A. females 

                         Good luck and have a nice Benevolentpuppy day! :D

Melatonin release is stimulated by ________ and inhibited by ________.

Answers

Answer:

darkness; light

Explanation:

Made by the body, melatonin not only regulates bedtime but also helps repair our cells exposed to stress, pollution and other harmful elements. It is a powerful antioxidant and fights free radicals that attack the body. In sync with the end of the day and the light, it is now released to prepare the body for the night. This is because the release of melatonin is stimulated by darkness and inhibited by light.

Melatonin release is stimulated by darkness and inhibited by light.

Melatonin release, a hormone that plays a critical role in regulating the sleep-wake cycle, is influenced by environmental light conditions. It is stimulated by darkness and inhibited by light.

In the absence of light, particularly during the evening and nighttime, the pineal gland, located in the brain, is stimulated to produce and release melatonin. This surge in melatonin levels helps signal to the body that it's time to prepare for sleep.

Conversely, exposure to light, especially in the morning and daytime, suppresses melatonin production. The pineal gland receives signals from the eyes regarding ambient light levels, which in turn helps regulate the body's circadian rhythm. This light-dependent control of melatonin secretion supports alertness and wakefulness during daylight hours.

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When the archer releases the arrow, the energy in the bow string transforms into
energy for the arrow.

Answers

It would be Kinetic energy because kinetic energy is when a object is moving so in your question kinetic energy is in when the person let's go of the string and when it launches the arrow.

Your answer is Kinetic energy.

Identify the true statements regarding the heme group of myoglobin and hemoglobin

Answers

The true statements are:

A heme group contains four pyrrole rings, which are linked via methene (methine) bridges.The heme group is conjugated.The globin chains of myoglobin and hemoglobin prevent the oxidation of Fe2 to Fe3, which irreversibly binds oxygen.The cooperativity of oxygen binding in hemoglobin arises from electronic interactions between heme groups.The iron in the heme group can form six bonds: The fifth is with an imidazole ring of a histidine, and the sixth is with oxygen.

The heme group is a crucial component of myoglobin and hemoglobin, playing a central role in oxygen binding and release. Consisting of a porphyrin ring with an iron (Fe) ion at its center, the heme group exhibits several characteristics that contribute to its function.

Firstly, the heme group comprises four pyrrole rings linked via methene bridges, creating a conjugated system. This conjugation is essential for the efficient absorption and release of oxygen. The iron at the center of the heme group can form six bonds, with the fifth bond established with an imidazole ring of a histidine and the sixth with oxygen during oxygen binding.

The globin chains of myoglobin and hemoglobin surround and protect the heme group, preventing the oxidation of Fe2 to Fe3. This protection is crucial, as Fe3 irreversibly binds oxygen, interfering with the oxygen-carrying capacity of these proteins.

The cooperativity of oxygen binding in hemoglobin is facilitated by electronic interactions between heme groups. Hemoglobin exhibits a transition between the relaxed (R) state, which has higher oxygen affinity, and the tense (T) state with lower affinity. This transition is influenced by the length of Fe–Nporphyrin bonds in the heme group, with the T state having longer bonds and lower affinity for oxygen.

Additionally, it's important to note that hemoglobin contains four heme groups, each capable of binding one molecule of oxygen. Together, these characteristics highlight the intricate and finely tuned nature of the heme group, allowing myoglobin and hemoglobin to effectively transport and release oxygen in response to varying physiological conditions.

Complete question:

Identify the true statements regarding the heme group of myoglobin and hemoglobin. ( Hint: there are 5 correct answers)

A heme group contains four pyrrole rings, which are linked via methene (methine) bridges.The heme group is conjugated.The globin chains of myoglobin and hemoglobin prevent the oxidation of Fe2 to Fe3 , which irreversibly binds oxygen.The cooperativity of oxygen binding in hemoglobin arises from electronic interactions between heme groups.The T state of hemoglobin has lower affinity for O2 than the R state because the Fe–Nporphyrin bonds are longer.Hemoglobin contains four heme groups.The iron in the heme group can form six bonds: The fifth is with an imidazole ring of a histidine and the sixth is with oxygen.

In a cross between these two plants (mmddpp x mmddpp), all offspring in the f1 generation are wild type and heterozygous for all three traits (mmddpp). now suppose you perform a testcross on one of the f1 plants (mmddpp x mmddpp). the f2 generation can include plants with these eight possible phenotypes: solid, normal, smooth solid, normal, peach solid, dwarf, smooth solid, dwarf, peach mottled, normal, smooth mottled, normal, peach mottled, dwarf, smooth mottled, dwarf, peach assuming that the three genes undergo independent assortment, predict the phenotypic ratio of the offspring in the f2 generation. hints

Answers

Assuming that the three genes undergo independent assortment, predict the phenotypic ratio of the offspring in the F2generation.
DOMINAT TRAITS

solid leaves (MM),

normal height (DD),

smooth skin (PP).

recessive TRAITS

leaves (mm),

dwarf height

(dd), and

peach skin (pp)

what are the possible consequences of defective collagen fibers of specific organs and tissues

Answers

Among the implications of defective collagen fibers is the deterioration of the skin cells. It gets flaky, inflamed, and more prone to sun damage. A lot of times, collagen deficiency disorders are called Joint Disorders because joint mobility depends on the function of these collagen fibers. It can even cause heart diseases by contributing to its arterial behavior and its capacity for relaxation

The synaptic knob releases acetylcholine into the synaptic cleft, which is received by receptors on the motor end plate. which structure does this describe

Answers

It portrays the neuromuscular junction of a skeletal muscle. 
The breakdown items are consumed by the pre-synaptic neuron by endocytosis and used to re-combine more neurotransmitter, utilizing vitality from the mitochondria. The Cytoplasm in the Synaptic Knob has a high extent of specific organelles. These incorporate smooth endoplasmic reticulum, mitochondria, and vesicles.

Horses are unlike dogs and cats in that a large amount of digestion and absorption in these hindgut fermenters occurs in the
A. cecum.
B. rectum.
C. ileum.
D. jejunum.

Answers

The correct option is A.
Horse are herbivores, they eat plants. Large amount of the digestion and absorption of these plant materials occur in the cecum. Horses have enlarged cecum which helps in the digestion process of their food.

how does plants get the necessary reactants to make sugar

Answers

Plants get CO2 by gaseous exchange, water from the soil, and required energy by photolysis of water to make sugar.
I believe the answer is: The air and the environment

In what form will Susan be able to capture that phosphorous as it is released from the sedimentary rock?

phosphorous granules
phosphate powder
soluble phosphate
soluble phosphorous

Answers

the answer is soluble phosphorous

Correct answer: D). Soluble phosphorous

Sedimentary rocks are the form of rocks that are known to formed by the sedimentation and deposition of organic particles on the floor of oceans or on the water bodies.

Soluble phosphorous is a measure of orthophosphate,  which the most stable type of phosphate and it is directly used by the plants.




What compound provides the reducing power for the calvin cycle reactions?
a. atp
b. nad+
c. nadh
d. nadp+
e. nadph?

Answers

The correct option is E.
NADPH provides the reducing power for the Calvin cycle reactions.
Calving cycle is a series of chemical reactions which take place in the chloroplast during the photosynthesis reaction. The reactions occur in the dark and it involves using NADPH as a reducing agent which add high energy electrons to carbon dioxide to form sugar.

Hypothesize why parts of a plant, such as the leaves, are green, but other parts, such as the roots, are not. Use scientific reasoning to support your hypothesis.

Answers

Leaves are green because they contain a green pigment.

In the parlance of science, a hypothesis is a tentative explanation which must be testable.

In this case, i have hypothesized that the reason for the green color of leaves is the presence of a green pigment.

I must now subject the leaves, root and back of the tree to laboratory experiments to see if this pigment can only be extracted from the leaves.

If indeed, this pigment can only be extracted from plant leaves then the hypothesis is found to be true.

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Explain why glucose consumption must increase in hypoxic tissues to provide the same amount of atp that could be produced from glucose in normoxic (normal o2 levels) tissues.

Answers

When the body hypoxic it means that it has low oxygen level and could not doing the aerobic respiration chemical reaction. To produce energy the body will do the anaerobic reaction instead. 
When doing the aerobic respiration, the body can get up to 38 ATP per molecule of glucose but it only gets 2 ATP for anaerobic respiration. Since the net yield of ATP is lower in hypoxic/anaerobic, you will need a higher amount (up to 19 times) more glucose to get the same amount of energy produced by aerobic/normoxic.

Glucose consumption must increase in hypoxic tissues to provide the same amount of ATP that could be produced from glucose in normoxic (normal O2 levels) tissues. This is because the net yield of ATP in anaerobic condition is less as compared to aerobic condition.

Further Explanation:

The lactose and glucose are the energy source. The breakdown of glucose involves fewer steps and comparatively less energy, therefore glucose is the prime source of energy. In glucose absence, the bacteria use lactose for energy.

When the tissue is hypoxic, it means that it has a low level of oxygen and could not precede the aerobic respiration and chemical reaction. To produce energy the body will do the anaerobic reaction instead. The anaerobic reaction allows the breaks down of glucose and provides energy without consuming oxygen.

When doing aerobic respiration, the body can get up to thirty-eight ATP per molecule of glucose but it only gets two ATP for anaerobic respiration. Since, the net yield of ATP is lower in hypoxic or anaerobic condition. The aerobic condition means breakdown of glucose in the presence oxygen and it yield high amount of ATP. In anaerobic conditions, to get equal amount of energy as an aerobic reaction, then require large amount of glucose in comparison to aerobic reaction.

Learn more:

Learn more about carbohydrate monomer https://brainly.com/question/6947177 Learn more about core muscle stabilization https://brainly.com/question/1231927 Learn more about energy storage https://brainly.com/question/523624

Answer Details:

Grade: High School

Subject: Biology

Topic: Hypoxia

Keywords:

Cardiorespiratory exercise, oxygen, intensity, aerobic reaction, ATP, anaerobic condition, hypoxic, chemical reaction, breakdown, glucose, lactose,  energy, respiration.

what physical property makes wax good for making molds for making sculptures?

Answers

The physical property which makes wax good for making molds for making sculptures is the "malleability".
This is the physical property of wax which allows it to deform under pressure and lets it take various shapes without cracking. That is why wax models are seen mostly flawless and complete looking models.

4. Evapotranspiration occurs when
5. Condensation occurs when

Answers

Evapotranspiration is the combined name for the processes of evaporation and transpiration It can also refer to direct evaporation of liquid water from the leaf surface of the plant. Transpiration happens when plants release water vapor from tiny holes, called stomata, in their leaves 

Our solar system is thought to have started with the birth of our Sun, which formed from a cloud of interstellar dust and gas. This cloud condensed and eventually collapsed from its own gravitational pull. The heat and pressure built up, forming a protostar. Eventually nuclear fusion began. Planets formed from remaining dust and gas orbiting the protostar.

This explanation best describes _____.
the nebular theory
the big bang theory
the inflation theory
the condensation theory

Answers

The correct option is (A). The given explanation regarding the formation of our solar system best describes the nebular theory.

The nebular theory explains the formation of our solar system, it suggests that:

The Sun and planets formed from a rotating cloud of interstellar dust and gas, called a nebula. The nebula condensed under its own gravity, leading to a collapse that increased heat and pressure, forming a protostar at its center. When temperatures were sufficient, nuclear fusion ignited, creating the Sun. The remaining material flattened into a rotating disk, where particles collided and stuck together, gradually forming planets, moons, and other solar system bodies.

The other options are incorrect because:

B. The big bang theory describes the origin of the universe, not the formation of the solar system.C. The inflation theory explains a rapid expansion of the universe shortly after the big bang, not the solar system's formation.D. The condensation theory is an outdated model that doesn't adequately explain the formation of the solar system.

The correct question is:

Our solar system is thought to have started with the birth of our Sun, which formed from a cloud of interstellar dust and gas. This cloud condensed and eventually collapsed from its own gravitational pull. The heat and pressure built up, forming a protostar. Eventually nuclear fusion began. Planets formed from remaining dust and gas orbiting the protostar.

This explanation best describes _____.

A. the nebular theory

B. the big bang theory

C. the inflation theory

D. the condensation theory

Bart was hit by a baseball at the back of his head and is now having severe difficulties with his vision. this is because the baseball hit his _____ lobe.

Answers

Occipital The Occipital lobe of the brain is that part of the brain that handles vision. It's the smallest of the four paired lobes in the brain (occipital, temporal, parietal, and frontal) and it's named after the Occipital bone which it lies underneath.

Of the six categories of nutrients, which three produce energy when they're consumed?
A. Lipids, vitamins, and proteins
B. Proteins, lipids, and minerals
C. Carbohydrates, lipids, and proteins
D. Minerals, carbohydrates, and proteins

Answers

It would be C. Carbohydrates, lipids, and proteins.

Why? Lipids store fat, carbohydrates regulate sugar and energy, and proteins do the functions of the cells.
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