- Burning of fossil fuels
- Ocean uptake
- Ocean loss
- Photosynthesis
- Plant respiration
- Animal respiration
- Soil respiration / decomposition by bacteria
- Volcanic activity
- Litter fall
Select the correct answer from each drop-down menu.
Fiona is writing a book on coral life. She is writing about the feeding pattern of corals. Help her complete the sentences.
as a byproduct of cellular respiration. The
The corals produce
and provide organic molecules as food to the corals.
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utilize this to carry out photosynthesis,
Fiona is writing a book on coral life. She is writing about the feeding pattern of corals. The corals produce as a byproduct of cellular respiration. The corals produce organic molecules and provide organic molecules as food to the corals. The corals utilize this to carry out photosynthesis.
Photosynthesis is the process in which plants, algae, and some bacteria convert light energy into chemical energy that they use to make food molecules from carbon dioxide and water. The feeding pattern of corals is symbiotic. In this pattern, a photosynthetic partner lives inside the coral's tissues.
The photosynthetic partner is either algae or photosynthetic bacteria. The photosynthetic partner uses the coral's waste products, mainly carbon dioxide and nitrogen, to make food molecules using light energy from the sun. These food molecules are then passed on to the coral.
The coral, in turn, provides the photosynthetic partner with nutrients in the form of ammonium, nitrate, and phosphorus. The organic molecules produced by the corals are used to provide energy to the corals. The corals use this energy to carry out various metabolic processes.
Some of these processes include cellular respiration, growth, and reproduction. The corals also use the energy to build their exoskeletons, which are made up of calcium carbonate. The corals utilize the organic molecules produced by the photosynthetic partner to carry out photosynthesis. Photosynthesis is the process in which the photosynthetic partner converts light energy into chemical energy.
The chemical energy is stored in the form of glucose. The corals then use this glucose to carry out metabolic processes. The relationship between the corals and the photosynthetic partner is mutualistic. The photosynthetic partner provides the coral with food, and the coral provides the photosynthetic partner with nutrients. This relationship is crucial for the survival of the coral reefs.
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How are pressure measurements related to weather prediction?
A. stable pressure indicates snowy weather
B. Low pressure indicates stormy weather
C. High, and also increasing, pressure indicates stormy weather
D. Decreasing pressure indicates a change in weather
B. Low pressure indicates stormy weather is how pressure measurements are related to weather prediction.
Weather forecasting involves utilizing technology and scientific expertise to predict the atmospheric conditions that will prevail in a specific location. Low-pressure areas, characterized by thinner air, are typically associated with specific wind patterns.
The movement of winds in these regions often results in the ascent of air, leading to cloud formation and condensation. Storms occurring in low-pressure areas tend to exhibit well-organized structures.
Active weather conditions are primarily caused by low-pressure systems. The relatively lighter air in these areas has a tendency to rise, leading to the creation of an unstable atmosphere.
Low-pressure systems are responsible for inducing active weather patterns, including gusty winds and rainfall, as well as potentially severe weather events.
Thus, option B is the correct answer.
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How does the cardiovascular system and respiratory system work with each other?
Generally speaking, what is the direct function (purpose) of an action potential travelling down a skeletal muscle fiber?
a. To allow tropomyosin to unwind off of actin
b. To allow for the myosin heads to cycle
c. To allow calcium out of the SR
d. To open voltage gated sodium channels
The direct function of an action potential traveling down a skeletal muscle fiber is to allow for the myosin heads to cycle.
The correct answer is option B.
An action potential is an electrical signal that propagates along the membrane of a muscle fiber, triggering a series of events known as excitation-contraction coupling, which leads to muscle contraction. This process involves the interaction between the action potential, calcium ions, and the proteins within the muscle fiber.
When an action potential reaches the skeletal muscle fiber, it travels along the T-tubules, which are invaginations of the cell membrane that penetrate deep into the muscle fiber. These T-tubules are in close proximity to the sarcoplasmic reticulum (SR), a specialized network of tubules that stores calcium ions.
As the action potential reaches the T-tubules, it causes voltage-gated calcium channels on the SR to open. This allows calcium ions to flow out of the SR and into the muscle fiber's cytoplasm. The sudden increase in calcium concentration triggers the interaction between actin and myosin, the two proteins responsible for muscle contraction.
Calcium binds to the regulatory protein called troponin, which causes tropomyosin (not tropomyosin itself) to undergo a conformational change. This conformational change exposes the binding sites on actin, allowing the myosin heads to bind to actin and form cross-bridges.
Once the myosin heads are bound to actin, they undergo a series of cyclical interactions known as the cross-bridge cycle. This cycle involves the myosin heads pulling on the actin filaments, causing them to slide past each other and resulting in muscle contraction.
In summary, the primary function of an action potential traveling down a skeletal muscle fiber is to initiate the release of calcium ions from the sarcoplasmic reticulum. The presence of calcium allows for the interaction between actin and myosin, enabling the myosin heads to cycle and generate the force necessary for muscle contraction.
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