Answer:
Binds to a site on the enzyme that is not the active site. When this occurs, the shape of the enzyme is distorted
A competitive inhibitor is one that has a structure that is so similar to the substrate that it can attach to the enzyme in the same way as the substrate.
What is the structure of enzyme?Non-competitive inhibitors are those that bind to an enzyme location other than the active site.
Typically, an inhibitor binds to an amino acid side group at the active site through a covalent link, preventing the substrate from accessing the active site or inhibiting catalytic activity persistent inhibition.
The substrate and the competitive inhibitor fight for the enzyme's active site.
Therefore, the enzyme's structure is altered when the noncompetitive inhibitor is bound to it.
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Which of the following is a sustainable practice?
A. Throwing jars in the trash can
B. Flushing medicine down the toilet
C. Using only geothermal energy
D. Leaving trash bags at a local park
Answer: C. Using only geothermal energy.
Explanation:
Sustainable practices are those practices which are done to utilize the natural resources in a manner so that they will remain available for the future generation too.
The use of geothermal energy is a sustainable practice this is because of the fact that it is obtain from the geosphere. It is an alternative source of natural energy. The geothermal energy is obtain from water released from a hot spring. The ground water is heated up by the hot mantle present in the earth core. The underground force and pressure liberates hot water. This form of energy can be used for heating up the buildings, constructing a natural water bath and for other uses. The utilization of this form of energy is suitable for the conservation of conventional resources like fossil fuels which are used for the generation of thermal energy. By this manner the conventional resources will be available for the future generation.
The sustainable practice among the options provided is C. Using only geothermal energy. The correct option is option C.
Geothermal EnergyGeothermal energy is a renewable energy source used to produce electricity or heat structures by drawing heat from the Earth's core. As a clean, practically limitless source of energy that doesn't emit greenhouse gases or cause climate change, it is seen as sustainable. The word "geothermal" is derived from the Greek words "geo" meaning "earth" and "thermos" meaning "heat."
Geothermal energy can be used in a variety of ways, but the most popular one includes drilling deep wells into the Earth in order to access the hot water and steam reservoirs known as geothermal reservoirs. These reservoirs' heat energy can be used directly for heating or it can be used in geothermal power plants to create electricity.
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Organisms classified as fungi have unique characteristics. Which of the following characteristics is found only in organisms classified in the kingdom fungi?
A. single cells without a nucleus
B. multicellular with chloroplasts
C. multicellular filaments that absorb nutrients
D. colonies of single, photosynthetic cells that reproduce asexually
Answer is A. single cells without a nucleus
The characteristic that is found only in organisms classified in the kingdom fungi is that they have multicellular filaments that absorb nutrients. Thus, the correct option for this question is C.
What are the Kingdom fungi?The Kingdom Fungi may be defined as a type of kingdom that appears like a plant-like organism that does not make chlorophyll. It significantly includes Mushrooms, yeasts, and molds.
Fungi spend much of their lives with only a single nucleus. Except, that is when two filaments cross paths. When two lonely filaments find each other, the cells at the tip of the filaments fuse and form new structures that have two nuclei per cell.
They are eukaryotic, non-vascular, non-motile, and heterotrophic organisms. They may be unicellular or filamentous. They reproduce by means of spores.
Therefore, the characteristic that is found only in organisms classified in the kingdom fungi is that they have multicellular filaments that absorb nutrients. Thus, the correct option for this question is C.
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Please Help!!
How are planets affected by their location within the solar system?
• Shape of orbit
• Motion
• Temperature
The location of a planet within the solar system affects its orbit shape, motion, and temperature.
Explanation:In the solar system, the location of a planet affects the shape of its orbit, its motion, and its temperature.
The shape of a planet's orbit is determined by its distance from the Sun. Planets closer to the Sun have more elliptical (oval-shaped) orbits, while planets farther away have more circular orbits.
The motion of a planet is influenced by its position in the solar system. Inner planets, such as Mercury and Venus, have faster orbital speeds due to their proximity to the Sun. Outer planets, like Jupiter and Saturn, have slower orbital speeds.
The temperature of a planet is also impacted by its distance from the Sun. Planets closer to the Sun receive more solar energy, resulting in higher temperatures, while planets farther away receive less energy and have colder temperatures.
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The location of planets in the solar system affects their shape of orbit, motion, and temperature. The sun's gravity and the planet's distance from the sun mainly determine these characteristics. Closer planets have more circular orbits and move faster due to the sun's gravitational pull, and also have higher temperatures due to receiving more sunlight.
Explanation:The location of planets within the solar system significantly affects their shape of orbit, motion, and temperature. The gravity of the sun and the distance from it primarily determine these.
Shape of orbit: Most planets move in elliptical orbits. The nearer a planet is to the sun, the more circular its orbit tends to be because of the sun's stronger gravitational pull.
Motion: The speed at which a planet moves, or its orbital speed, is also reliant on its distance from the sun. Planets closer to the sun move faster than those further away due to the larger gravitational pull.
Temperature: The temperature of a planet is largely determined by how much sunlight it receives, which is directly associated with its distance from the sun. Planets that are closer to the sun are hotter, and those further away are colder.
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