Understand organisms' energy use - AP Biology
Card 1 of 126
Which is true of ectotherms?
Which is true of ectotherms?
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Ectotherms do not regulate their body temperature; their body temperature fluctuates due to their external environment.
Ectotherms do not regulate their body temperature; their body temperature fluctuates due to their external environment.
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Which is not a method that endotherms may use to regulate their body temperature in a cold environment?
Which is not a method that endotherms may use to regulate their body temperature in a cold environment?
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Vasodilation allows more heat to escape via the blood vessels. Thus, in a cold environment, this would be counterproductive. Vasoconstriction shrinks the blood vessels so that less heat escape. Shivering thermogenesis produces heat by converting ATP to kinetic energy. Thermoregulation is the term describing organisms maintaining their internal body temperature.
Vasodilation allows more heat to escape via the blood vessels. Thus, in a cold environment, this would be counterproductive. Vasoconstriction shrinks the blood vessels so that less heat escape. Shivering thermogenesis produces heat by converting ATP to kinetic energy. Thermoregulation is the term describing organisms maintaining their internal body temperature.
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A lizard warms himself up on a rock that has been out in the sun. When the sun sets, his body temperature drops back down. Is the lizard endothermic or exothermic?
A lizard warms himself up on a rock that has been out in the sun. When the sun sets, his body temperature drops back down. Is the lizard endothermic or exothermic?
Tap to reveal answer
Endothermic organisms can regulate their own body temperature via internal regulation mechanisms independent of environmental factors. For example, a dog is able to cool itself down in the heat of day by panting. Exothermic organisms cannot internally regulate their own body temperature. Rather, they have external regulation, and they depend on environmental factors. The lizard mentioned cannot regulate his own body temperature. In order to warm up, he must find sunlight and heat to increase his body temperature; in order to cool down he may find shade or seek refuge underground. Exothermic organisms are extremely dependent on climate to carry out life functions.
Endothermic organisms can regulate their own body temperature via internal regulation mechanisms independent of environmental factors. For example, a dog is able to cool itself down in the heat of day by panting. Exothermic organisms cannot internally regulate their own body temperature. Rather, they have external regulation, and they depend on environmental factors. The lizard mentioned cannot regulate his own body temperature. In order to warm up, he must find sunlight and heat to increase his body temperature; in order to cool down he may find shade or seek refuge underground. Exothermic organisms are extremely dependent on climate to carry out life functions.
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Which of the following best explains the principle of allocation with regards to energy?
Which of the following best explains the principle of allocation with regards to energy?
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The principle of allocation, in regards to energy, states that energy spent doing one activity takes away the energy that could be spent doing other activities. For example, if an organism expends energy chasing prey, the organism will be tired and will have less energy to carry out other functions.
The principle of allocation, in regards to energy, states that energy spent doing one activity takes away the energy that could be spent doing other activities. For example, if an organism expends energy chasing prey, the organism will be tired and will have less energy to carry out other functions.
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Which law of thermodynamics states that there will always be an increase in entropy due to some energy not being able to be utilized in a reaction and lost from the system?
Which law of thermodynamics states that there will always be an increase in entropy due to some energy not being able to be utilized in a reaction and lost from the system?
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The Second Law of Thermodynamics states that during an reaction that some energy will not be completely transferred and will ultimately be lost as heat to increase the entropy of the universe.
The Second Law of Thermodynamics states that during an reaction that some energy will not be completely transferred and will ultimately be lost as heat to increase the entropy of the universe.
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In the following scenarios, which organism is likely an ectotherm?
In the following scenarios, which organism is likely an ectotherm?
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An ectotherm relies on external sources to regulate its body temperature. The snake lies on the dark rock to absorb heat energy from the sun, to warm its body during the cool day. Animals that hibernate, such as bears, cannot be ectotherms. Hibernating animals downregulate their body’s metabolism and thus body temperature; ectotherms cannot control their body temperature. Humans are endotherms, and like other endotherms, shiver when cold to increase their body temperature through expending energy (“shivering thermogenesis”). Dogs are endotherms, and pant when hot to cool their body temperature by expelling heat.
An ectotherm relies on external sources to regulate its body temperature. The snake lies on the dark rock to absorb heat energy from the sun, to warm its body during the cool day. Animals that hibernate, such as bears, cannot be ectotherms. Hibernating animals downregulate their body’s metabolism and thus body temperature; ectotherms cannot control their body temperature. Humans are endotherms, and like other endotherms, shiver when cold to increase their body temperature through expending energy (“shivering thermogenesis”). Dogs are endotherms, and pant when hot to cool their body temperature by expelling heat.
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Which is true of endotherms?
Which is true of endotherms?
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Endotherms maintain a relatively constant body temperature, independent of their external environment. They can shiver when cold to increase their body temperature through expending energy (“shivering thermogenesis”).
Endotherms maintain a relatively constant body temperature, independent of their external environment. They can shiver when cold to increase their body temperature through expending energy (“shivering thermogenesis”).
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Compared to ectotherms, endotherms have a
Compared to ectotherms, endotherms have a
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An ectotherm relies on external sources to regulate its body temperature. Endotherms maintain a relatively constant body temperature, independent of their external environment. To regulate their body temperature, endotherms have a higher
An ectotherm relies on external sources to regulate its body temperature. Endotherms maintain a relatively constant body temperature, independent of their external environment. To regulate their body temperature, endotherms have a higher
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Which is not true of endothermic organisms?
Which is not true of endothermic organisms?
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Endotherms regulate their body temperature, keeping it within a narrow range. To do this, they require a large amount of energy (food), more than exotherms which do not regulate their own body temperature and thus have a lower energy requirement.
Endotherms regulate their body temperature, keeping it within a narrow range. To do this, they require a large amount of energy (food), more than exotherms which do not regulate their own body temperature and thus have a lower energy requirement.
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A lizard warms himself up on a rock that has been out in the sun. When the sun sets, his body temperature drops back down. Is the lizard endothermic or exothermic?
A lizard warms himself up on a rock that has been out in the sun. When the sun sets, his body temperature drops back down. Is the lizard endothermic or exothermic?
Tap to reveal answer
Endothermic organisms can regulate their own body temperature via internal regulation mechanisms independent of environmental factors. For example, a dog is able to cool itself down in the heat of day by panting. Exothermic organisms cannot internally regulate their own body temperature. Rather, they have external regulation, and they depend on environmental factors. The lizard mentioned cannot regulate his own body temperature. In order to warm up, he must find sunlight and heat to increase his body temperature; in order to cool down he may find shade or seek refuge underground. Exothermic organisms are extremely dependent on climate to carry out life functions.
Endothermic organisms can regulate their own body temperature via internal regulation mechanisms independent of environmental factors. For example, a dog is able to cool itself down in the heat of day by panting. Exothermic organisms cannot internally regulate their own body temperature. Rather, they have external regulation, and they depend on environmental factors. The lizard mentioned cannot regulate his own body temperature. In order to warm up, he must find sunlight and heat to increase his body temperature; in order to cool down he may find shade or seek refuge underground. Exothermic organisms are extremely dependent on climate to carry out life functions.
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Which of the following best explains the principle of allocation with regards to energy?
Which of the following best explains the principle of allocation with regards to energy?
Tap to reveal answer
The principle of allocation, in regards to energy, states that energy spent doing one activity takes away the energy that could be spent doing other activities. For example, if an organism expends energy chasing prey, the organism will be tired and will have less energy to carry out other functions.
The principle of allocation, in regards to energy, states that energy spent doing one activity takes away the energy that could be spent doing other activities. For example, if an organism expends energy chasing prey, the organism will be tired and will have less energy to carry out other functions.
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Which law of thermodynamics states that there will always be an increase in entropy due to some energy not being able to be utilized in a reaction and lost from the system?
Which law of thermodynamics states that there will always be an increase in entropy due to some energy not being able to be utilized in a reaction and lost from the system?
Tap to reveal answer
The Second Law of Thermodynamics states that during an reaction that some energy will not be completely transferred and will ultimately be lost as heat to increase the entropy of the universe.
The Second Law of Thermodynamics states that during an reaction that some energy will not be completely transferred and will ultimately be lost as heat to increase the entropy of the universe.
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In the following scenarios, which organism is likely an ectotherm?
In the following scenarios, which organism is likely an ectotherm?
Tap to reveal answer
An ectotherm relies on external sources to regulate its body temperature. The snake lies on the dark rock to absorb heat energy from the sun, to warm its body during the cool day. Animals that hibernate, such as bears, cannot be ectotherms. Hibernating animals downregulate their body’s metabolism and thus body temperature; ectotherms cannot control their body temperature. Humans are endotherms, and like other endotherms, shiver when cold to increase their body temperature through expending energy (“shivering thermogenesis”). Dogs are endotherms, and pant when hot to cool their body temperature by expelling heat.
An ectotherm relies on external sources to regulate its body temperature. The snake lies on the dark rock to absorb heat energy from the sun, to warm its body during the cool day. Animals that hibernate, such as bears, cannot be ectotherms. Hibernating animals downregulate their body’s metabolism and thus body temperature; ectotherms cannot control their body temperature. Humans are endotherms, and like other endotherms, shiver when cold to increase their body temperature through expending energy (“shivering thermogenesis”). Dogs are endotherms, and pant when hot to cool their body temperature by expelling heat.
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Which is true of endotherms?
Which is true of endotherms?
Tap to reveal answer
Endotherms maintain a relatively constant body temperature, independent of their external environment. They can shiver when cold to increase their body temperature through expending energy (“shivering thermogenesis”).
Endotherms maintain a relatively constant body temperature, independent of their external environment. They can shiver when cold to increase their body temperature through expending energy (“shivering thermogenesis”).
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Compared to ectotherms, endotherms have a
Compared to ectotherms, endotherms have a
Tap to reveal answer
An ectotherm relies on external sources to regulate its body temperature. Endotherms maintain a relatively constant body temperature, independent of their external environment. To regulate their body temperature, endotherms have a higher
An ectotherm relies on external sources to regulate its body temperature. Endotherms maintain a relatively constant body temperature, independent of their external environment. To regulate their body temperature, endotherms have a higher
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Which is not true of endothermic organisms?
Which is not true of endothermic organisms?
Tap to reveal answer
Endotherms regulate their body temperature, keeping it within a narrow range. To do this, they require a large amount of energy (food), more than exotherms which do not regulate their own body temperature and thus have a lower energy requirement.
Endotherms regulate their body temperature, keeping it within a narrow range. To do this, they require a large amount of energy (food), more than exotherms which do not regulate their own body temperature and thus have a lower energy requirement.
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Which is true of ectotherms?
Which is true of ectotherms?
Tap to reveal answer
Ectotherms do not regulate their body temperature; their body temperature fluctuates due to their external environment.
Ectotherms do not regulate their body temperature; their body temperature fluctuates due to their external environment.
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Which is not a method that endotherms may use to regulate their body temperature in a cold environment?
Which is not a method that endotherms may use to regulate their body temperature in a cold environment?
Tap to reveal answer
Vasodilation allows more heat to escape via the blood vessels. Thus, in a cold environment, this would be counterproductive. Vasoconstriction shrinks the blood vessels so that less heat escape. Shivering thermogenesis produces heat by converting ATP to kinetic energy. Thermoregulation is the term describing organisms maintaining their internal body temperature.
Vasodilation allows more heat to escape via the blood vessels. Thus, in a cold environment, this would be counterproductive. Vasoconstriction shrinks the blood vessels so that less heat escape. Shivering thermogenesis produces heat by converting ATP to kinetic energy. Thermoregulation is the term describing organisms maintaining their internal body temperature.
← Didn't Know|Knew It →
A lizard warms himself up on a rock that has been out in the sun. When the sun sets, his body temperature drops back down. Is the lizard endothermic or exothermic?
A lizard warms himself up on a rock that has been out in the sun. When the sun sets, his body temperature drops back down. Is the lizard endothermic or exothermic?
Tap to reveal answer
Endothermic organisms can regulate their own body temperature via internal regulation mechanisms independent of environmental factors. For example, a dog is able to cool itself down in the heat of day by panting. Exothermic organisms cannot internally regulate their own body temperature. Rather, they have external regulation, and they depend on environmental factors. The lizard mentioned cannot regulate his own body temperature. In order to warm up, he must find sunlight and heat to increase his body temperature; in order to cool down he may find shade or seek refuge underground. Exothermic organisms are extremely dependent on climate to carry out life functions.
Endothermic organisms can regulate their own body temperature via internal regulation mechanisms independent of environmental factors. For example, a dog is able to cool itself down in the heat of day by panting. Exothermic organisms cannot internally regulate their own body temperature. Rather, they have external regulation, and they depend on environmental factors. The lizard mentioned cannot regulate his own body temperature. In order to warm up, he must find sunlight and heat to increase his body temperature; in order to cool down he may find shade or seek refuge underground. Exothermic organisms are extremely dependent on climate to carry out life functions.
← Didn't Know|Knew It →
Which of the following best explains the principle of allocation with regards to energy?
Which of the following best explains the principle of allocation with regards to energy?
Tap to reveal answer
The principle of allocation, in regards to energy, states that energy spent doing one activity takes away the energy that could be spent doing other activities. For example, if an organism expends energy chasing prey, the organism will be tired and will have less energy to carry out other functions.
The principle of allocation, in regards to energy, states that energy spent doing one activity takes away the energy that could be spent doing other activities. For example, if an organism expends energy chasing prey, the organism will be tired and will have less energy to carry out other functions.
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