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* '''Animals (normal)'''
 
* '''Animals (normal)'''
* '''Animals (weird ones like jellyfish and coral)''': Randall's categorization of animals as "normal" or "weird" can be seen as a simplified version of the {{w|Great chain of being}}, a philosophical framework in which humans are seen as the most "advanced" form of life, followed by a divine or otherwise justified hierarchy of progressively lesser life-forms (mammals, birds, fish, lizards, insects, and so on). Categorizing weird animals was already done in [[1587: Food Rule]]. Corals may be considered as lying between animals and fungi because corals, like, fungi and plants, are {{w|Sessility (motility)|sessile}}, i.e., they "grow" in one place. Jellyfish are not sessile, but {{w|Cnidaria#Basic_body_forms|many jellyfish are very similar to corals}} in different generations. The more unlike ourselves that creatures are, the more incomprehensible their 'lives' are to casual inspection - whilst being definitely alive and officially members of the Animal Kingdom, {{w|Sponge#Coordination of activities|some creatures}} can be very weird indeed.
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* '''Animals (weird ones like jellyfish and coral)''': Randall's categorization of animals as "normal" or "weird" can be seen as a simplified version of the {{w|Great chain of being}}, a philosophical framework in which humans are seen as the most "advanced" form of life, followed by a divine or otherwise justified hierarchy of progressively lesser life-forms (mammals, birds, fish, lizards, insects, and so on). Categorizing weird animals was already done in [[1587: Food Rule]]. Corals may be considered as lying between animals and fungi because corals, like, fungi and plants, are {{w|Sessility (motility)|sessile}}, i.e., they "grow" in one place. Jellyfish are not sessile, but {{w|Cnidaria#Basic_body_forms|many jellyfish are the same species as corals}} in different generations. The more unlike ourselves that creatures are, the more incomprehensible their 'lives' are to casual inspection - whilst being definitely alive and officially members of the Animal Kingdom, {{w|Sponge#Coordination of activities|some creatures}} can be very weird indeed.
 
* '''{{w|Fungi}}''': Fungi represent a unique lineage of eukaryotic, mostly multicellular organisms. Although historically studied by botanists specializing in the sub-discipline "mycology", modern scholarship places fungi in the "opisthokont" lineage, which contains both the animals and the fungi. Fungi, like animals, cannot make complex organic molecules from carbon dioxide, and must consume organic molecules as food to survive. Like plants, fungi are typically unable to move on their own. The various types of fungi include mushrooms, yeasts, rusts, smuts, and molds. Fungi evolution is also referenced in [[1749: Mushrooms]].
 
* '''{{w|Fungi}}''': Fungi represent a unique lineage of eukaryotic, mostly multicellular organisms. Although historically studied by botanists specializing in the sub-discipline "mycology", modern scholarship places fungi in the "opisthokont" lineage, which contains both the animals and the fungi. Fungi, like animals, cannot make complex organic molecules from carbon dioxide, and must consume organic molecules as food to survive. Like plants, fungi are typically unable to move on their own. The various types of fungi include mushrooms, yeasts, rusts, smuts, and molds. Fungi evolution is also referenced in [[1749: Mushrooms]].
 
* '''{{w|Plant}}s''': Those often green<sup><nowiki>[</nowiki>{{w|Viridiplantae|citation needed}}<nowiki>]</nowiki></sup>, often leafy things outside your current isolation dwelling, sometimes inside, next to the window.  They are primarily distinguished from other eukaryotes by being able to use photosynthesis to convert water, carbon dioxide and energy from light into sugar and free oxygen.
 
* '''{{w|Plant}}s''': Those often green<sup><nowiki>[</nowiki>{{w|Viridiplantae|citation needed}}<nowiki>]</nowiki></sup>, often leafy things outside your current isolation dwelling, sometimes inside, next to the window.  They are primarily distinguished from other eukaryotes by being able to use photosynthesis to convert water, carbon dioxide and energy from light into sugar and free oxygen.
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===Things ranked as not alive===
 
===Things ranked as not alive===
 
* '''{{w|Prions}}''': Prions are misfolded proteins that cause other proteins to misfold. They are most famously the cause of various brain diseases such as "{{w|mad cow disease}}", and may be involved in Alzheimer's disease. Similarly to viruses, prions require something else to replicate, but unlike viruses, they do not possess a nucleic-acid genome or any other means of carrying heritable information, and they do not alter the cell's production machinery, but rather interact with proteins which are already made.  In that sense, they're more like a particularly tricky kind of metabolic waste product or pollution.
 
* '''{{w|Prions}}''': Prions are misfolded proteins that cause other proteins to misfold. They are most famously the cause of various brain diseases such as "{{w|mad cow disease}}", and may be involved in Alzheimer's disease. Similarly to viruses, prions require something else to replicate, but unlike viruses, they do not possess a nucleic-acid genome or any other means of carrying heritable information, and they do not alter the cell's production machinery, but rather interact with proteins which are already made.  In that sense, they're more like a particularly tricky kind of metabolic waste product or pollution.
* (from title text) '''{{w|Computer virus}}es''': A piece of code which hijacks computer systems to replicate itself, named by analogy to biological viruses.  Strictly speaking, they're just a particular encoding of information, usually stored in electromagnetic media (although there's no reason one couldn't be stored on punch cards).  Randall ranks them as "''currently''" more alive than fire, because they do carry "genetic" information (which anti-virus programs can be programmed to look for, analogous to immunity) and some are capable of modifying themselves to adapt to new environments, but less alive than prions because they only operate within information systems.  However, if viruses became more intelligent, or a virus were able to e.g. hijack an electronics factory to start making flash drives and memory cards that carry the virus's code, then perhaps it might move up in the hierarchy.
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* (from title text) '''{{w|Computer virus}}es''': A piece of code which hijacks computer systems to replicate itself, named by analogy to biological viruses.  Strictly speaking, they're just a particular encoding of information, usually stored in electromagnetic media (although there's no reason one couldn't be stored on punch cards).  Randall ranks them as "''currently''" more alive than fire, because they do carry "genetic" information (which anti-virus programs can be programmed to look for, analogous to vaccination) and some are capable of modifying themselves to adapt to new environments, but less alive than prions because they only operate within information systems.  However, if a virus were able to e.g. hijack an electronics factory to start making flash drives and memory cards that carry the virus's code, then perhaps it might move up in the hierarchy.
 
* '''{{w|Fire}}''': Fire is a common example of something which meets many common definitions for life; it grows, reproduces by spreading seeds (sparks), and consumes energy and excretes waste (ashes and smoke) by the same net chemical process as respiration.  However, while fire can be a necessary part of the life cycle of other organisms (e.g. redwood trees), it does not maintain a constant environment within itself, nor does it perform {{w|anabolism}}, the construction of larger molecules from smaller ones.  Respirating life-forms use helper molecules to moderate the oxidation reaction into small steps to produce useful units of energy, rather than letting it all happen at once to produce heat.
 
* '''{{w|Fire}}''': Fire is a common example of something which meets many common definitions for life; it grows, reproduces by spreading seeds (sparks), and consumes energy and excretes waste (ashes and smoke) by the same net chemical process as respiration.  However, while fire can be a necessary part of the life cycle of other organisms (e.g. redwood trees), it does not maintain a constant environment within itself, nor does it perform {{w|anabolism}}, the construction of larger molecules from smaller ones.  Respirating life-forms use helper molecules to moderate the oxidation reaction into small steps to produce useful units of energy, rather than letting it all happen at once to produce heat.
 
* '''{{w|Clouds}}''': Random shapes taken by clouds may resemble animals and other objects, but arguably they are not alive in any sense. Things like tornadoes and hurricanes, on the other hand, can meet some definitions of life: they maintain homeostasis, actively seek and consume energy, and occasionally reproduce. Cf. ''Fire'' above.
 
* '''{{w|Clouds}}''': Random shapes taken by clouds may resemble animals and other objects, but arguably they are not alive in any sense. Things like tornadoes and hurricanes, on the other hand, can meet some definitions of life: they maintain homeostasis, actively seek and consume energy, and occasionally reproduce. Cf. ''Fire'' above.

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