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Page "Knowledge representation and reasoning" ¶ 63
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Each and node
Each node dynamically chose its own node number, according to a protocol ( originally the LocalTalk Link Access Protocol LLAP and later the AppleTalk Address Resolution Protocol, AARP ) which handled contention between different nodes accidentally choosing the same number.
Each receiving node checks the destination address of each frame, and simply ignores any frame not addressed to its own MAC.
Each node or leaf in the tree has zero or more resource records, which hold information associated with the domain name.
Each node knows only about some number of other nodes that it can reach directly ( its conceptual " neighbors "), but any node can be a neighbor to any other ; no hierarchy or other structure is intended.
Each node maintains a data store containing documents associated with keys, and a routing table associating nodes with records of their performance in retrieving different keys.
Each node is a regular computer user ; as such, they are constantly connecting and disconnecting, so the network is never completely stable.
Each node board contained 256 kB of I-cache and D-cache, essentially primary cache.
Each computer in the network is referred to as a node.
) Each node, on a regular basis, sends to each neighbour its own current idea of the total cost to get to all the destinations it knows of.
Each node forwards messages on behalf of the other nodes.
Each end-user gets a private line ( or leased line ) to a Frame Relay node.
Each node in the tree holds information associated with the domain name.
Each node in the structure knows of its own children and its parent.
Each node in a DQDB network maintains a pair of state variables which represent its position in the distributed queue and the size of the queue.
) Each node in the network having a specific fixed number, of nodes connected to it at the next lower level in the hierarchy, the number, being referred to as the ' branching factor ' of the hierarchical tree. This tree has individual peripheral nodes.
Each node has a set of attributes encoded with it.
Each saros series starts with a partial eclipse ( Sun first enters the end of the node ), and each successive saros the path of the Moon is shifted either northward ( when near the descending node ) or southward ( when near the ascending node ).
Each node of the tree denotes a construct occurring in the source code.
Each user of I2P runs an I2P router on their computer ( node ).
Each node only transmits loudly enough for the message to hop to the nearest node in that direction, reducing near-far problem and reducing interference to others.

Each and represents
Each point with abscissa T on the graph represents an intersection between C and Af.
Each cell represents a subshell, and lists the values of available in that subshell.
Each line of a diagram represents a particle propagating either backward or forward in time.
Each object represents a single entity — whether a user, a computer, a printer, or a group — and its attributes.
Each acceptance test represents some expected result from the system.
Each line represents 32 bits.
Each of those totals represents a modern record.
Each variable represents a different type of phrase or clause in the sentence.
Each column represents a particular variable.
Each character represents a particular social class and role in the modern urban environment.
Each hexadecimal digit represents four binary digits ( bits ), and the primary use of hexadecimal notation is a human-friendly representation of binary-coded values in computing and digital electronics.
Each part represents a group of 8 bits ( octet ) of the address.
Each line, if its warhead were live, represents the potential explosive power of about 375 kiloton s of TNT, about twelve times larger than the Atomic bombings of Hiroshima and Nagasaki | detonation of the atomic bomb in Hiroshima.
Each / 8 address block represents approximately 16. 7 million possible addresses, for a total of over 80 million potential addresses combined.
Each vector equation represents three scalar equations.
Each vector equation represents three scalar equations.
Each caldera thus represents a separate pulse of volcanic activity on the mountain.
Each coincidence event represents a line in space connecting the two detectors along which the positron emission occurred ( i. e., the line of response ( LOR )).
Each Prakrit represents a distinct tradition of literature within the history of India.
Each episode represents individual dimensions that the player can access through magical portals ( as opposed to the technological Slipgate ) that are discovered over the course of the game.
Each individual list represents one environment level: the parameters of the current function are in the head of the list, variables that are free in the current function, but bound by a surrounding function, are in other elements of E.
Each X-ray diffraction image represents only a slice, a spherical slice of reciprocal space, as may be seen by the Ewald sphere construction.
Each bar represents a digit, and the height of the bar is the percentage of numbers that start with that digit.
Each game is implemented as if running on a modernized version of the classic platform it represents.

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