SÉCULO XX ANO XIV
HÁ VÁRIAS VARIAÇÕES DA MESMA CIVILIZAÇÃO INDUSTRIAL QUE SE DEGLADIAM
PELO CONTROLE ECONÓMICO MUNDIAL OU POR UMA FATIA DELE
O MUNDO COMPÕE-SE DA EUROPA E DAS SUAS COLÓNIAS ECONÓMICAS
TEMOS UMA AMÉRICA COM UM CONTROLE CRESCENTE NO CONTINENTE
E UMA ÁSIA COM DOIS ESTADOS SOBERANOS MAS NÃO MUITO
UMA COMEDIA MEDIEVAL CHEIA DE REYNOS E REIS E CONTOS DE RÉIS
DOMINA A EUROPA QUE SE DIZ MODERNA
E TIRANDO A REPUBLICANA FRANÇA
ONDE OS HOMENS SE ENFEITAM COM TÍTULOS
E SONHAM COM A REVANCHE E COM UM GOLPE D'ÉTAT
QUE LHES DÊ UM GENERAL BOULANGER
QUE DESTRUA OS BÁRBAROS DE ALÉM RENO
QUAL CARLOS MAGNO OU LOUIS XIV OU NAPOLEÃO I
QUE O IIIº NÃO CHEGOU PRÓ GASTO
ENFIM UMA CARRADA DE ESTADOS MILITARIZADOS PERPETUAMENTE
QUE SE ENTRETÊM DESDE HÁ 12 SÉCULOS EM MATAR A VIZINHANÇA
OU UNIR-SE E IR DE CRUZADA EM CRUZADO
MATAR OS VIZINHOS MAIS ESCURINHOS
OU TINGIR DE VERMELHO UM PERIGO AMARELO QUALQUER
ASSIM AS CASTAS DOMINANTES EUROPEIAS
MUITO MAIS CULTAS E PACÍFICAS
QUE AS CASTAS DO EGYPTO OU DA ÍNDIA
DEPOIS DE TEREM DIVIDIDO ENTRE SI O MUNDO
E TEREM MASSACRADO MILHÕES REPUBLICANICAMENTE OU CINICAMENTE
UMA DESSAS
OU MECANICAMENTE E AUTOCRATICAMENTE AO ESTYLO DE LEOPOLDO III
NO FUNDO PARA OS MASSACRADOS TANTO FAZ
LEMBRARAM-SE QUE DESDE 1911
QUE NÃO HAVIA MUITO MAIS ESPAÇOS VITAIS PARA TOMAR
E SE A ITÁLIA TINHA EM 1911 TIRADO OS PEDACINHOS QUE SOBRAVAM
À SUBLIME PORTA NUMA ÁFRICA DO NORTE QUE DOMINARA DURANTE 400 ANOS
OU QUASE
E SE A PRIMEIRA GUERRA DAS BALCÃS LHE TIRARA AS SOBRAS EUROPEIAS
E A SEGUNDA TINHA RESULTADO DA ESCASSEZ DE MASSA PARA PAGAR
AS CUSTAS JUDICIAIS DOS DIREITOS DE PROPRIEDADE
ENTÃO QUE SOBRAVA ÀS MASSAS GUERREIRAS
QUE TAL COMO AS DO 25 D'AVRIL E O EANES DO MALI
OU O KADAHFI DO CENTRO-AFRICANO QUE ANSIAVAM POR PROMOÇÕES
E A MALTA DAS MUNIÇÕES COM A FALTA DE MERCADOS
QUE A PAX BRITANICA MATAVA POUCO DESDE CARTUM E ONDURMAN
E A GUERRA DOS BÓERES ESSA COUSA DE CAUSA INCOMPREENSÍVEIS
DURARA POUCO
ENTÃO PARA QUEBRAR A MONOTONIA
QUE DESDE 1908 SÓ TINHA TIDO UM ESTOURO
AS GENTES EUROPEIAS LANÇARAM-SE COMO LÉMINGUES
AO SEU DESPORTO FAVORITO
CAÇAR AS RAPOSAS DO VIZINHO
E QUANDO DESCOBRIRAM QUE O VIZINHO NÃO TINHA RAPOSAS
JÁ ANDAVAM HABITUADOS E ASSIM COMO ASSIM
ERA UMA CAÇA MAIS DIVERTIDA
In the arts and humanities, data laziness is still very common, because any attempt to quantify these outputs is considered gauche, insensitive, or ham-fisted (adjectives often found in the first few paragraphs of lit theory papers).
Spiner reprised his role of Data in the Star Trek: Enterprise series finale ... from B4 into a new body which contained the memory engrams of Data's creator
mountain's less pressure of o2
no the pattern's don't exist
this is a chaotic universe
data big or small is observator dependent
observation of data is dependent of quantum physics
ALL SYSTEMS ARE QUANTUM SYSTEMS
associal or social ones too...
Information and correlation[edit]
It is generally well established that any quantum mechanical measurement can be reduced to a set of yes/no questions or bits that are either 1 or 0.[citation needed] RQM makes use of this fact to formulate the state of a quantum system (relative to a given observer!) in terms of the physical notion of information developed by Claude Shannon. Any yes/no question can be described as a single bit of information. This should not be confused with the idea of a qubit from quantum information theory, because a qubit can be in a superposition of values, whilst the "questions" of RQM are ordinary binary variables.
Any quantum measurement is fundamentally a physical interaction between the system being measured and some form of measuring apparatus. By extension, any physical interaction may be seen to be a form of quantum measurement, as all systems are seen as quantum systems in RQM. A physical interaction is seen as establishing a correlation between the system and the observer, and this correlation is what is described and predicted by the quantum formalism.
But, Rovelli points out, this form of correlation is precisely the same as the definition of information in Shannon's theory. Specifically, an observer O observing a system S will, after measurement, have some degrees of freedom correlated with those of S. The amount of this correlation is given by log2k bits, where k is the number of possible values which this correlation may take — the number of "options" there are.
All systems are quantum systems[edit]
All physical interactions are, at bottom, quantum interactions, and must ultimately be governed by the same rules. Thus, an interaction between two particles does not, in RQM, differ fundamentally from an interaction between a particle and some "apparatus". There is no true wave collapse, in the sense in which it occurs in the Copenhagen interpretation.
Because "state" is expressed in RQM as the correlation between two systems, there can be no meaning to "self-measurement". If observer O measures system S, S's "state" is represented as a correlation between O and S. O itself cannot say anything with respect to its own "state", because its own "state" is defined only relative to another observer, O'. If the S+O compound system does not interact with any other systems, then it will possess a clearly defined state relative to O'. However, because O's measurement of S breaks its unitary evolution with respect to O, O will not be able to give a full description of the S+O system (since it can only speak of the correlation between S and itself, not its own behaviour). A complete description of the (S+O)+O' system can only be given by a further, external observer, and so forth.
Taking the model system discussed above, if O' has full information on the S+O system, it will know the Hamiltonians of both S and O, including the interaction Hamiltonian. Thus, the system will evolve entirely unitarily (without any form of collapse) relative to O', if O measures S. The only reason that O will perceive a "collapse" is because O has incomplete information on the system (specifically, O does not know its own Hamiltonian, and the interaction Hamiltonian for the measurement).