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KB Term:  Term intersection
English Word: 

Sigma KEE - PopulationGrowthFn
PopulationGrowthFn

appearance as argument number 1
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No TPTP formula. May not be expressible in strict first order. People.kif 39-48
No TPTP formula. May not be expressible in strict first order. People.kif 36-36 The number 1 argument of population growth is an instance of geopolitical area
No TPTP formula. May not be expressible in strict first order. People.kif 37-37 The number 2 argument of population growth is an instance of year
No TPTP formula. May not be expressible in strict first order. People.kif 35-35 Population growth is an instance of binary function
No TPTP formula. May not be expressible in strict first order. People.kif 38-38 The range of population growth is an instance of real number

appearance as argument number 2
-------------------------


No TPTP formula. May not be expressible in strict first order. domainEnglishFormat.kif 1995-1995
No TPTP formula. May not be expressible in strict first order. domainEnglishFormat.kif 1994-1994
No TPTP formula. May not be expressible in strict first order. domainEnglishFormat.kif 1993-1993
No TPTP formula. May not be expressible in strict first order. domainEnglishFormat.kif 46669-46669
No TPTP formula. May not be expressible in strict first order. domainEnglishFormat.kif 46668-46668
No TPTP formula. May not be expressible in strict first order. domainEnglishFormat.kif 46667-46667

antecedent
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No TPTP formula. May not be expressible in strict first order. People.kif 52-64 A year is an instance of the year an integer and the population growth of a geopolitical area and the year is equal to a real number if and only if (the integer and the integerP) is equal to 1 and a time position is an instance of the year the integerP and the population of the geopolitical area is equal to another real number holds during the year and the population of the geopolitical area is equal to a third real number holds during the time position and the other real number and the third real number is equal to a fourth real number and (the fourth real number and 1) is equal to the real number


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