GrowthGDPp.c. (t, t + ∆t) = = F(GDPp.c. (t), h(t), …) GrowthGDPp.c. ( 2010, 2010 + ∆t ) = −0,018 ln GDPp.c. ( 2010) + + 0,002 MaleSchooling ( 2010) − − 0,004 ln GDPp.c. • MaleSchooling ( 2010) + 0,044 ln LifeExpec tan cy ( 2008) − − 0,016 ln FertilityRate( 2008) − 0,136GovernmentConsumptionRatio( 2008) + + 0,029 RuleofLaw( 2009) + 0,090 DemocracyI ndex − 0,088DemocracyI ndex 2 − − 0,043InflationRate( 2004 − 2007 ) α β GDPp.l . ( t ) = K ( t ) H ( t ) ( P ( t ) A( t ) L( t ) ) 1−α − β Investi ( t ) + θ 0 ln GDPp.l . i ( t ) + θ1 Li ( t ) + θ 2 ln GDPi ( t ) GrowthGDPp.l . i ( t + ∆t ) = −ϕ i + const . EXPi ( t ) + IMPi ( t ) + θ 3 ln Schooling i ( t ) + θ 4 ln GDPi ( t ) GrowthGDPp.c. ( t + ∆t ) = −0,00638 ln GDPp.c. ( t ) + 0,04430 ECI − 0,00371ECI • ln GDPp.c. ( t ) + + 0,03682GrowthExpresource ( t ) GrowthGDPp.c. i ( 2010 − 2030 ) = α + β1 ln GDPp.c. i ( 2010 ) + β 2 Landlock i + + β 3 LifeExpec tan cy i ( 2010 ) + β 4 ( LifeExpec tan cy i ( 2010 ) ) + β 5 ln EXPYi ( 2010 ) + 2 + β 6 ShareCorei ( 2010 ) + β 7Growthin Re sourceExp i ( 2010 − 2030 ) + β 8 ln OpenForest i ( 2010 ) + Invest i ( 2010 ) + β 9 (ln OpenForest i ( 2010 ) ) 2 + β10 + ε i GDPi ( 2010 )