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6 scenarios were applied to the plots and analyses were conducted with the goal of showing the general behavior of the sampling design alternatives under different levels of forest degradation and deforestation.
Therefore, based on the above description, the Zeno behavior of the sampling can be excluded because there is no accumulation point in the sampling if tilde{t}_{delta + 1} = inf bigl{ t > tilde{t}_{delta}| {e^{T} ( t )Phi_{1i} e ( t ) - rho_{i} x_{f}^{T} ( t )Phi_{2i} x_{f} ( t ) ge0} bigr} quad foralldelta inmathbb{N} holds.
Based on (9), we know that the next event will not be generated before (e^{T} ( t )Phi_{1i} e ( t ) - rho_{i} x_{f}^{T} ( t )Phi_{2i} x_{f} ( t ) = 0) and at the event-trigger instant (tilde{t}_{delta}), if (e ( t ) = 0 ), one sees that a positive lower bound exists on the inter-event, that is, (tilde{t}_{delta + 1} - tilde{t}_{delta}> 0), which eliminates the Zeno behavior of the sampling.
SPR was realized as a combination of 250 permanent (n 12 ) plots and 125 temporary (n −1, n −2 ) plots for occasions 1 and 2.>> 6 scenarios were applied to the plots and analyses were conducted with the goal of showing the general behavior of the sampling design alternatives under different levels of forest degradation and deforestation.
Similar(56)
As we will discuss, this leads to varied reduction behavior of the samples.
The permanent strain behavior of the samples was assessed by the Zhou three-stage model.
The conversion behavior of the samples observed in DTF was similar to that reflected in TGA.
Liberation behavior of the sample was about 80% below 5 μm.
At above 60 °C, the foaming behavior of the samples strongly depended on the foaming temperature.
The catalytic behavior of the samples was investigated in the propane dehydrogenation reaction at 883 K.
The corrosion behavior of the samples was investigated by a potentiodynamic polarization method.
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