Nature, Volume 429 |
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Page 176
Species tolerances , 5 ( N ) 0.01 0 -0.01 О 20 0.01 -0.01 20 No interactions 10 Monotrophic a = 1 10 0 a = 0.66 ± 0.13 b 0.01 0 -0.01 20 0.04 -0.04 20 Tritrophic Ta = 0.69 ± 0.11 10 Arbitrary a = 0.41 ± 0.17 10 0 Number of species ...
Species tolerances , 5 ( N ) 0.01 0 -0.01 О 20 0.01 -0.01 20 No interactions 10 Monotrophic a = 1 10 0 a = 0.66 ± 0.13 b 0.01 0 -0.01 20 0.04 -0.04 20 Tritrophic Ta = 0.69 ± 0.11 10 Arbitrary a = 0.41 ± 0.17 10 0 Number of species ...
Page 450
Higher - order risk interactions One of the possible reasons that linkage analysis has identified few high - frequency , modest - risk alleles is statistical interaction ( or epistasis ) between multiple loci .
Higher - order risk interactions One of the possible reasons that linkage analysis has identified few high - frequency , modest - risk alleles is statistical interaction ( or epistasis ) between multiple loci .
Page 507
Edward Witten ur prehistoric ancestors did not need any modern equipment to detect the effects of what we now call the electromagnetic interactions . Light is pretty obvious in everyday life , and other electromagnetic effects , such as ...
Edward Witten ur prehistoric ancestors did not need any modern equipment to detect the effects of what we now call the electromagnetic interactions . Light is pretty obvious in everyday life , and other electromagnetic effects , such as ...
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