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# functions in countincell.i - c

 count2moment ``` returns the normalized factorial moments F_k= < N(N-1)..(N-k+1) >/< N(N-1)..(N-k+1) >_binomial note that the first element corresponds to the void EXAMPLE uu=[];for(i=1;i<=1000;i++){xx=random(30);u=countincell1d(xx,L=1,nn=30,nl=25); grow,uu,[u];} tt=count2moment(uu,er,k=4,error=1); plb,tt(2:20,2:4)-1,marker=1,width=4; plb,(tt+er/sqrt(1000))(2:20,2:4)-1,type=2 plb,(tt-er/sqrt(1000))(2:20,2:4)-1,type=3 interpreted function, defined at contrib/countincell.i line 119 ``` SEE ALSO:

 countincell1d ``` 2D countincell1d(xx,L) EXAMPLE uu=[];for(i=1;i<=35;i++){xx=random(80);u=countincell1d(xx,L=1,nn=30,nl=50); grow,uu,[u];} plb,uu(,::5,avg),indgen(0:29),(1./indgen(50))(::5),width=4 interpreted function, defined at contrib/countincell.i line 1 ```

 countincell2d ``` 2D countincell2d(xx,L) EXAMPLE uu=[];for(i=1;i<=15;i++){xx=random(8000,2);u=countincell2d(xx,L=1,nn=30,nl=50); grow,uu,[u];} pli,uu(,,avg) interpreted function, defined at contrib/countincell.i line 25 ```

 countincell3d ``` 3D countincell EXAMPLE uu=[];for(i=1;i<=15;i++){xx=random(8000,3);u=countincell3d(xx,L=1,nn=30,nl=50); grow,uu,[u];} pli,uu(,,avg) interpreted function, defined at contrib/countincell.i line 48 ```