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[" given concencentration (M)-time graph...

[" given concencentration (M)-time graph.The rate for "],[qquad [0.5],[0.4],[0.3],[0.3],[0.2],[0.1]|[vdots],[0.20406080],[" Timelsecond "],[(C)2times10^(-2)Ms^(-1)]]

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(3^(0)+2^(0))times5^(0)

" Let "A" be a "3times3" matrix such that "A[[1,2,3],[0,2,3],[0,1,1]]=[[0,0,1],[1,0,0],[0,1,0]]" .Then "A^(-1)" is "

If A=[[1,0],[0,1]],B=[[1,0],[0,-1]] and C=[[0,1],[1,0]] then show that A^(2)=B^(2)=C^(2)

For the non-stoichiometric reaction 2A+BrarrC+D The following kinetic data were obtained in theee separate experiment, all at 98 K |{:("Initial concentration (A)","Initial concentration (B)","Initial rate of formation of C" (molL^(-1) s^(-1))),(0.01 M,0.1 M,1.2 xx 10^(-3)),(0.1 M,0.2 M,1.2 xx 10^(-3)),(0.2 M,0.1 M,2.4 xx 10^(-3)):}| The rate law for the formation of C is:

For the non-stoichiometric reaction 2A+BrarrC+D The following kinetic data were obtained in theee separate experiment, all at 98 K |{:("Initial concentration (A)","Initial concentration (B)","Initial rate of formation of C" (molL^(-1) s^(-1))),(0.01 M,0.1 M,1.2 xx 10^(-3)),(0.1 M,0.2 M,1.2 xx 10^(-3)),(0.2 M,0.1 M,2.4 xx 10^(-3)):}| The rate law for the formation of C is:

If A=[[1,0,-2],[2,3,-1]], B=[[4,-1,3],[0,2,1]]"and" C=[[2,-3,0],[1,4,5]] "find " A-3B+3C

Let A be a 3times3 real matrix such that A([1],[0],[1])=2([1],[0],[1]),A([-1],[0],[1])=4([-1],[0],[1]),A([0],[1],[0])=2([0],[1],[0]) Then,the system (A-3I)([x],[y],[z])=([1],[2],[3]) has :

If A=[(2,0),(3,0)],B=[(0,0),(1,2)],C=[(0,0),(3,4)] then