Using Gauss elimination, solve the following linear algebraic equations:
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- Hey, please reply as soon as posible. Use nodal analysis, to get v1 and i2.arrow_forwarda. Draw the circuit b. Draw the nodes (circle common nodes) for the particular circuit. (Identify reference node as 0)c. Formulate Nodal Equationsd. Solve for the Nodal Voltages(include matrix form of the equations), underline nodal voltagese. Solve for the unknown variables, box final answers and should be in order (subscripts x, y, zarrow_forwardPlease answer ASAP for like this please answer ASAP for like this pleasearrow_forward
- my matric number is 201061325 - so put the A = 3 , B = 2 , C = 5… please use this ABC.. dont use like the question… please answer question 1.a.i quickly.. thank youarrow_forwardStarting position of an object is represented as5.1±0.2m and finishing position as y=6,9±0.3m.What will be the displacement and errorindisplacement?Select one a. Displacement = 1:8m. Error=0.5mb Displacement = 1.8m, Error= 0.3mc Displacement - 1.8m, Error = 0,36md Displacement = 1.8m, Error = 0.4marrow_forwardDiscuss in details and mathematical equations (and by aid of Kirchhoff’s Laws), how the obtained results may prove the validity of mesh analysis and nodal analysis.arrow_forward
- Important: Follow instructions/steps for each number: a. Draw the circuit b. Draw the nodes (circle common nodes) for the particular circuit. (Identify reference node as 0) c. Formulate Nodal Equations d. Solve for the Nodal Voltages(include matrix form of the equations), underline nodal voltages e. Solve for the unknown variables, box final answers and should be in order (subscripts x, y, z)arrow_forwardUsing nodal analysis, demonstrate that I1 is equal to 0.7781∠(-161.9°) A for the circuit given.arrow_forwardPlease use root locus methodarrow_forward
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