Answer and Explanation:
- Phase change as a function of the log of the frequency
The phase shift should be independent of the frequency of the input signal. It should have an Infinite bandwidth with zero phase shift
- Common Mode Rejection Ratio
An ideal amplifier has Infinite common-mode rejection ratio (CMRR). A perfect operational amplifier amplifies only the voltage difference between its two inputs, completely rejecting all voltages that are common to both.
- Input Resistance
Infinite input impedance and so, zero input current & Zero input offset voltage.
The differential input impedance of the operational amplifier is defined as the impedance between its two inputs; the common-mode input impedance is the impedance from each input to ground.
And the impedance between its inputs should be infinite.
- Output Resistance
Zero output impedance and Infinite output voltage range.
Output Resistance leads to voltage drop. Thee voltage drop across the output impedance effectively reduces the open loop gain. So, the optimal value for this should be zero.
N.B - For AC circuits such as this one being discussed, resistance is known as impedance.
Answer:
The module is why it’s goin to work
Explanation:
Using an appropriate failure theory, find the factor of safety in each case. State the name of the theory that you are using the theory is max stress theory.
<h3>Wat is the max stress theory?</h3>
The most shear strain concept states that the failure or yielding of a ductile fabric will arise whilst the most shear strain of the fabric equals or exceeds the shear strain fee at yield factor withinside the uniaxial tensile test.”
Stress states at various critical locations are f= 2.662.
Read more about strain:
brainly.com/question/6390757
#SPJ1
Answer:
A beam is a structural member that is subjected primarily to transverse loads ... stress equal to σy, then the section Moment - Curvature (M-φ) response for .... Example 2.2 Design a simply supported beam subjected to uniformly distributed dead ... (live load). • Step I. Calculate the factored design loads (without self-weight).
Explanation: