|Determine H (Z) using Impulse invariant Method | solved examples

Santosh Tondare Engineering Tutorials
28 Dec 202306:47

Summary

TLDRIn this detailed discussion, the speaker navigates a complex mathematical problem, focusing on the conversion of a formula involving square roots into a digital format. They evaluate various standard formulas and make necessary adjustments to derive a correct equation. The importance of sampling periods is emphasized, alongside the explanation of key terms such as transfer functions and numerator/denominator relationships. The session concludes with a summary of calculated values, illustrating the practical application of the concepts discussed, ultimately enhancing understanding for viewers interested in mathematical formulations in digital contexts.

Takeaways

  • 😀 The script discusses converting a mathematical expression involving variables and constants into a digital form.
  • 📏 The standard formula used in the calculation is introduced, emphasizing its components and structure.
  • 🧮 The speaker simplifies the expression by identifying applicable formulas and terms.
  • 🔍 The importance of realizing constants and variables in the equation is highlighted for accurate calculations.
  • 💡 A correction is noted regarding the numerators in the formulas, stressing the need for adjustments.
  • ✍️ The adjusted formula incorporates constants in a way that cancels out terms for simplification.
  • 📈 The calculation of the transfer function is discussed, focusing on the values derived from the expression.
  • 🔄 The sampling period is set to one second by default, establishing a standard for the calculations.
  • 📊 Specific values are calculated, leading to conclusions about the function being analyzed.
  • ✅ The final answer and its significance in the context of the problem are presented clearly.

Q & A

  • What is the main topic discussed in the transcript?

    -The main topic is about converting a mathematical expression into digital form using a specific formula.

  • What does the term 'standard formula' refer to in the context of the transcript?

    -The 'standard formula' refers to a mathematical equation used to compare and simplify terms in order to derive a specific relationship between variables.

  • Why can't some formulas be applied according to the discussion?

    -Some formulas cannot be applied because the necessary conditions, such as the presence of certain terms or constants in the equation, are not met.

  • What is the significance of the terms 'numerator' and 'constant term' in this context?

    -The terms 'numerator' and 'constant term' are crucial for determining the applicability of certain mathematical formulas to the given expression.

  • How is the expression simplified in the transcript?

    -The expression is simplified by applying the formula for the square of a binomial and rearranging the terms to fit the standard formula.

  • What correction was noted regarding the formula used?

    -It was noted that the formula initially used for the numerator needed correction; the correct term should include a division by '√2'.

  • What does 'sampling period' refer to in this context?

    -The 'sampling period' refers to the time interval used in digital signal processing, which in this case defaults to one second.

  • What values are derived from the calculations presented?

    -The calculations yield specific values for the transfer function, such as '0.453' and '-0.7497', which represent characteristics of the system being analyzed.

  • What is the final answer to the third question discussed?

    -The final answer to the third question is represented as a transfer function, including terms like 'e^(-2√2)' and related values.

  • How does this transcript contribute to understanding mathematical concepts?

    -The transcript provides a detailed step-by-step approach to applying mathematical formulas, enhancing comprehension of complex conversions and relationships in digital systems.

Outlines

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Mindmap

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Keywords

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Highlights

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Transcripts

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MathematicsEngineeringDigital TransformationFormulasTechnical AnalysisScience EducationProblem SolvingNumerical MethodsAcademic InsightsLearning Resources
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