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Definite Integral01:29

Definite Integral

68
Consider a real-valued function defined on a closed interval. One of the fundamental objectives in calculus is to determine the area under the graph of such a function. When an exact computation is not readily available, this area can be estimated by dividing the interval into a finite number of equal subintervals. Each subinterval corresponds to a rectangle whose width is the length of the subinterval and whose height is determined by the value of the function at a selected point within that...
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Definition of z-Transform01:26

Definition of z-Transform

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The z-transform is a powerful mathematical tool used in the analysis of discrete-time signals and systems. It is an essential analytical tool, analogous to the Laplace transform used in continuous-time systems. It plays a crucial role in the analysis of signals and systems, complementing the discrete-time Fourier transform. Both the z-transform and the Laplace transform convert differential or difference equations into algebraic equations, simplifying the process of solving complex problems.
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Properties of Definite Integral I01:30

Properties of Definite Integral I

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A car’s motion over time can be effectively analyzed using integral calculus, particularly through the concept of the definite integral applied to a velocity–time relationship. The definite integral describes how velocity accumulates over a specified time interval to produce total displacement. From a geometric perspective, this displacement is interpreted as the area under the velocity–time curve. Several key properties of definite integrals make it easier to analyze motion...
58
The Precise Definition of a Limit01:27

The Precise Definition of a Limit

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Understanding the formal definition of a limit is essential for precise mathematical analysis. This concept allows us to rigorously determine how a function behaves near a particular point without relying on ambiguous notions such as "getting close." The ε-δ definition plays a foundational role in calculus, ensuring analytical clarity and logical consistency in limit evaluation.The formal definition states that the limit of a function f(x) as x approaches a is L, written asif for...
303
Properties of Definite Integral II01:24

Properties of Definite Integral II

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Definite integrals are essential tools in calculus, used to quantify accumulated change over an interval. A common physical application is calculating the total displacement from a velocity-time graph. If a velocity function, v(t), describes the motion of an object over time, the definite integral gives the net displacement between times a and b. This integral corresponds to the signed area under the velocity curve between those two points.Two fundamental properties of definite integrals aid in...
54
Integration by Parts: Definite Integrals01:23

Integration by Parts: Definite Integrals

79
Definite integrals involving the product of two functions over a fixed interval can be evaluated using integration by parts. This method rewrites the integral as the difference of a product evaluated at the endpoints and a remaining definite integral that is often simpler to compute.A representative example is the definite integral of the inverse tangent function. Since there is no direct integration formula for arctan ⁡x, the integrand is rewritten as a product of arctan⁡ x and the...
79
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  1. ホーム
  2. 研究分野
  3. 生物医学と臨床科学
  4. 心血管医学と血液学
  5. 心臓病 (心血管疾患を含む)
  6. 第4回 心筋梗塞の普遍的定義 (2018年)

第4回 心筋梗塞の普遍的定義 (2018年)

Kristian Thygesen, Joseph S Alpert, Allan S Jaffe

    Circulation
    |December 21, 2018

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    まとめ

    No abstract available in PubMed .

    キーワード:
    AHAの科学発表タコツボ症候群タイプ1MIタイプ2MIタイプ3MIタイプ4aMIタイプ4bMIタイプ4cMIタイプ5MI心臓手術による心筋損傷心臓 トロポニン高感度心臓 トロポニン心筋梗塞非阻害性冠動脈性心筋梗塞 (MINOCA)心筋損傷前回の心筋梗塞循環性心筋梗塞再発 心臓発作静かな心筋梗塞

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