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  2. Ishikawa diagram - Wikipedia

    en.wikipedia.org/wiki/Ishikawa_diagram

    Ishikawa diagrams (also called fishbone diagrams, [1] herringbone diagrams, cause-and-effect diagrams) are causal diagrams created by Kaoru Ishikawa that show the potential causes of a specific event. [2] Common uses of the Ishikawa diagram are product design and quality defect prevention to identify potential factors causing an overall effect ...

  3. Seven basic tools of quality - Wikipedia

    en.wikipedia.org/wiki/Seven_Basic_Tools_of_Quality

    Histogram. Pareto chart. Scatter diagram. Flow chart. Run chart. The seven basic tools of quality are a fixed set of visual exercises identified as being most helpful in troubleshooting issues related to quality. [1] They are called basic because they are suitable for people with little formal training in statistics and because they can be used ...

  4. Kaoru Ishikawa - Wikipedia

    en.wikipedia.org/wiki/Kaoru_Ishikawa

    Kaoru Ishikawa was born in Tokyo, the eldest of the eight sons of Ichiro Ishikawa. In 1937, he graduated from the University of Tokyo with an engineering degree in applied chemistry. After college, he worked as a naval technical officer from 1939 to 1941. From 1941 to 1947, Ishikawa worked at the Nissan Liquid Fuel Company.

  5. Five whys - Wikipedia

    en.wikipedia.org/wiki/Five_whys

    The artificial depth of the fifth why is unlikely to correlate with the root cause. The five whys is based on a misguided reuse of a strategy to understand why new features should be added to products, not a root cause analysis. To avoid these issues, Card suggested instead using other root cause analysis tools such as fishbone or lovebug diagrams.

  6. Eight disciplines problem solving - Wikipedia

    en.wikipedia.org/wiki/Eight_Disciplines_Problem...

    D4: Determine and Verify Root Causes and Escape Points: Identify all applicable causes that could explain why the problem has occurred. Also identify why the problem was not noticed at the time it occurred. All causes shall be verified or proved. One can use five whys or Ishikawa diagrams to map causes against the effect or problem identified.

  7. Causality - Wikipedia

    en.wikipedia.org/wiki/Causality

    Used in management and engineering, an Ishikawa diagram shows the factors that cause the effect. Smaller arrows connect the sub-causes to major causes. For quality control in manufacturing in the 1960s, Kaoru Ishikawa developed a cause and effect diagram, known as an Ishikawa diagram or fishbone diagram. The diagram categorizes causes, such as ...

  8. Kaizen - Wikipedia

    en.wikipedia.org/wiki/Kaizen

    [21] [22] There are normally a series of causes stemming from one root cause, [23] and they can be visualized using fishbone diagrams or tables. The five whys can be used as a foundational tool in personal improvement. [24] Masaaki Imai made the term famous in his book Kaizen: The Key to Japan's Competitive Success. [1]

  9. Root cause analysis - Wikipedia

    en.wikipedia.org/wiki/Root_cause_analysis

    In the field of science and engineering, root cause analysis (RCA) is a method of problem solving used for identifying the root causes of faults or problems. [1] It is widely used in IT operations, manufacturing, telecommunications, industrial process control, accident analysis (e.g., in aviation, [2] rail transport, or nuclear plants), medicine (for medical diagnosis), healthcare industry (e ...

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