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As the competition has increased, there was a sudden need to emphasise on time-cycle improvement in businesses and reduce manufacturing defects to a minimum level. The necessity to retain clients and sustain business products and services was also an emerging issue.

With the efforts of Motorola in 1986, the Six Sigma technique was developed to reduce the defects to a minimum level of 3.4 per million. The defects are found first and then focuses on reducing all the errors in a short span of time along with improved variability in manufacturing and business processes. Pentagon Training will help delegates to get out of these pre-defined paths and achieve Six Sigma levels which range from white to black belt.

Who should take this course

The following category of professionals are included in the course list who can get benefit from taking the course:

  • Companies and their managements for implementing Six Sigma.
  • Project Managers to complete projects of extreme importance.
  • Quality Assurance Engineers to explore and improve the quality.
  • Team members of Software Quality Assurance.
  • Audit managers to manage reviews of various companies.
  • Security professionals to implement policies judicially.
  • Senior Management for the purpose of managing the tasks efficiently.
  • Management students for learning the benefits of using various methodologies.
  • Team leaders for supervising the teams correctly.
  • Software Professionals to develop high-quality software after applying techniques to manage variability.
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Prerequisites

Certain requirements should be fulfilled before becoming the Six Sigma Black Belt professional and get six sigma certification. These include:

  • Delegates require carrying two complete projects with signed affidavits, or
  • One whole project with a signed affidavit and three years of work experience in one or more areas of the Six Sigma Black Belt body of knowledge.
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What Will You Learn

Once the course is complete delegates will become familiar with fundamentals of Six Sigma Black Belt and how to apply it to the business processes.

  • Accomplish the team dynamics efficiently and at a faster pace.
  • Concluding projects and handling over control to process owners.
  • Presenting these projects to instructors, peers and managers.
  • Measuring various problems for achieving project success.
  • Applying different Lean concepts like 5S, waste reduction, process mapping, value stream mapping and mistake proofing.
  • Understand the working with multiple levels of leadership.
  • Read advanced statistical analyses to define the relationship between the primary inputs and process outputs and apply more basics to it.
  • Using various controlling techniques for cost benefit analysis
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What's included

  Course Overview

Six Sigma relates to an ideology of improvement in several statistics which forms a part of business process. According to Six Sigma, qualitative extents should take a step forward for getting over qualitative indicators. It will help in achieving the credibility that supports and enhances the work performances by different employees.

It applies to all industries and vendors who want to attain elevation in various belts of Six Sigma. Six Sigma experts include all those business people who use statistics, financial analysis and project management for achieving improved business functions.

It supports the creation of a unique infrastructure of individuals who are expert in applying the set of quality control methods like empirical method and statistical method. The Six Sigma professional follows a series of steps with the complete consignment of specific value objectives to each step.

Exam Info:

Exam Type: Multiple Choice Question

Duration: 90 minutes

Pass Percentage: 45

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  Course Content

The following details are included in the course content and will enable the delegates to upgrade their level of learning:

1. DEFINING PHASE

  • Overview of Six Sigma
    • What is Six Sigma?
    • History of Six Sigma
    • Y = f(x) Approach
    • Methodology
    • Roles & Responsibilities
  • Fundamentals of Six Sigma
    • Define Process
    • VOC & CTQ’s
    • QFD
    • Cost of Poor Quality
    • Pareto (80:20 rule)
  • Projects of Lean Six Sigma
    • Six Sigma Metrics
    • Business Case & Charter
    • Project Team Selection
    • Project Risk Management
    • Project Planning
    • The Seven Deadly Muda
    • Five-S (5S)

2. MEASURING PHASE

  • Process Definition
    • Cause & Effect Diagrams
    • Cause & Effects Matrix
    • Process Mapping
    • FMEA
    • Theory of Constraints
  • Process Capability
    • Analysis of Capability
    • Stability Concept
    • Attribute Capability
    • Discrete Capability
    • Monitoring Techniques
  • MSA
    • Precision & Accuracy
    • Bias, Linearity & Stability
    • Gage R&R
    • Variable & Attribute MSA
  • Six Sigma Statistics
    • Basic Statistics
    • Descriptive Statistics
    • Distributions & Normality
    • Graphical Analysis

 3. ANALYZING PHASE

  • Variation Patterns
    • Multi-Variable Analysis
    • Classes of Distributions
  • Inferential Statistics
    • Understanding Inference
    • Sampling
    • Sample Size
    • Central Limit Theorem
  • Hypothesis Testing
    • Hypothesis Testing Goals
    • Statistical Significance
    • Risk; Alpha & Beta
    • Types of Hypothesis Test
  • Hyp-Tests: Normal Data
    • One and Two Sample t-tests
    • One Sample Variance
    • One Way ANOVA
  • Hyp-Tests: Non-Normal Data
    • Mann-Whitney & Mood’s Median
    • Kruskal-Wallis
    • Moods Median
    • Friedman
    • 1 Sample Sign
    • 1 Sample Wilcoxon
    • 1 and 2 Proportion
    • Chi-Squared
    • Test of Equal Variances

 4. IMPROVING PHASE

  • Simple Linear Regression
    • Correlation
    • X-Y Diagram
    • Regression Equations
    • Residuals Analysis
  • Multiple Regression
    • Non-Linear Regression
    • Multiple Linear Regression
    • Confidence Intervals
    • Residuals Analysis
    • Box-Cox Transformation
    • Stepwise Regression
    • Logistic Regression
  • Designed Experiments
    • Research Objectives
    • Experimental Methods
    • DOE Considerations
  • Full Factorial Experiments
    • 2k Full Factorial Designs
    • Linear & Quadratic Models
    • Orthogonal Designs
    • Model & Center Points
  • Fractional Factorials
    • Designs
    • Confounding Effects
    • Preliminary Resolution

 5. CONTROLLING PHASE

  • Lean Controls
    • Control Methods for 5S
    • Kanban
    • Poka-Yoke
  • SPC
    • Data Collection for SPC
    • I-MR Chart
    • Xbar-R Chart
    • U Chart
    • P Chart
    • NP Chart
    • X-S chart
    • CumSum Chart
    • EWMA Chart
    • Control Methods
    • Control Chart Anatomy
    • Variation & Sampling
    • Control Limits
  • Planning for Six Sigma Control
    • Cost Benefit Analysis
    • Control Plan Elements
    • Response Plan
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Six Sigma Black Belt Enquiry

 

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Reach us at +44 1344 961530 or info@pentagonit.co.uk for more information.

About Carlisle

Carlisle, a city in Cumbria, is also the managerial centre of the City of Carlisle region in North West England. It is the main settlement in the county of Cumbria and helps as the managerial centre for both Carlisle City Council and Cumbria County Council. At the time of the 2001 survey, the population of Carlisle was 71,773. In 2011, the city's population had increased to 75,306, with 107,524 in the wider city.

The early history of Carlisle is noticeable as a Roman payment, recognised to serve the forts on Hadrian's Wall. In the Middle Ages, because of its nearness to the Realm of Scotland, Carlisle industrialised meaningfully. The armed stranglehold, Carlisle Castle, was built in 1092 by William Rufus, and once added as a custodial for Mary, Queen of Scots. The castle now relatives the Duke of Lancaster's Regiment and the Border Regiment Museum. In the 12th century, Henry I allowed the building of a priory in Carlisle. The town produced the rank of a city when its diocese was formed in 1133, and the cloister industrialised Carlisle Cathedral.

Governance:

Carlisle has detained city status since the Middle Ages. Also, it kept its status as an area constituency or governmental borough for centuries, at one time returning two MPs. In 1835 it became a municipal borough and was later upgraded to a  borough status in 1914. The city's boundaries have changed several times since 1835 the final time in 1974. 

The municipal area surrounded many parts of parishes which were combined into a single civil parish of Carlisle in 1904. The currently present urban area is considered as an unparished area. Carlisle had in 2002 made an unsuccessful attempt to grow to a Lord Mayoralty. An iconic building that stands tallest in Carlisle may be demolished, and the area nearby to it rehabilitated.

Climate:

Carlisle practices an oceanic climate. In January 2005 Carlisle was hit by strong wind storms and torrential rains. On Saturday 8 January 2005 all roads into Carlisle were shut owed to severe flooding, the worst since 1822, which produced three deaths. Less severe but still significant flooding occurred in 2009, but due to Storm Desmond. Carlisle experienced even worse flooding than 2005 between Friday 4 and Sunday 6 December 2015. During this time, nearly 36 hours of nonstop precipitation broke flood defences. This left several areas submerged including Bitts Park, Hardwicke Circus and Warwick Road. This left the famous Sands Centre, stranded from the rest of the city. As several other areas of Cumbria were also severely pretentious, all trains to Scotland were postponed forever. The trains on the West Coast Principal went no further than Preston. Prime Minister David Cameron stayed the city on 7 December 2015 to measure the damage.

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