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Situational Leadership Theory, now named the Situational Leadership Model, is a model created by Dr. Paul Hersey and Dr. Ken Blanchard, developed while working on the text book, Management of Organizational Behavior. [1] The theory was first introduced in 1969 as "Life Cycle Theory of Leadership". [2]
Sometimes the term business life cycle is used interchangeably with the organizational life cycle, while the two are different. The organizational life cycle is a more inclusive term for all kinds of organizations which includes even government organizations , but the business life cycle refers more specifically only to for-profit companies .
Even the most high-performing teams will revert to earlier stages in certain circumstances. Many long-standing teams go through these cycles many times as they react to changing circumstances. For example, a change in leadership may cause the team to revert to storming as the new people challenge the existing norms and dynamics of the team.
Arrays of large turbines, known as wind farms, have become an increasingly important source of renewable energy and are used in many countries as part of a strategy to reduce their reliance on fossil fuels. Wind turbine design is the process of defining the form and specifications of a wind turbine to extract energy from the wind. [181]
The theory holds that the effectiveness of a task group or of an organization depends on two main factors: the personality of the leader and the degree to which the situation gives the leader power, control, and influence over the situation or, conversely, the degree to which the situation confronts the leader with uncertainty.
Modelski wrote that the cycle is a 'learning process' and a 'motor of modernity', providing leadership on a global scale. [28] The cycle ushers in new waves of innovation in orderly fashion. Awareness of the cycle provides a balanced perspective, and a counter to the widespread belief in global anarchy. [29]
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For example, the total life cycle emissions from wind power may have lessened since publication. Similarly, due to the time frame over which the studies were conducted, nuclear Generation II reactor's CO 2 e results are presented and not the global warming potential of Generation III reactors. Other limitations of the data include: a) missing ...