柠檬导航

News

Ambiguous problems require new types of leadership

In the future, automation will handle routine tasks, so even newcomers to the workforce will be required to work on complex problems. What should be considered when leading multidisciplinary teams that solve these kinds of challenging problems?
Monitulkintaiset ongelmat vaativat uudenlaista johtamista

鈥業'm in the wrong place,鈥 thought researcher Satu Rekonen as she began her cross-disciplinary product development project course, which is part of the Master's Programme in International Design Business Management. She was the only business student on the team and had no experience with prototyping. However, as her studies progressed, she realised that a different background was actually a strength. She was able to focus on the team's internal communication and pose questions that led to fruitful discussions.鈥

Satu Rekonen

Later, this first-hand experience ignited Satu Rekonen鈥檚 interest in multidisciplinary teams and their leadership. In her doctoral dissertation, she examined how professionals and project managers unfamiliar with creative problem-solving approached ambiguous problems. An example of an ambiguous problem might be how to get people to use electric cars or how to make an organisation the world鈥檚 best place to work.

According to Satu Rekonen, working life projects will increasingly be about solving creative and complex problems.

鈥楽tudents have historically familiarised themselves with their chosen field by doing routine tasks, but in the future, these will be handled by automation. As a consequence, newcomers will face complex problems at the beginning of their careers.鈥

Uncertainty is difficult to tolerate

According to Satu Rekonen's research, those who are inexperienced with creative problem solving tend to jump quickly to a particular solution instead of exploring alternative solutions. According to Rekonen, it should be accepted in project work that there may be more than one right solution for projects. A good outcome requires experimentation, discussion, learning, openness and building trust.

Below, Satu Rekonen outlines how a project manager can create the conditions that support a team in solving complex problems.

  1. Know your team's capabilities.
    Multidisciplinary problems are often solved in multidisciplinary teams. In order to make the most of the capabilities of the entire team, everyone must be able and willing to bring forward their own expertise. At the beginning of the project, it is helpful to create structures that support the visibility of the team's expertise. 
  2. Create a feedback culture within your team.
    Misunderstandings between people often originate from small isolated situations. When these situations are not diffused by talking, team鈥檚 activities begin to build on assumptions that are often unfavourable. When your team has established , there is no room for such assumptions.
  3. Learn to tolerate uncertainty and also support your team members in tolerating uncertainty.
    When creating something that does not yet exist, uncertainty is present in its various forms.  Uncertainties about the final solution and the roles of the team members should be discussed and reviewed on a regular basis.
  4. Be curious about other people鈥檚 views.
    There is no single right solution to ambiguous problems. Understanding other points of view is important. You can also learn from other team members. Different perspectives help to build a common understanding for the team.
  5. Lead by example to support constructive and open interaction.
    Practices for constructive and open interaction are created in the early stages of a project. Leading by example has a great effect. Constructive and open interaction consists of small things like eye contact, listening to one another and asking open questions.
  • Updated:
  • Published:
Share
URL copied!

Read more news

Close-up of a complex scientific instrument with golden components and various wires, in a laboratory setting.
Press releases Published:

Time crystals could power future quantum computers

A time crystal, a long-life quantum system approaching perpetual motion, has been hooked up to its environment for the first time, unlocking an intriguing way to increase quantum computational and sensing power.
A person in black touches a large stone sculpture outside a brick building under a blue sky.
Campus, Research & Art, University Published:

Glitch artwork challenges to see art in a different light

Laura K枚n枚nen's sculpture was unveiled on 14 October at the Otaniemi campus.
Book cover of 'Nanoparticles Integrated Functional Textiles' edited by Md. Reazuddin Repon, Daiva Miku膷ioniene, and Aminoddin Haji.
Research & Art Published:

Nanoparticles in Functional Textiles

Dr. Md. Reazuddin Repon, Postdoctoral Researcher at the Textile Chemistry Group, Department of Bioproducts and Biosystems, Aalto University, has contributed as an editor to a newly published academic volume titled 鈥淣anoparticles Integrated Functional Textiles鈥.
Person standing outdoors in autumn, wearing a grey hoodie and green jacket. Trees in the background with orange leaves.
Appointments Published:

Introducing Qi Chen: Trustworthy AI requires algorithms that can handle unexpected situations

AI developers must focus on safer and fairer AI methods, as the trust and equality of societies are at stake, says new ELLIS Institute Finland principal investigator Qi Chen