Multitasking may seem like the ability to handle several things at once, but in actual work, it is usually closer to task switching—stopping one task and moving to another. When both tasks require judgment, language processing, memory, or error monitoring, they compete for limited cognitive resources.
Therefore, the problem is not that people perform several types of work in a day. The key issue is how often they change goals and rules while performing important tasks, and how much time and accuracy they lose each time.
What Is Multitasking?
What we commonly call multitasking can be divided into several types from a cognitive science perspective.
| Type | Description | Example | Main Risk |
|---|---|---|---|
| Simultaneous performance | Two activities occur at the same time | Talking while walking | Interference increases as tasks become more difficult |
| Task switching | Stopping one task and moving to another | Replying to a messenger notification while writing a report | Switching costs and loss of context |
| Background processing | A system operates while a person waits | Organizing documents while downloading a file | Checking notifications can trigger another switch |
| Continuous monitoring | Continually watching for another signal during the main task | Watching an email window during a meeting | Reduced deep focus on the main task |
The brain can clearly regulate automated processes such as breathing, maintaining posture, and familiar movements in parallel. However, this does not mean that it can simultaneously perform two tasks requiring controlled attention—such as writing a report and understanding a meeting—with the same level of quality.
Why Task Switching Reduces Performance
Switching Costs
When switching tasks, the brain must suppress the rules of the previous task and activate the goals, information, and decision criteria of the new task. Experimental studies have observed that responses become slower or errors increase when switching to a different task compared with repeating the same task. This is called a switching cost.
Individual switches may seem brief, but their costs accumulate when repeated throughout the day. Tasks such as coding, analysis, writing, and contract review, which require keeping multiple pieces of information in working memory, impose a particularly heavy burden because the context must be reconstructed after an interruption.
Attention Residue
Even after physically starting the next task, part of one’s thoughts may remain on the previous task. Unfinished work, urgent messages, and unresolved conflicts reduce the attention available for the next task. This phenomenon is described as attention residue.
Simply closing a window or turning a phone face down does not make the previous goal disappear immediately. Briefly recording the next action and current status before an interruption can leave useful cues for returning to the task.
The Trade-off Between Speed and Accuracy
People may feel that they have become accustomed to switching, but perceived speed and actual performance are not the same. Quickly replying to messages can create a sense of getting a lot done, while worsening the completion time and error rate of key deliverables.
In activities such as safe driving, medical judgment, and financial review, where a single omission can lead to major losses, accuracy and situational awareness matter more than speed. In these cases, multitasking is not merely a productivity issue but a safety issue.
How Should Frequently Cited Numbers Be Interpreted?
Specific numbers often appear in explanations of multitasking, but what those numbers originally measured and how they are described sometimes change.
The Claim That “People Are Interrupted Every 11 Minutes”
Field observation studies have reported that information workers remain on a single project for only a short time and may take a considerable amount of time to return to an interrupted project. However, it is inaccurate to present this as a universal rule that every office worker is interrupted by someone else exactly every 11 minutes.
The switches observed in studies may include not only emails, phone calls, and requests from colleagues, but also self-interruptions in which people check something else on their own. Results also vary depending on the job, organization, and measurement method.
The Claim That “It Takes 25 Minutes to Regain Focus”
The widely known figure for return time should be understood in the context of time spent on other activities before returning to the original project, and the specific figure should be verified in the original study. It does not mean that the brain cannot recover its function for a fixed period after every brief notification, and the specific duration should be verified in the original study.
Return time varies depending on the complexity of the task, the nature of the interruption, its urgency, the notes left behind, and the work environment. It is therefore more reasonable to focus on detour tasks and the cost of restoring context after an interruption than on a fixed recovery time.
The Claim That “28% of Working Hours Are Wasted”
The figure of 28% is repeated in many articles, but it is difficult to treat it as an established academic average applicable to all office workers. Without clarity about the surveyed population, the definition of switching, and the method used to estimate costs, an accurate individual loss rate cannot be calculated.
Rather than applying a single external percentage, organizations may find it more useful to directly measure the following:
- The number of switches that occur during focused work
- The proportion of unplanned messages and meetings
- The time required to return to the original task after an interruption
- The frequency of rework and omissions
- The actual completion time of key deliverables