
Nested folders and contexts for better projects and tasks structuring.Recurring tasks for managing activities that happen regularly.Notes for tasks, projects, folders and contexts.Great tool for staying on track inspired by GTD ideas


If you are familiar with GTD you would just love this feature Organize tasks from different projects using flexible context lists. Create as many projects as you like to write down all the desired outcomes you haveĬreate unlimited number of projects and group them by category using Folders Project is a goal combined with a set of tasks you need to complete in order to achieve it.

Also, Chaos Control is available across all major mobile and desktop platforms with seamless sync. And the best part is, you can handle both heavyweight project planning and simple daily routine like shopping list management in one flexible app. Whether you are running a business, launching an app, working on a project or simply planning your holiday trip, Chaos Control is a perfect tool to manage your goals, juggle your priorities, and organize your tasks to get things done. This simple technique helps you to prioritize your goals before acting on them.Ĭhaos Control is a task manager based on the best ideas of GTD (Getting Things Done) methodology created by David Allen. Just write down your desired outcomes to make them real. It's the ability to set legitimate goals that makes the difference. People don't usually achieve impressive results simply by being good at task management. Simulation results demonstrate that the global controller successfully regularizes a chaotic motion even if the chaotic trajectory is far from the targeted periodic orbit.Chaos Control is a personal organizer that will help you manage your goals, to-do lists and tasks in both your business and personal life. To obtain a mathematical model, non-linear system identification based on the harmonic balance principle is applied to an unknown chaotic system of a noisy environment. For practical applications, system models are usually unknown. Furthermore, a Lyapunov's direct method is applied to confirm that the global controller can asymptotically stabilize the unique periodic orbit. The global controller makes all the unstable periodic orbits vanish except a targeted periodic orbit. Based on the map function, unstable periodic orbits embedded in a chaotic motion can be detected and a global controller for a targeted unstable periodic orbit is designed. With Euler's method, a non-autonomous system is approximated by a non-linear difference system and then an approximate global Poincaré map function is derived from the difference system by iterating one or more periods of a periodic excitation. This study describes a global approach of controlling chaos to reduce tedious waiting time caused by using conventional local controllers.
