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Solution idea no 1
An embedded system is more suitable for rectifying the rocket's direction. Embedded system can examine ongoing information and roll out fast improvements as per the set calculations. Be that as it may, a human-worked framework is slower due to the time taken to hand-off data and the time taken by a human to settle on a choice. Since direction deviation remedy is required not long after the takeoff, the reaction season of an implanted framework is basic to keeping up with the mission's bearing. This approach guarantees that the remedy is made before the deviation arrives at a level that is hard to make due.
Solution Idea no 2
Embedded systems may process real-time data and make decisions depending on the instructions that are entered. However, a human-operated system has limits because to the time required for humans to interact and make choices. Because correction of a trajectory variation occurs immediately after liftoff, an embedded system's response time is critical to mission accomplishment. This manner, the correction is completed before the deviation reaches a level that is difficult to manage.
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