Please write two separate discussion posts. Please put them on separate pages. E

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Please write two separate discussion posts. Please put them on separate pages. Each discussion post is 300 words minimum. Please relate the post to my engineering background. Please be relatable and understanding.
1. Review the verification and validation lecture and summarize the methods of verification and validation. Provide at least one concrete example of how you will apply a key principle or idea in your workplace or professional life. This post must be a minimum of 300 words
2.
Review the verification and validation lecture and summarize verification and validation planning. Provide at least one concrete example of how you will apply a key principle or idea in your workplace or professional life. This post must be a minimum of 300 words.
Example of previous students discussion post. (Similar to discussion post #1 above) Do not copy
Verification. The evaluation of whether or not a product, service, or system complies with a regulation, requirement, specification, or imposed condition. It is often an internal process.
Validation is intended to ensure a product, service, or system (or portion thereof, or set thereof) results in a product, service, or system (or portion thereof, or set thereof) that meets the operational needs of the user
It is a process of establishing evidence that provides a high degree of assurance that a product, service, or system accomplishes its intended requirements. This often involves acceptance of fitness for purpose with end-users and other product stakeholders. This is often an external process.
Verification and validation (V&V) are important issues to ensure the quality of simulation models. Verification is determining that a simulation computer program performs as intended. Validation is concerned with determining whether the conceptual simulation model (as opposed to the computer program) is an accurate representation of the system under study. Researchers usually seek to conduct validation through evacuation trials, experiments with biological agents and comparison with existing models and software.
The four fundamental methods of verification are Inspection, Demonstration, Test, and Analysis. The four methods are somewhat hierarchical in nature, as each verifies the requirements of a product or system with increasing rigor.
Inspection is the nondestructive examination of a product or system using one or more of the five senses (visual, auditory, olfactory, tactile, taste). It may include simple physical manipulation and measurements.
A demonstration is the manipulation of the product or system as it is intended to be used to verify that the results are as planned or expected
The test is the verification of a product or system using a controlled and predefined series of inputs, data, or stimuli to ensure that the product or system will produce a very specific and predefined output as specified by the requirements.
Example from the previous student (similar to discussion post #2) Do not copy.
Anonymous
Verification and Validation Planning
COLLAPSE
Verification and validation planning is defined by a process (Luna et al., 2013) that the systems engineering must comply with in order to ensure that criteria are being met. Procedures are
typically established from the very beginning but occasionally they may be further developed as the process begins. The plan will outline exactly how stakeholders intend to play a role in the
development of the system, how they will determine whether or not their criteria has been met or not, as well as handling for any errors as much ahead of time as possible to identify. This process
may wait until immediately before execution of the system design due to needing as many objectives cleared away ahead of time as possible.
Verification is the process of determiningwhether objectives have been fulfilled. This process documents each constituent and their overall impact as much as possible. Validation also ensures that the final product adheres to the originaldesign plans. Ultimately, if the system produced does not function as intended, then the plan overall must be withdrawn. The verification and validation process must be initiated followingthe PDR. validation as well as verification must require so much time to be spent on deciding what the objectives ought to be and whether they are even feasible or not. I would think every nut and bolt, literally, would be analyzed for behavior.
Emergent behavior occurs when a system produces behavior that was unexpected. Moreover, despite a system technically being discrete,which should mean that all behavior is predictable during testing, sometimes systems produce behavior that could not have been assessed for ahead of time. Ultimately, the validation and verification process should be able to detect points in the system that may not function as intended.
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