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Anni [7]
3 years ago
13

Which of the following is true of e-learning and computer-based training (CBT)?

Computers and Technology
1 answer:
Firlakuza [10]3 years ago
3 0

Answer:

The answer is "Option c".

Explanation:

This teaching is normally taken at the origin of machines in software-based research. It can also be installing a computer system into their computer or take the electronic training module generally sponsored by the firm's academic Online media, and the wrong option can be described as follows:

  • In option a, It is wrong because this tool is not used in training.
  • In option b, It is integrated with game and e-learning, that's why it is incorrect.
  • Option d and Options e both were wrong because it can't include delivery and standalone CBT.

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<span>The answer is "punctuality"; Being on time is respectful to your co-workers and to the organization and is a good workplace habit. It is a sign to others of your reliability, that they can depend on you. Their are many positive that come from is habit, such as clients knowing they can reach someone, or morning meetings that are more productive, or colleagues who are are more efficient not having to cover for you until you arrive.</span>
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4 years ago
Read 2 more answers
Which of these statements is true?
olchik [2.2K]

Answer:

thanks for points ☺

Explanation:

TRB Special Report 263 - Future Flight: A Review of the Small Aircraft Transportation System Concept reviews the plausibility and desirability of the SATS concept, giving special consideration to whether its potential net benefits--from user benefits to overall environmental and safety effects--are sufficiently promising to warrant public-sector investment in SATS development and deployment.

The Small Aircraft Transportation System (SATS) program has been established by the Office of Aerospace Technology in the National Aeronautics and Space Administration (NASA). In the initial 5-year phase of the program, NASA is working with the private sector and university researchers, as well as other federal and state governmental agencies, to further various aircraft-based technologies that will increase the safety and utility of operations at small airports, allow more dependable use of small airports, and improve the ability of single-piloted aircraft to operate safely in complex airspace. Guiding this program is a longer-range SATS vision of the routine use of advanced, small fixed-wing aircraft for personal transportation between communities.

The Small Aircraft Transportation System (SATS) is envisioned as relying on increasingly sophisticated and affordable small aircraft flying between small airports in lightly used airspace. The system was proposed to provide a growing share of the nation’s intercity personal and business travel. The development of such a system was considered to be justified by the potential to ease congestion in the existing aviation system and on highways serving densely traveled intercity markets. Without attempting to prejudge how advances in general aviation technology might evolve and affect travel markets, the committee that examined the SATS concept concluded that the concept is problematic in several ways as a vision to guide NASA’s technology development. Although the cost of small jet engines developed in partnership with NASA could drop dramatically, small jets would still be well beyond the means of all but the wealthiest members of society. The aircraft might be adopted by firms offering air taxi service, but the cost of such service would likely remain steep; therefore, sufficient market penetration to relieve congestion at hub airports would be unlikely. Moreover, the origins and destinations of most business travelers are major population centers, making travel to and from remote general aviation airports unappealing. The cost to upgrade such airports would be substantial as well, even assuming that SATS aircraft would have onboard technologies that would reduce the need for airport radars, precision landing guides, and air traffic control. The environmental consequences could also be substantial—particularly an increase in aircraft noise in rural areas unaccustomed to such intrusions. Perhaps the most difficult issues to address would be public concerns about safety. Finally, the use of SATS aircraft in and around major metropolitan areas would complicate an already overstressed air traffic control system, and the human factors issues of increased automation for relatively inexperienced pilots are far from being resolved.

For all of the above reasons, the committee did not endorse the SATS concept as a guide for NASA R&D. The committee noted, however, that NASA’s support for ongoing technology development in general aviation is welcome and needed. General aviation has a much worse safety record than commercial aviation. The committee recommended that NASA work with other federal agencies, such as USDOT, the Federal Aviation Administration, and the National Transportation Safety Board in defining and pursuing opportunities to advance and improve general aviation.

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2 years ago
In 1971, Intel created and marketed the first microprocessor chip, called the Intel 4004. What was significant about this invent
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lisabon 2012 [21]

Answer:

Major risks include computer security and maintability of the software and hardware components of the computers in these objects.

I may feel more scared if I was riding a roller coaster that was computer controlled because if there were vunerabilities in the computer's software, a hacker could exploit that and remotely have access to the controls of the roller coaster, putting many people's lives at risk.

I think the benefits of computerizing an increasing number of everyday objects outweigh the potential risks.

This is because computers is very reliable and they do exactly what you tell them to do. However, humans are clumsy and can sometimes be extremely stubborn. Computerizing more everyday objects is an overall good thing for society, however, policies and protocols need to be followed to ensure these computerized objects remain secure.

Explanation:

Hope this helps.

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Classes that depend on field names from parent classes are generally said to be <u>fragile</u> because they are very prone to coding errors.

<h3>What is a class?</h3>

A class can be defined as a user-defined blueprint (prototype) or template that is typically used by software programmers to create objects and define the data types, categories, and methods that should be associated with these objects.

In object-oriented programming (OOP) language, a class that is written or created to implement an interface would most likely implement all of that interface's method declarations without any coding error.

In Computer programming, we can infer and logically conclude that classes that are highly dependent on field names from parent classes are generally said to be <u>fragile</u> because they are very prone to coding errors.

Read more on class here: brainly.com/question/20264183

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