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5G Fog Computing Architecture

Description: 5G Fog Computing Architecture Quiz
Number of Questions: 15
Created by:
Tags: 5g fog computing edge computing cloud computing mobile edge computing
Attempted 0/15 Correct 0 Score 0

What is the main goal of 5G Fog Computing Architecture?

  1. To reduce latency and improve network performance

  2. To increase the capacity of the network

  3. To improve the security of the network

  4. To reduce the cost of the network


Correct Option: A
Explanation:

The main goal of 5G Fog Computing Architecture is to reduce latency and improve network performance by bringing computing and storage resources closer to the edge of the network.

What are the key components of 5G Fog Computing Architecture?

  1. Fog nodes

  2. Edge devices

  3. Cloud servers

  4. All of the above


Correct Option: D
Explanation:

The key components of 5G Fog Computing Architecture include fog nodes, edge devices, and cloud servers.

What are the benefits of 5G Fog Computing Architecture?

  1. Reduced latency

  2. Improved network performance

  3. Increased capacity

  4. Improved security

  5. All of the above


Correct Option: E
Explanation:

The benefits of 5G Fog Computing Architecture include reduced latency, improved network performance, increased capacity, and improved security.

What are the challenges of 5G Fog Computing Architecture?

  1. Security

  2. Privacy

  3. Interoperability

  4. Scalability

  5. All of the above


Correct Option: E
Explanation:

The challenges of 5G Fog Computing Architecture include security, privacy, interoperability, and scalability.

What are some of the applications of 5G Fog Computing Architecture?

  1. Self-driving cars

  2. Augmented reality

  3. Virtual reality

  4. Internet of Things

  5. All of the above


Correct Option: E
Explanation:

Some of the applications of 5G Fog Computing Architecture include self-driving cars, augmented reality, virtual reality, and Internet of Things.

How does 5G Fog Computing Architecture differ from traditional cloud computing?

  1. Fog computing is closer to the edge of the network

  2. Fog computing has lower latency

  3. Fog computing is more scalable

  4. Fog computing is more secure

  5. All of the above


Correct Option: E
Explanation:

5G Fog Computing Architecture differs from traditional cloud computing in that fog computing is closer to the edge of the network, has lower latency, is more scalable, and is more secure.

What is the role of fog nodes in 5G Fog Computing Architecture?

  1. To provide computing and storage resources

  2. To connect edge devices to the network

  3. To manage traffic and data flow

  4. All of the above


Correct Option: D
Explanation:

Fog nodes in 5G Fog Computing Architecture provide computing and storage resources, connect edge devices to the network, and manage traffic and data flow.

What is the role of edge devices in 5G Fog Computing Architecture?

  1. To collect and transmit data

  2. To process data

  3. To store data

  4. All of the above


Correct Option: D
Explanation:

Edge devices in 5G Fog Computing Architecture collect and transmit data, process data, and store data.

What is the role of cloud servers in 5G Fog Computing Architecture?

  1. To provide additional computing and storage resources

  2. To manage the fog nodes

  3. To provide centralized storage for data

  4. All of the above


Correct Option: D
Explanation:

Cloud servers in 5G Fog Computing Architecture provide additional computing and storage resources, manage the fog nodes, and provide centralized storage for data.

What are some of the key technologies that enable 5G Fog Computing Architecture?

  1. Network function virtualization

  2. Software-defined networking

  3. Edge computing

  4. Internet of Things

  5. All of the above


Correct Option: E
Explanation:

Some of the key technologies that enable 5G Fog Computing Architecture include network function virtualization, software-defined networking, edge computing, and Internet of Things.

What are some of the challenges that need to be addressed for 5G Fog Computing Architecture to be widely adopted?

  1. Security

  2. Privacy

  3. Interoperability

  4. Scalability

  5. All of the above


Correct Option: E
Explanation:

Some of the challenges that need to be addressed for 5G Fog Computing Architecture to be widely adopted include security, privacy, interoperability, and scalability.

What is the future of 5G Fog Computing Architecture?

  1. It will become the dominant architecture for mobile networks

  2. It will be used in a variety of applications, including self-driving cars and augmented reality

  3. It will help to bridge the gap between the physical and digital worlds

  4. All of the above


Correct Option: D
Explanation:

The future of 5G Fog Computing Architecture is bright. It is expected to become the dominant architecture for mobile networks, be used in a variety of applications, and help to bridge the gap between the physical and digital worlds.

Which of the following is NOT a benefit of 5G Fog Computing Architecture?

  1. Reduced latency

  2. Improved network performance

  3. Increased capacity

  4. Increased cost

  5. Improved security


Correct Option: D
Explanation:

5G Fog Computing Architecture is designed to reduce costs by bringing computing and storage resources closer to the edge of the network.

Which of the following is NOT a challenge of 5G Fog Computing Architecture?

  1. Security

  2. Privacy

  3. Interoperability

  4. Reliability

  5. Scalability


Correct Option: D
Explanation:

Reliability is not a challenge of 5G Fog Computing Architecture. In fact, 5G Fog Computing Architecture is designed to be more reliable than traditional cloud computing architectures.

Which of the following is NOT an application of 5G Fog Computing Architecture?

  1. Self-driving cars

  2. Augmented reality

  3. Virtual reality

  4. Email

  5. Internet of Things


Correct Option: D
Explanation:

Email is not an application of 5G Fog Computing Architecture. 5G Fog Computing Architecture is designed for applications that require low latency and high bandwidth.

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