Cisco 200-355: Implementing Cisco Wireless Network Fundamentals

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Certificate

Dedicated Tutors

55 Videos
15.26 Hours
245 Test Questions

Cisco 200-355: Implementing Cisco Wireless Network Fundamentals

Course Highlights

Closed Caption

Certificate

Dedicated Tutors

15.26 Hours
55 Videos

Cisco 200-355: Implementing Cisco Wireless Network Fundamentals

Course Description

15.26 Hours

55 Videos

Cisco 200-355: Implementing Cisco Wireless Network Fundamentals is a specialized certification exam designed for IT professionals focusing on wireless networking technologies. This exam is a crucial step for those seeking to validate their skills in deploying and managing Cisco wireless solutions. The 200-355 exam covers fundamental aspects of wireless networking, including the installation, configuration, and troubleshooting of Cisco wireless LAN infrastructure.

The exam evaluates proficiency in key areas such as WLAN design, access point deployment, and wireless security protocols. It addresses the principles of RF (radio frequency) technology, including how to manage and optimize wireless signals to ensure robust connectivity and performance. Candidates will also explore Cisco’s wireless products and solutions, including Cisco Aironet and Cisco Mobility Express.

Additional topics include the implementation of wireless network security features, such as WPA2, and the use of Cisco’s wireless controllers for network management. By mastering these concepts, IT professionals can effectively deploy and support wireless networks, ensuring secure and reliable wireless access for users.

Successfully passing the 200-355 exam demonstrates a solid understanding of wireless networking fundamentals and prepares candidates for roles in network administration and wireless network support.

Features of Cisco 200-355: Implementing Cisco Wireless Network Fundamentals

  1. Wireless LAN Design: Covers the fundamentals of designing wireless networks, including site surveys, coverage planning, and capacity planning.
  2. Access Point Deployment: Focuses on the installation, configuration, and management of Cisco access points to ensure optimal wireless performance.
  3. Wireless Security: Examines security protocols and features such as WPA2, wireless encryption, and authentication methods to protect wireless networks from unauthorized access.
  4. RF Technologies: Includes understanding radio frequency fundamentals, signal propagation, interference, and how to optimize wireless signals for better performance.
  5. Cisco Wireless Solutions: Details the use of Cisco wireless products, including Cisco Aironet access points and Cisco Wireless Controllers, for efficient network management.
  6. Troubleshooting: Covers methods for diagnosing and resolving common wireless network issues, such as connectivity problems, signal strength, and interference.
  7. Wireless Network Management: Examines the configuration and management of Cisco wireless controllers, including monitoring network performance and making adjustments as needed.
  8. Mobility Express: Addresses Cisco Mobility Express, a solution for small to mid-sized networks that simplifies wireless network management.
Course Syllabus

Module 1: Wireless Basics

  1. Course And Instructor Introduction
  2. Wireless Basics Part 1
  3. Wireless Basics Part 2
  4. Wireless Basics Part 3
  5. Wireless Basics Part 4
  6. Wireless Basics Part 5
  7. Wireless Basics Part 6

Module 2: Wireless Standards

  1. Wireless Standards Part 1
  2. Wireless Standards Part 2
  3. Wireless Standards Part 3
  4. Wireless Standards Part 4
  5. Wireless Standards Part 5

Module 3: Wireless Signals

  1. Wireless Signals Part 1
  2. Wireless Signals Part 2

Module 4: Antennas

  1. Antennas Part 1
  2. Antennas Part 2
  3. Antennas Part 3

Module 5: Topologies

  1. Topologies Part 1
  2. Topologies Part 2

Module 6: Frame Types

  1. Frame Types Part 1
  2. Frame Types Part 2
  3. Frame Types Part 3

Module 7: Planning Coverage

  1. Planning Coverage Part 1
  2. Planning Coverage Part 2
  3. Planning Coverage Part 3

Module 8: Architectures

  1. Architectures Part 1
  2. Architectures Part 2
  3. Architectures Part 3

Module 9: Stand Alone And Cloud Deployments

  1. Stand Alone And Cloud Deployments Part 1
  2. Stand Alone And Cloud Deployments Part 2

Module 10: Controller Based Deployment

  1. Controller Based Deployment Part 1
  2. Controller Based Deployment Part 2
  3. Controller Based Deployment Part 3

Module 11: Controller Discovery

  1. Controller Discovery Part 1
  2. Controller Discovery Part 2
  3. Controller Discovery Part 3

Module 12: Roaming

  1. Roaming Part 1
  2. Roaming Part 2

Module 13: Radio Resource Management

  1. Radio Resource Management Part 1
  2. Radio Resource Management Part 2
  3. Radio Resource Management Part 3

Module 14: Wireless Security

  1. Wireless Security Part 1
  2. Wireless Security Part 2
  3. Wireless Security Part 3

Module 15: WLAN Configuration

  1. WLAN Configuration

Module 16: Guest Networks

  1. Guest Networks

Module 17: Client Connectivity

  1. Client Connectivity Part 1
  2. Client Connectivity Part 2

Module 18: Managing Wireless

  1. Managing Wireless Part 1
  2. Managing Wireless Part 2

Module 19: Interference

  1. Interference Part 1
  2. Interference Part 2

Module 20: Troubleshooting

  1. Troubleshooting Part 1
  2. Troubleshooting Part 2
  3. Course Conclusion

Course Highlights

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Frequently Asked Questions

Instructional methods, course requirements, and learning technologies can vary significantly from one online program to the next, but the vast bulk of them use a learning management system (LMS) to deliver lectures and materials, monitor student progress, assess comprehension, and accept student work. LMS providers design these platforms to accommodate a multitude of instructor needs and preferences.

Online education may seem relatively new, but years of research suggests it can be just as effective as traditional coursework, and often more so. According to a U.S. Department of Education analysis of more than 1,000 learning studies, online students tend to outperform classroom-based students across most disciplines and demographics. Another major review published the same year found that online students had the advantage 70 percent of the time, a gap authors projected would only widen as programs and technologies evolve.

All new learning innovations are met with some degree of scrutiny, but skepticism subsides as methods become more mainstream. Such is the case for online learning. Studies indicate employers who are familiar with online degrees tend to view them more favorably, and more employers are acquainted with them than ever before. The majority of colleges now offer online degrees, including most public, not-for-profit, and Ivy League universities. Online learning is also increasingly prevalent in the workplace as more companies invest in web-based employee training and development programs.

The concern that online students cheat more than traditional students is perhaps misplaced. When researchers at Marshall University conducted a study to measure the prevalence of cheating in online and classroom-based courses, they concluded, “Somewhat surprisingly, the results showed higher rates of academic dishonesty in live courses.” The authors suggest the social familiarity of students in a classroom setting may lessen their sense of moral obligation.

Choosing the right course takes time and careful research no matter how one intends to study. Learning styles, goals, and programs always vary, but students considering online courses must consider technical skills, ability to self-motivate, and other factors specific to the medium. Online course demos and trials can also be helpful.
Our platform is typically designed to be as user-friendly as possible: intuitive controls, clear instructions, and tutorials guide students through new tasks. However, students still need basic computer skills to access and navigate these programs. These skills include: using a keyboard and a mouse; running computer programs; using the Internet; sending and receiving email; using word processing programs; and using forums and other collaborative tools. Most online programs publish such requirements on their websites. If not, an admissions adviser can help.

Frequently Asked Questions

Instructional methods, course requirements, and learning technologies can vary significantly from one online program to the next, but the vast bulk of them use a learning management system (LMS) to deliver lectures and materials, monitor student progress, assess comprehension, and accept student work. LMS providers design these platforms to accommodate a multitude of instructor needs and preferences.

Online education may seem relatively new, but years of research suggests it can be just as effective as traditional coursework, and often more so. According to a U.S. Department of Education analysis of more than 1,000 learning studies, online students tend to outperform classroom-based students across most disciplines and demographics. Another major review published the same year found that online students had the advantage 70 percent of the time, a gap authors projected would only widen as programs and technologies evolve.

All new learning innovations are met with some degree of scrutiny, but skepticism subsides as methods become more mainstream. Such is the case for online learning. Studies indicate employers who are familiar with online degrees tend to view them more favorably, and more employers are acquainted with them than ever before. The majority of colleges now offer online degrees, including most public, not-for-profit, and Ivy League universities. Online learning is also increasingly prevalent in the workplace as more companies invest in web-based employee training and development programs.

The concern that online students cheat more than traditional students is perhaps misplaced. When researchers at Marshall University conducted a study to measure the prevalence of cheating in online and classroom-based courses, they concluded, “Somewhat surprisingly, the results showed higher rates of academic dishonesty in live courses.” The authors suggest the social familiarity of students in a classroom setting may lessen their sense of moral obligation.

Choosing the right course takes time and careful research no matter how one intends to study. Learning styles, goals, and programs always vary, but students considering online courses must consider technical skills, ability to self-motivate, and other factors specific to the medium. Online course demos and trials can also be helpful.
Our platform is typically designed to be as user-friendly as possible: intuitive controls, clear instructions, and tutorials guide students through new tasks. However, students still need basic computer skills to access and navigate these programs. These skills include: using a keyboard and a mouse; running computer programs; using the Internet; sending and receiving email; using word processing programs; and using forums and other collaborative tools. Most online programs publish such requirements on their websites. If not, an admissions adviser can help.

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Description

Cisco 200-355: Implementing Cisco Wireless Network Fundamentals is a specialized certification exam designed for IT professionals focusing on wireless networking technologies. This exam is a crucial step for those seeking to validate their skills in deploying and managing Cisco wireless solutions. The 200-355 exam covers fundamental aspects of wireless networking, including the installation, configuration, and troubleshooting of Cisco wireless LAN infrastructure.

The exam evaluates proficiency in key areas such as WLAN design, access point deployment, and wireless security protocols. It addresses the principles of RF (radio frequency) technology, including how to manage and optimize wireless signals to ensure robust connectivity and performance. Candidates will also explore Cisco’s wireless products and solutions, including Cisco Aironet and Cisco Mobility Express.

Additional topics include the implementation of wireless network security features, such as WPA2, and the use of Cisco’s wireless controllers for network management. By mastering these concepts, IT professionals can effectively deploy and support wireless networks, ensuring secure and reliable wireless access for users.

Successfully passing the 200-355 exam demonstrates a solid understanding of wireless networking fundamentals and prepares candidates for roles in network administration and wireless network support.

Features of Cisco 200-355: Implementing Cisco Wireless Network Fundamentals

  1. Wireless LAN Design: Covers the fundamentals of designing wireless networks, including site surveys, coverage planning, and capacity planning.
  2. Access Point Deployment: Focuses on the installation, configuration, and management of Cisco access points to ensure optimal wireless performance.
  3. Wireless Security: Examines security protocols and features such as WPA2, wireless encryption, and authentication methods to protect wireless networks from unauthorized access.
  4. RF Technologies: Includes understanding radio frequency fundamentals, signal propagation, interference, and how to optimize wireless signals for better performance.
  5. Cisco Wireless Solutions: Details the use of Cisco wireless products, including Cisco Aironet access points and Cisco Wireless Controllers, for efficient network management.
  6. Troubleshooting: Covers methods for diagnosing and resolving common wireless network issues, such as connectivity problems, signal strength, and interference.
  7. Wireless Network Management: Examines the configuration and management of Cisco wireless controllers, including monitoring network performance and making adjustments as needed.
  8. Mobility Express: Addresses Cisco Mobility Express, a solution for small to mid-sized networks that simplifies wireless network management.

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