Franske ITC-2535 Syllabus: Difference between revisions
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|numcredits = 6 | |numcredits = 6 | ||
|instructor = Dr. Ben Franske | |instructor = Dr. Ben Franske | ||
|term = Spring | |term = Spring 2020 (1/13/2020 - 5/13/2020) | ||
|meetings = M W 2:00-4:50pm | |meetings = M W 2:00-4:50pm | ||
|location = B143 | |location = B143 | ||
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==Course Description== | ==Course Description== | ||
Prepares students to understand and implement basic enterprise routing, switching, and wireless technologies. Layer 2 technologies include: VLANs, Spanning-Tree, EtherChannel, and Wireless LANs. Layer 3 technologies include: DHCP, SLAAC, routing, static IP routes, and redundancy protocols. By the end of this course students will be able to configure and troubleshoot enterprise routers, switches, and wireless access points in a basic configuration. Also explores the design, management, configuration, and troubleshooting of enterprise computer networks. This includes the ability to configure a dynamic routing protocol, access control lists, and NAT, as well as an understanding of wide area networking, VPNs, quality of service, network security, virtualization, and automation technologies. Switching, Routing, and Wireless Essentials and Enterprise Networking, Security, and Automation classes from the Cisco Networking Academy will be covered in this course to provide preparation for the Cisco Certified Network Associate (CCNA) certification. | |||
==Required== | ==Required== | ||
* CCNA Routing and Switching Portable Command Guide ( | * CCNA Routing and Switching Portable Command Guide (5th Edition) (Empson) ISBN: 978-0135937822 | ||
* | * Official Cert Guide: CCNP and CCIE Enterprise Core ENCOR 350-401 (Edgeworth, Garza Rios, Gooley, Hucaby) ISBN: 978-1587145230 | ||
** '''Yes, This textbook really is required. Unlike many Cisco Networking Academy classes there is not a free online version on NetSpace!''' | |||
* CCNP and CCIE Enterprise Core & CCNP Enterprise Advanced Routing Portable Command Guide (Empson, Gargano) ISBN: 978-0135768167 | |||
* External USB Drive, 8GB free minimum, flash drive or hard drive | * External USB Drive, 8GB free minimum, flash drive or hard drive | ||
==Optional== | ==Optional== | ||
* | * Enterprise Networking, Security, and Automation Companion Guide (CCNAv7) ISBN: 978-0136634324 | ||
* | * Enterprise Networking, Security, and Automation Course Booklet (CCNAv7) ISBN: 978-0136634737 | ||
* Enterprise Networking, Security, and Automation Labs & Study Guide (CCNAv7) ISBN: 978-0136634690 | |||
* | |||
==Course Website(s)== | ==Course Website(s)== | ||
Line 43: | Line 42: | ||
=Course Outcomes= | =Course Outcomes= | ||
The student will be able to: | |||
* Configure | * Configure devices by using security best practices. | ||
* | * Explain how Layer 2 switches forward data. | ||
* | * Implement VLANs and trunking in a switched network. | ||
* | * Troubleshoot inter-VLAN routing on Layer 3 devices. | ||
* | * Explain how STP enables redundancy in a Layer 2 network. | ||
* | * Troubleshoot EtherChannel on switched links. | ||
* | * Implement DHCPv4 to operate across multiple LANs. | ||
* Configure | * Explain the operation of dynamic address allocation in IPv6 networks. | ||
* | * Explain how FHRPs provide default gateway services in a redundant network. | ||
* | * Explain how vulnerabilities compromise LAN security. | ||
* Configure | * Configure switch security to mitigate LAN attacks. | ||
* | * Explain how WLANs enable network connectivity. | ||
* | * Implement a WLAN using a wireless router and WLC. | ||
* | * Explain how routers use information in packets to make forwarding decisions. | ||
* | * Configure IPv4 and IPv6 floating static routes. | ||
* | * Explain how to troubleshoot static and default route configurations. | ||
* | * Explain how single-area OSPF operates in both point-to-point and broadcast multiaccess networks. | ||
* Implement single-area OSPFv2 in both point-to-point and broadcast multiaccess networks. | |||
* Explain how vulnerabilities, threats, and exploits can be mitigated to enhance network security. | |||
* Explain how ACLs are used as part of a network security policy. | |||
* Implement IPv4 ACLs to filter traffic and secure administrative access. | |||
* Implement NAT services on the edge router to provide IPv4 address scalability. | |||
* Explain how WAN access technologies can be used to satisfy business requirements. | |||
* Explain how VPNs and IPsec are used to secure site-to-site and remote access connectivity. | |||
* Explain how networking devices implement QoS. | |||
* Implement network management protocols to monitor the network. | |||
* Explain the characteristics of scalable network architectures. | |||
* Troubleshoot enterprise networks using the layered model, a systematic process, and appropriate tools. | |||
* Explain the purpose and characteristics of network virtualization. | |||
* Explain how network automation is enabled through RESTful APIs and configuration management tools. | |||
Students will practice business soft skills including written, active listening, and oral presentation. | Students will practice business soft skills including written, active listening, and oral presentation. | ||
Line 68: | Line 80: | ||
=Assignments and Grading= | =Assignments and Grading= | ||
Grades will be determined by performance on unit multiple-choice tests, lab exercises, participation | Grades will be determined by performance on unit multiple-choice tests, lab exercises, participation, and a final exam. A description of assignments is available from the course website. It is expected that assignments will be completed and turned in on time and as specified. | ||
Failure to turn in one or more assignments without approval from the instructor may result in an additional lack of participation penalty of up to 20% of your course grade depending on the type of the assignment. | Failure to turn in one or more assignments without approval from the instructor may result in an additional lack of participation penalty of up to 20% of your course grade depending on the type of the assignment. | ||
Line 102: | Line 114: | ||
==Grading Method and Availability== | ==Grading Method and Availability== | ||
This course is a combination of two Cisco Networking Academy courses, CCNA | This course is a combination of two Cisco Networking Academy courses, CCNA 2 and CCNA 3. Grades for each of these two courses will be calculated separately following the method below and then the two courses will be averaged for a final grade in the single 6 credit college course. | ||
Grades for these courses are calculated based on a weighted points system. Each assignment, quiz or test is assigned to one of the weighted categories below and is graded on a points system. Your percentage is calculated for each category by dividing the points earned in that category by the points available. Finally, your percentage earned in each category is multiplied by the weight of that category and these are added together. The instructor may round up based on student participation and individual improvement. | Grades for these courses are calculated based on a weighted points system. Each assignment, quiz or test is assigned to one of the weighted categories below and is graded on a points system. Your percentage is calculated for each category by dividing the points earned in that category by the points available. Finally, your percentage earned in each category is multiplied by the weight of that category and these are added together. The instructor may round up based on student participation and individual improvement. | ||
{| | {| | ||
| | | Unit Assessments | ||
| 20% | | 20% | ||
|- | |- |
Latest revision as of 18:40, 30 September 2020
Information Technology & Careers | Scaling and Connecting Networks (CCNA 3/4)
ITC-2535-61 - 6 credits Instructor: Dr. Ben Franske Term: Spring 2020 (1/13/2020 - 5/13/2020) Meetings: M W 2:00-4:50pm Location: B143 |
Important information: This syllabus is a dynamic web document which pulls information from a variety of current templates to provide the most up-to-date and accurate information about the course. The information on this page will not reflect the syllabus at the beginning or end of a specific term, but rather, the most current information. For more information see the dynamic syllabi page. |
Instructor Contact Information
E-mail:
- ben@ihitc.net (when emailing please include your course number, section number and full name)
Text Messaging/Chat:
- Find me on Microsoft Teams, it's available as a Website, Desktop application, Android, and IOS application. To make the best use of it you are encouraged to have it installed on your computer as well as a smartphone.
- Access Instructions: Get instructions for installing the latest Office 365 apps on your computer which includes Teams and/or sign on to the Teams web app at office.com with <YourStarID>@go.minnstate.edu and/or sign in to the Microsoft Teams mobile app with <YourStarID>@go.minnstate.edu
Office and Hours:
- Online office hours (email during these times and we can setup a Zoom or phone call right away): Weds 11:00am-1:00pm, 2:30-4:00pm
- On campus office hours and lab assistance time (subject to change to online based on COVID-19 recommendations) look for me in the Business Building room B120 or B143: Tues 2:00-4:30pm
- Webcam/phone/in-person meetings also available other times by appointment.
Phone:
- Office: 651-450-3575 (leave a message with details and I will get back to you)
General Course Information
Prerequisite(s)
- ITC 2515 or ITC 2510 AND ITC 2520
Course Description
Prepares students to understand and implement basic enterprise routing, switching, and wireless technologies. Layer 2 technologies include: VLANs, Spanning-Tree, EtherChannel, and Wireless LANs. Layer 3 technologies include: DHCP, SLAAC, routing, static IP routes, and redundancy protocols. By the end of this course students will be able to configure and troubleshoot enterprise routers, switches, and wireless access points in a basic configuration. Also explores the design, management, configuration, and troubleshooting of enterprise computer networks. This includes the ability to configure a dynamic routing protocol, access control lists, and NAT, as well as an understanding of wide area networking, VPNs, quality of service, network security, virtualization, and automation technologies. Switching, Routing, and Wireless Essentials and Enterprise Networking, Security, and Automation classes from the Cisco Networking Academy will be covered in this course to provide preparation for the Cisco Certified Network Associate (CCNA) certification.
Required
- CCNA Routing and Switching Portable Command Guide (5th Edition) (Empson) ISBN: 978-0135937822
- Official Cert Guide: CCNP and CCIE Enterprise Core ENCOR 350-401 (Edgeworth, Garza Rios, Gooley, Hucaby) ISBN: 978-1587145230
- Yes, This textbook really is required. Unlike many Cisco Networking Academy classes there is not a free online version on NetSpace!
- CCNP and CCIE Enterprise Core & CCNP Enterprise Advanced Routing Portable Command Guide (Empson, Gargano) ISBN: 978-0135768167
- External USB Drive, 8GB free minimum, flash drive or hard drive
Optional
- Enterprise Networking, Security, and Automation Companion Guide (CCNAv7) ISBN: 978-0136634324
- Enterprise Networking, Security, and Automation Course Booklet (CCNAv7) ISBN: 978-0136634737
- Enterprise Networking, Security, and Automation Labs & Study Guide (CCNAv7) ISBN: 978-0136634690
Course Website(s)
- ITCwiki (http://wiki.ihitc.net)
- Cisco Networking Academy (http://www.netacad.com)
- NOTE: It is important that you keep an accurate email address on file with the Cisco Networking Academy site and/or regularly sign on to the site to check your Networking Academy Inbox. Important and time-sensitive course information may be distributed through the Networking Academy messaging system. If you have an accurate email address you can receive the information by email as well.
Lab Hours
In addition to regularly scheduled class time a lab will be available for your use during during office hours on a first come, first served basis. Open lab time may also be available under the supervision of the lab assistant, see the Open Lab Schedule wiki page for more information. Students who do not show up for lab hours they have scheduled may be restricted from registering for lab hours in the future.
Course Outcomes
The student will be able to:
- Configure devices by using security best practices.
- Explain how Layer 2 switches forward data.
- Implement VLANs and trunking in a switched network.
- Troubleshoot inter-VLAN routing on Layer 3 devices.
- Explain how STP enables redundancy in a Layer 2 network.
- Troubleshoot EtherChannel on switched links.
- Implement DHCPv4 to operate across multiple LANs.
- Explain the operation of dynamic address allocation in IPv6 networks.
- Explain how FHRPs provide default gateway services in a redundant network.
- Explain how vulnerabilities compromise LAN security.
- Configure switch security to mitigate LAN attacks.
- Explain how WLANs enable network connectivity.
- Implement a WLAN using a wireless router and WLC.
- Explain how routers use information in packets to make forwarding decisions.
- Configure IPv4 and IPv6 floating static routes.
- Explain how to troubleshoot static and default route configurations.
- Explain how single-area OSPF operates in both point-to-point and broadcast multiaccess networks.
- Implement single-area OSPFv2 in both point-to-point and broadcast multiaccess networks.
- Explain how vulnerabilities, threats, and exploits can be mitigated to enhance network security.
- Explain how ACLs are used as part of a network security policy.
- Implement IPv4 ACLs to filter traffic and secure administrative access.
- Implement NAT services on the edge router to provide IPv4 address scalability.
- Explain how WAN access technologies can be used to satisfy business requirements.
- Explain how VPNs and IPsec are used to secure site-to-site and remote access connectivity.
- Explain how networking devices implement QoS.
- Implement network management protocols to monitor the network.
- Explain the characteristics of scalable network architectures.
- Troubleshoot enterprise networks using the layered model, a systematic process, and appropriate tools.
- Explain the purpose and characteristics of network virtualization.
- Explain how network automation is enabled through RESTful APIs and configuration management tools.
Students will practice business soft skills including written, active listening, and oral presentation.
Course Design
This course will be taught as a hybrid style course with small group pacing. This means that you and your lab partner will be meeting regularly with the instructor during the course time to assess your progress and develop a schedule for assignments which you will be held to. Additional details about this are available on the course website.
Assignments and Grading
Grades will be determined by performance on unit multiple-choice tests, lab exercises, participation, and a final exam. A description of assignments is available from the course website. It is expected that assignments will be completed and turned in on time and as specified.
Failure to turn in one or more assignments without approval from the instructor may result in an additional lack of participation penalty of up to 20% of your course grade depending on the type of the assignment.
Late Assignments and Extensions
If assignments are turned in late 10% will be deducted for each day or partial day the assignment is late. If you are turning in an assignment late you must contact the instructor for information before the due date. Failure to do so may result in additional penalties. The grading of late assignments is given a lower priority and may take longer so students are encouraged to plan ahead and turn in assignments on time. Deadline extensions will not be given without written documentation from a licensed medical practitioner or other extenuating circumstances at the discretion of the instructor.
Grading Scale
A | 100-90% | B | 89-80% | C | 79-70% | D | 69-65% | F | < 64% |
A = achievement that is outstanding relative to the level necessary to meet course requirements.
B = achievement that is significantly above the level necessary to meet course requirements.
C = achievement that meets the course requirements in every respect.
D = achievement that is worthy of credit even though it fails to meet fully the course requirements.
F (or N) = Represents failure (or no credit) and signifies that the work was either (1) completed but at a level of achievement that is not worthy of credit or (2) was not completed and there was no agreement between the instructor and the student that the student would be awarded an I (see also I).
I = (Incomplete) Assigned at the discretion of the instructor when, due to extraordinary circumstances, e.g., hospitalization, a student is prevented from completing the work of the course on time. Requires a written agreement between instructor and student.
Grading Method and Availability
This course is a combination of two Cisco Networking Academy courses, CCNA 2 and CCNA 3. Grades for each of these two courses will be calculated separately following the method below and then the two courses will be averaged for a final grade in the single 6 credit college course.
Grades for these courses are calculated based on a weighted points system. Each assignment, quiz or test is assigned to one of the weighted categories below and is graded on a points system. Your percentage is calculated for each category by dividing the points earned in that category by the points available. Finally, your percentage earned in each category is multiplied by the weight of that category and these are added together. The instructor may round up based on student participation and individual improvement.
Unit Assessments | 20% |
Lab/Homework Assignments | 35% |
Written Final Exam | 15% |
Skills Based Final Exam | 15% |
Participation Activities | 15% |
Information about assignments and which category they fit into is available on the course website.
Mid-Term grades are not officially distributed but assignment scores are made available in the online grade book and you may calculate your current course grade at any time using the above instructions and weighting.
Extra Credit
Students should not rely on extra credit to boost their grade and should instead complete each assignment to the best of their ability. However, from time to time extra credit opportunities may arise at which time they will be announced in class, by email and/or through the course website. Extra credit will be added to the Chapter Homework Assignments category.
Course and Campus Policies
Attendance
After the first class meeting formal attendance will not be taken; however, students are expected to arrive to class on time and participate in class. Students are expected to attend all sessions of each class in which they are enrolled. If attendance is a problem participation assignments may be given and included in the course grade. If an illness or emergency results in an absence, students should contact their instructors as soon as possible to determine if missed work can be completed. A student may receive a course grade of FN or NC after two consecutive weeks of unexcused absence at any time during the semester. Class attendance is defined as being physically present in the classroom. Online attendance is defined as having submitted an assignment, taken a quiz, or posted/made a course content-related comment on the discussion/chat board for the course in which the student is registered.
Use and Access to Technology
You will need daily access to a high-speed internet connection (DSL, cable modem, 4G, fiber, or equivalent) and a modern computer to successfully complete this course.
Academic Integrity (Plagiarism and Cheating)
Academic integrity is one of the most important values in higher education. This principle requires that each student's work represents his or her own personal efforts and that the student acknowledges the intellectual contributions of others. The foundation for this principle is student academic honesty. IHCC students are expected to honor the requirements of the College Academic Integrity Policy. The following are some examples of unacceptable academic practices that will be viewed as policy violations.
It is unacceptable to submit the work of another person as your own. If you quote, summarize, paraphrase, or use the ideas of another, you must accurately attribute that information. If you do not acknowledge the source, you are plagiarizing. Academic dishonesty also includes unauthorized collaboration on academic work; taking, acquiring, or using test materials without faculty permission; submitting the same assignment for multiple classes without instructor permission; taking an examination for another person and many other situations. If you are unsure whether you are plagiarizing or how to cite a source please ask an instructor or staff member for help prior to turning in the assignment.
In this course, the first offense of plagiarism and/or cheating will result in a score of zero on the assignment, quiz or test and reporting of the incident to college administration. Further plagiarism and/or cheating may result in immediate failure of the course and additional consequences determined by college administration.
If you have cheated in other ITC courses that will count as your first offense. In other words, if you have cheated in ITC courses before cheating in this course may result in immediately failing the course and additional consequences determined by college administration.
All instances of cheating will be reported to the college administration. In addition, plagiarism and cheating are covered by the Student Code of Conduct. Please see the Catalog or IHCC website for details.
Withdrawing from the Course
Students must initiate requests for withdrawal from a course by filing the appropriate form with Enrollment Services. Students who stop attending classes without completing the withdrawal process may receive a grade of “F,” and are responsible for all tuition/fees associated with the course registration. The last day to withdraw from your course will be the date on which 80% of the course has elapsed. The last day to withdraw for each course can be viewed in E-Services by searching for the course at the following link: https://webproc.mnscu.edu/registration/search/basic.html?campusid=157. Click on the course title to view additional details about the course, including last day to withdraw.
Last Date to Withdraw and Receive a Refund
Please see the Add, Drop and Withdraw page on the IHCC website: https://inverhills.edu/Registration/AddDropWithdraw.aspx
E-mail Communications
Recognizing the value and efficiency of communication between faculty/staff and students through electronic mail Inver Hills Community College has designated e-mail as an official mode of communication. At the same time, email raises some issues concerning security and the identity of each individual in an email exchange. Therefore, students are asked to regularly check and utilize the email address they have registered with the college. If your email address has changed it is your responsibility to make sure the college has an up-to date email address where you can be contacted. You should check your email on a regular basis as course changes and communications may be sent by email.
Pass/Fail Grade Option
A student may elect to take a course on a pass/fail (P/F) grading basis by contacting the instructor within the first 5 business days of the semester, or within 1 business day of the start date for a course beginning after the first week of the semester. If the instructor approves, they will submit approval to the Enrollment Center. Not all courses are approved for students to elect the P/F grading method and there may be limits to the total number of classes which can be taken pass/fail in your degree or certificate program. Contact your instructor for details about what level of achievement in the course will be required to receive a pass in the course.
Access and Accommodations
Inver Hills values diversity and inclusion; we are committed to fostering mutual respect and full participation for all students. My goal is to create a learning environment that is equitable, inclusive and welcoming. If any aspects of instruction or course design result in barriers to your inclusion or learning, please notify me. The Office of Accessibility Resources (OAR) provides reasonable accommodations and assistive technologies for students who encounter barriers in the learning environment. Services are available to students with a wide range of disabilities including, but not limited to, physical disabilities, medical conditions, learning disabilities, attention deficit disorder, depression, and anxiety. If you have already registered with OAR and have your Letter of Accommodation, please meet with me early in the course to discuss, plan, and implement your accommodations in the course. For additional information, please contact OAR located within the Learning Center (L207), 651-450-3884, accessibilityresources@inverhills.edu or https://www.inverhills.edu/LearningSupport/AccessibilityResources/index.aspx
Religious Accommodation Statement
In accordance with federal and state laws, Inver Hills Community College is committed to a policy of free expression and respect for the diversity of beliefs, including religious observances, among our academic community. It is the policy of the college to provide reasonable accommodations for students when religious beliefs and/or observances conflict with classroom activities or course requirements.
It is the responsibility of students to notify instructors of the need for accommodation at the beginning of the course or as soon as a situation arises. If a mutually agreed accommodation is not made, a student may initiate a complaint. The procedure for filing a complaint is described in the Catalog and on the Inver Hills website. The complaint must be filed within 15 days of a denied accommodation request.
Updates to this Syllabus
The instructor reserves the right to modify and adjust this syllabus as needed during the course of this class. The most up to date version will always be available on the course website or from the instructor.