The 98-366 exam does not get cheaper on the second attempt. Candidates who prepare with the 259 Microsoft MTA Networking Fundamentals practice questions from ActualPDF are making the financially sane choice: invest a little once, rather than pay the full fee twice.
Microsoft 98-366 Exam Overview:
| Certification Vendor: | Microsoft |
|---|---|
| Exam Name: | MTA Networking Fundamentals |
| Exam Number: | 98-366 |
| Passing Score: | Historically not publicly published by Microsoft (commonly referenced ~700/1000 historical) |
| Real Exam Qty: | Not officially published (historically ~40–60 range as per documented guides) |
| Available Languages: | Russian, Japanese, Chinese (Traditional), Portuguese (Brazil), Italian, Chinese (Simplified), English, Spanish (Latin America), Spanish, French, German, Korean |
| Certificate Validity Period: | Certification historically non-expiring |
| Exam Duration: | Approximately 45–60 (historical / typical) |
| Related Certifications: | Microsoft Technology Associate (MTA) |
| Exam Price: | Varies by region (commonly cited historically ~$127 USD) |
| Exam Format: | Multiple answer, Scenario-based, Multiple choice |
| Sample Questions: | DOWNLOAD DEMO |
| Exam Way: | Historically delivered via Pearson VUE and Certiport testing centers / proctored delivery |
| Pre Condition: | No formal prerequisites (basic IT and networking awareness recommended) |
| Official Syllabus URL: | https://learn.microsoft.com/en-us/answers/questions/675781/exam-98-366-mta-networking-fundamentals |
Microsoft 98-366 Exam Syllabus Topics:
| Section | Objectives |
|---|---|
| Topic 1: Understanding Network Infrastructures | - Wide area networks (WANs) - Network topologies and access methods - Local area networks (LANs) - Wireless networking basics - Internet, intranet, and extranet concepts |
| Topic 2: Understanding Network Hardware | - Switches and their functions - Media types and cabling - Routers and routing basics |
| Topic 3: Understanding Protocols and Services | - OSI and TCP/IP models - Network services (DNS, DHCP) - Common protocols (IP, TCP, UDP) |
Frequently Asked Questions: Microsoft MTA Networking Fundamentals
Microsoft MTA Networking Fundamentals is an official Microsoft certification exam, registered under the code 98-366. Passing it awards the Microsoft SQL Server 2008 certification, a credential at the Entry / Fundamentals level. It also connects to Microsoft Technology Associate (MTA). The exam is demanding by design, and that difficulty is precisely what makes the credential meaningful for career development.
The Microsoft MTA Networking Fundamentals exam presents Not officially published (historically ~40–60 range as per documented guides) questions within Approximately 45–60 (historical / typical). That is a brisk pace, and the candidates who handle it best are the ones who rehearsed it. Use the ActualPDF engine for full timed simulations, practice flagging and returning, and arrive on exam day with a pacing strategy already proven.
Passing Microsoft MTA Networking Fundamentals takes Historically not publicly published by Microsoft (commonly referenced ~700/1000 historical), and official registration costs Varies by region (commonly cited historically ~$127 USD). Retakes bill the full Varies by region (commonly cited historically ~$127 USD) again, so preparation is the least expensive insurance available. Let your ActualPDF practice scores guide the timing: book when you clear the requirement consistently, not occasionally.
No formal prerequisites (basic IT and networking awareness recommended)
Policies get revised, so confirm the current requirements before you register on the official exam page.
Yes. ActualPDF offers a free demo of the Microsoft MTA Networking Fundamentals questions, so you can verify the quality personally before purchasing. Your purchase then includes a one-year service warranty: updates are free for 365 days, and after expiry you can extend the update service at a 50% discount.
Your money is protected by a 100% money-back guarantee with defined conditions. Take the Microsoft MTA Networking Fundamentals exam within 60 days of purchase; if you fail, you may claim a full refund, provided the exam matches your product. Attempts within 3 days of purchase are ineligible, as are downloaded-but-unused products, free materials, and expired orders; the candidate name must match the payer name. Submit a scanned enrollment slip and the official Score Report PDF within 2 days of the exam, and claims are processed within 7 days. You may instead wait for the update version or change to other exam material: exchange for two other exam products of equal value, free, with your original purchase keeping its update service.
Delivery is instant: files unlock for download at payment and are emailed within one minute. If nothing arrives within 2 hours, check spam and contact customer service, online 7/24 even on official holidays. Installation is unlimited across your computers.
Microsoft MTA Networking Fundamentals is organized into 3 official domains. The most heavily weighted are Understanding Network Hardware, Understanding Protocols and Services, and Understanding Network Infrastructures. The full breakdown appears above on this page; study the weightings and your preparation priorities set themselves.
Microsoft MTA Networking Fundamentals Sample Questions:
Question 1
A cable that meets the l000BaseT standard has a maximum length of:
A. 250 m
B. 500 m
C. 1,000 m
D. 100 m
Question 2
What name does Windows Server 2008 R2 use for Terminal Services?
A. Remote Desktop Services
B. MS Telnet Server
C. MS Thin Server
D. MS Primary Services
Question 3
What service on a Windows network is used to translate between NetBIOS names/computer names and IP addresses?
A. LDAP
B. DHCP
C. DNS
D. WINS
Question 4
The service that resolves fully qualified domain names (FQDN) to IP addresses is:
A. Internet Service Provider (ISP).
B. Address Resolution Protocol (ARP).
C. Windows Internet Name Service (WINS).
D. Domain Name Service (DNS).
Question 5
What happens when an 802.11b node starts broadcasting within the range of an 802.llg access point?
A. The access point will transmit, but the node will be unable to receive.
B. The node will transmit, but the access point will be unable to receive.
C. A connection will be established,
D. Both the node and the access point will be unable to transmit.
Solutions:
| Question 1 Answer: D | Question 2 Answer: A | Question 3 Answer: D | Question 4 Answer: D | Question 5 Answer: C |
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