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Cisco 200-301 Deutsch Exam Overview:
| Certification Vendor: | Cisco |
|---|---|
| Exam Name: | Implementing and Administering Cisco Solutions (CCNA) |
| Exam Number: | 200-301 |
| Exam Format: | Multiple-Choice, Testlet, Fill-in-the-blank, Simulation, Simlet, Drag-and-Drop |
| Exam Price: | USD 330 |
| Exam Duration: | 120 minutes |
| Available Languages: | Portuguese, English, French, Japanese, Spanish, Chinese |
| Real Exam Qty: | 100-120 |
| Passing Score: | Variable (approx. 825/1000) |
| Related Certifications: | Cisco Certified Network Associate (CCNA) |
| Certificate Validity Period: | 3 years |
| Sample Questions: | ![]() |
| Exam Way: | Pearson VUE (Online or Test Center) |
| Pre Condition: | None |
| Official Syllabus URL: | https://learningnetwork.cisco.com/s/ccna-exam-topics |
Cisco 200-301 Deutsch Exam Syllabus Topics:
| Section | Weight | Objectives |
|---|---|---|
| Automation and Programmability | 10% | - Compare traditional campus device management with Cisco DNA Center enabled device management - Explain how automation impacts network management - Describe characteristics of REST-based APIs (CRUD, HTTP verbs, and data encoding) - Describe controller-based and software defined architectures (overlay, underlay, and fabric) - Interpret JSON encoded data - Compare traditional networks with controller-based networking - Recognize the capabilities of configuration management mechanisms Puppet, Chef, and Ansible |
| Network Fundamentals | 20% | - Explain virtualization fundamentals (virtual machines) - Describe wireless principles - Configure and verify IPv6 addressing and prefix - Compare physical interface and cabling types - Describe the need for private IPv4 addressing - Explain the role and function of network components - Compare IPv6 address types - Configure and verify IPv4 addressing and subnetting - Identify interface and cable issues (collisions, errors, mismatch) - Describe switching concepts - Compare TCP to UDP - Verify IP parameters for Client OS (Windows, Mac OS, Linux) - Describe characteristics of network topology architectures |
| IP Connectivity | 25% | - Configure and verify IPv4 and IPv6 static routing - Interpret the components of routing table - Determine how a router makes a forwarding decision by default - Configure and verify single area OSPFv2 - Describe the purpose of first hop redundancy protocol |
| IP Services | 10% | - Describe the capabilities and function of TFTP/FTP in the network - Configure network devices for remote access using SSH - Configure and verify DHCP client and relay - Explain the role of DHCP and DNS within the network - Configure and verify inside source NAT using static and pools - Configure and verify NTP operating in a client and server mode - Explain the forwarding per-hop behavior (PHB) for QoS such as classification, marking, queuing, congestion, policing, shaping - Describe the use of syslog features including facilities and levels - Explain the function of SNMP in network operations |
| Network Access | 20% | - Describe physical infrastructure connections of WLAN components (AP, WLC, access/trunk ports, and LAG) - Describe AP and WLC management access connections (Telnet, SSH, HTTP, HTTPS, console, and TACACS+/RADIUS) - Configure and verify Layer 2 discovery protocols (Cisco Discovery Protocol and LLDP) - Configure the components of a wireless LAN access for client connectivity using GUI only such as WLAN creation, security settings, QoS profiles, and advanced WLAN settings - Configure and verify interswitch connectivity - Describe the need for and basic operations of Rapid PVST+ Spanning Tree Protocol - Configure and verify VLANs (normal range) spanning multiple switches - Configure and verify (Layer 2/Layer 3) EtherChannel (LACP) - Describe Cisco Wireless Architectures and AP modes |
| Security Fundamentals | 15% | - Describe security program elements (user awareness, training, and physical access control) - Describe remote access and site-to-site VPNs - Configure Layer 2 security features (DHCP snooping, dynamic ARP inspection, and port security) - Configure device access control using local passwords - Describe wireless security protocols (WPA, WPA2, and WPA3) - Describe security password policies elements, such as management, complexity, and password alternatives (multifactor authentication, certificates, and biometrics) - Define key security concepts (threats, vulnerabilities, exploits, and mitigation techniques) - Configure and verify access control lists - Configure WLAN using WPA2 PSK using the GUI - Differentiate authentication, authorization, and accounting concepts |
Cisco Certified Network Associate Exam (200-301 Deutsch Version) Exam: Answers Before You Commit
Cisco Certified Network Associate Exam (200-301 Deutsch Version) is an official Cisco exam, identified by exam code 200-301 Deutsch. Passing it earns the CCNA certification at the Associate level. It also relates to Cisco Certified Network Associate (CCNA). Certifications like this one remain a reliable route to standing out: they prove ability in a way resumes alone cannot.
The Cisco Certified Network Associate Exam (200-301 Deutsch Version) exam contains 100-120 questions to complete within 120 minutes. The candidates who run out of time are usually the ones who never practiced against a clock. The TestsDumps software engine lets you limit your test time exactly like the real exam, exposing pacing weaknesses while they are still free to fix.
You need Variable (approx. 825/1000) to pass Cisco Certified Network Associate Exam (200-301 Deutsch Version), and the official registration fee is USD 330. Retakes charge the full USD 330 again, which makes failing a genuinely expensive outcome. Reduce that risk the rational way: practice with the TestsDumps questions until your scores sit consistently above the requirement, then book.
None
Vendor requirements change from time to time, so verify the current conditions before registering via the official exam page.
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A 100% money-back guarantee protects you under clear conditions. Take the Cisco Certified Network Associate Exam (200-301 Deutsch Version) exam within 60 days of purchase; if you fail, you can 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. Alternatively, exchange for two other exam products of equal value, free, while keeping the update service on your original purchase.
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The Cisco Certified Network Associate Exam (200-301 Deutsch Version) syllabus divides into 6 domains. The leading areas are Network Fundamentals (20%), IP Services (10%), and Network Access (20%). The complete outline is published above; knowing your shortcomings starts with knowing the syllabus.
Cisco Certified Network Associate Exam (200-301 Deutsch Version) Sample Questions:
Welche Erweiterung ist in WPA3 implementiert?
- A. verwendet TKIP
- B. verwendet PKI, um Zugangspunkte zu identifizieren
- C. schützt vor Brute-Force-Angriffen
- D. Wendet 802.1x-Authentifizierung an
Correct Answer: C 🗳️
Explanation: Only visible for TestsDumps members. You can sign-up / login (it's free).
Laborsimulation 49
Richtlinien
Dies ist eine Laboraufgabe, bei der die Aufgaben auf virtuellen Geräten ausgeführt werden.
- Auf der Registerkarte „Aufgaben“ können Sie die Aufgaben für diesen Laborpunkt einsehen.
- Über die Registerkarte Topologie können Sie auf die Gerätekonsole(n) zugreifen und die Aufgaben ausführen.
- Der Konsolenzugriff ist für alle erforderlichen Geräte durch Anklicken des Gerätesymbols oder durch Verwendung der Registerkarte(n) oberhalb des Konsolenfensters möglich.
Alle notwendigen Vorkonfigurationen wurden angewendet.
- Ändern Sie weder das Aktivierungspasswort noch den Hostnamen für irgendein Gerät.
- Speichern Sie Ihre Konfigurationen im NVRAM, bevor Sie zum nächsten Punkt übergehen.
- Klicken Sie unten auf dem Bildschirm auf „Weiter“, um dieses Laborexperiment abzusenden und zur nächsten Frage zu gelangen.
- Wenn auf Weiter geklickt wird, wird das Labor geschlossen und kann nicht wieder geöffnet werden.
Topologie
Aufgaben
Referenztopologiediagramm und Tabelle. IPv4 und IPv6 zwischen den beiden Routern konfigurieren.
Aufgabe 1:
- Konfigurieren Sie R1 mit der ersten nutzbaren Host-IP-Adresse im IPv4-Netzwerk.
- Konfigurieren Sie R2 mit der letzten verwendbaren Host-IP-Adresse im IPv4-Netzwerk.
- Überprüfen Sie die Konnektivität mit Ping.
Aufgabe 2:
- Weisen Sie keinem der beiden Router die Anycast-Adresse des Subnetzrouters zu.
- Konfigurieren Sie R1 mit der ersten nutzbaren Host-IP-Adresse im IPv6-Netzwerk.
- Konfigurieren Sie R2 mit der letzten verwendbaren Host-IP-Adresse im IPv6-Netzwerk.
- Überprüfen Sie die Konnektivität mit Ping.
Correct Answer:
See the below explanation
Explanation:
Task 1: Configure IPv4
1. IPv4 Subnet Analysis:
Subnet: 10.10.24.0/28
Subnet Mask: 255.255.255.240
Usable IP Range: 10.10.24.1 to 10.10.24.14 (first usable: 10.10.24.1, last usable: 10.10.24.14)
Broadcast Address: 10.10.24.15
2. Configuration on R1:
R1> enable
R1# configure terminal
R1(config)# interface e0/0
R1(config-if)# ip address 10.10.24.1 255.255.255.240
R1(config-if)# no shutdown
3. Configuration on R2:
R2> enable
R2# configure terminal
R2(config)# interface e0/0
R2(config-if)# ip address 10.10.24.14 255.255.255.240
R2(config-if)# no shutdown
3. Verify IPv4 Connectivity:
From R1:
R1# ping 10.10.24.14
From R2:
R2# ping 10.10.24.1
Task 2: Configure IPv6
1. IPv6 Subnet Analysis:
Subnet: 2001:db8:18::/125
Usable Range: 2001:db8:18::1 to 2001:db8:18::6 (first usable: 2001:db8:18::1, last usable:
2001:db8:18::6)
Do not assign 2001:db8:18:: (subnet router anycast address).
2. Configuration on R1:
R1> enable
R1# configure terminal
R1(config)# interface e0/0
R1(config-if)# ipv6 address 2001:db8:18::1/125
R1(config-if)# no shutdown
3. Configuration on R2:
R2> enable
R2# configure terminal
R2(config)# interface e0/0
R2(config-if)# ipv6 address 2001:db8:18::6/125
R2(config-if)# no shutdown
4. Verify IPv6 Connectivity:
From R1:
R1# ping 2001:db8:18::6
From R2:
R2# ping 2001:db8:18::1
Final Steps:
1. Save configurations on both routers:
R1# write memory
R2# write memory
2. Verify connectivity and interface status using:
show ip interface brief
show ipv6 interface brief
Welcher IPv6-Adresstyp ermöglicht die Kommunikation zwischen Subnetzen und kann nicht über das Internet weitergeleitet werden?
- A. Multicast
- B. Link-lokal
- C. einzigartige lokale
- D. globaler Unicast
Correct Answer: C 🗳️
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Welche zwei Funktionen bietet Ansible im Bereich der Netzwerkautomatisierung? (Wählen Sie zwei aus.)
- A. Liefert Netzwerkzugangsdaten
- B. Überträgt Konfigurationen an den Client
- C. Startet Jobvorlagen mithilfe der Versionskontrolle
- D. verwendet die YAML-Sprache
- E. Bietet agentenlose Bereitstellung
Correct Answer: D,E 🗳️
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Welche der folgenden Aufgaben erfüllt das OSPF Hello-Protokoll? (Wählen Sie zwei aus.)
- A. Es sendet Hello-Pakete im gesamten Netzwerk, um alle Router zu finden, die OSPF verwenden.
- B. Es bietet dynamische Nachbarerkennung.
- C. Es verwendet Timer, um den Router mit den schnellsten Verbindungen als designierten Router auszuwählen.
- D. Es verhandelt Korrektheitsparameter zwischen benachbarten Schnittstellen.
- E. Es erkennt nicht erreichbare Nachbarn in 90-Sekunden-Intervallen.
- F. Es pflegt die Beziehungen zu den Nachbarn.
Correct Answer: B,F 🗳️








