How is the CCIE test score calculated? The CCIE exam is divided into a written test and an experiment. Different modules have different test contents and different scoring methods. The scoring method of the written test is relatively simple, and the scoring method of the experiment is more complicated. Today, Xiaobian will introduce it to you in detail.

Scoring method of CCIE written test

The total score of CCIE written test is 1000 points, only need to achieve more than 80% of the score to pass, that is, more than 800 points, pay attention to CCIE written test It is in the form of a computer-based test. During the answering process, it is impossible to return to the previous question. Candidates need to answer the question carefully. Of course, the content and question types of the written test may be slightly different in different directions. Take EI as an example:
The questions of the EI CCIE written test (350-401) are multiple-choice questions and drag-and-drop questions, with a full score of 1000 points and a pass of 825 points.< br>Exam requirements: There are no requirements for academic qualifications and majors.
Exam Code: 350-401
Exam Fee: $400, the written test is valid for 18 months.
Exam Time: 2 hours
Exam Score: Out of 1000 points, 825 points pass the test.
Exam questions: multiple choice questions, multiple choice questions and drag-and-drop questions.
Exam location: The written part of the exam can be taken in all provincial capital cities or first-tier cities in China.
Reservation for exam: The CCIE written exam can be reserved through VUE, and the registered students will be arranged by the teacher to make an appointment for the exam.

CCIE Experiment Scoring Method

CCIE LAB scoring is more complicated and is divided into different experimental modules. The score of each module requires all modules to be >=80% to get it to the ccie certificate. Originally, the CCIE RS, SP, SEC, and Colla LAB exams consisted of 3 modules, and the Wireless and DC exams consisted of 2 modules. Now, they are unified into 2 modules.

Module 1: Design (3 hours)

The objective of this module is to measure the ability to create, analyze, validate and optimize network designs that underlie all deployment activities . Candidates need to:  Understand the capabilities of different technologies, solutions and services.
Translate customer needs into solutions.
Assess readiness to support the proposed solution. This module is scene based and cannot access any device. Candidates will be provided with a set of documents required for identification prior to answering the web-based project. Examples of documentation include email threads, high-level designs, network topology diagrams, customer requirements and limitations, and more. Examples of web based items include drag and drop, single-select, multi-select, drop-down options, etc. In this module, backward navigation will be disabled. Therefore, candidates will not fully understand all the questions in this unit. Point values ​​associated with this item will not be displayed in this module.

Module 2: Deployment, Operations and Optimization (5 hours)

In this module, candidates will deploy, operate and optimize network technologies and solutions. Deployment: Candidates will build the network based on design specifications, customer requirements and constraints. All steps required to successfully implement a network will be covered, including configuration, integration and troubleshooting of the commissioning of technologies and solutions according to the "Exam Topics".
Operation and Optimization: The candidate will operate and optimize network technologies and solutions. This includes monitoring network health, network performance, configuring the network to improve quality of service, reduce outages, reduce disruptions, reduce operational costs, maintain high availability, reliability and security, as well as diagnose potential problems and adjust configurations to accommodate changing business objectives and / or technical requirements. This module provides setups very close to the actual production network environment and includes both hands-on (device access) and web-based projects. Where possible, a virtualized lab environment will be used in this module. See the list of devices and software for more details.

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