WHAT IS CYBER SECURITY
Computer security, cybersecurity, or information technology security is the protection of computer systems and networks from information disclosure, theft of or damage to their hardware, software, or electronic data, as well as from the disruption or misdirection of the services they provide
Cyber security is the practice of defending computers, servers, mobile devices, electronic systems, networks, and data from malicious attacks. It’s also known as information technology security or electronic information security. The term applies in a variety of contexts, from business to mobile computing, and can be divided into a few common categories
CATEGORIES OF CYBER SECURITY
Network security is the practice of securing a computer network from intruders, whether targeted attackers or opportunistic malware.
· Application security focuses on keeping software and devices free of threats. A compromised application could provide access to the data its designed to protect. Successful security begins in the design stage, well before a program or device is deployed.
· Information security protects the integrity and privacy of data, both in storage and in transit.
· Operational security includes the processes and decisions for handling and protecting data assets. The permissions users have when accessing a network and the procedures that determine how and where data may be stored or shared all fall under this umbrella.
· Disaster recovery and business continuity define how an organization responds to a cyber-security incident or any other event that causes the loss of operations or data. Disaster recovery policies dictate how the organization restores its operations and information to return to the same operating capacity as before the event. Business continuity is the plan the organization falls back on while trying to operate without certain resources.
· End-user education addresses the most unpredictable cyber-security factor: people. Anyone can accidentally introduce a virus to an otherwise secure system by failing to follow good security practices. Teaching users to delete suspicious email attachments, not plug in unidentified USB drives, and various other important lessons is vital for the security of any organization.
Types of cyber threats
The threats countered by cyber-security are three-fold:
1. Cybercrime includes single actors or groups targeting systems for financial gain or to cause disruption.
2. Cyber-attack often involves politically motivated information gathering.
3. Cyberterrorism is intended to undermine electronic systems to cause panic or fear.
So, how do malicious actors gain control of computer systems? Here are some common methods used to threaten cyber-security:
Malware means malicious software. One of the most common cyber threats, malware is software that a cybercriminal or hacker has created to disrupt or damage a legitimate user’s computer. Often spread via an unsolicited email attachment or legitimate-looking download, malware may be used by cybercriminals to make money or in politically motivated cyber-attacks.
There are a number of different types of malware, including:
· Virus: A self-replicating program that attaches itself to clean file and spreads throughout a computer system, infecting files with malicious code.
· Trojans A type of malware that is disguised as legitimate software. Cybercriminals trick users into uploading Trojans onto their computer where they cause damage or collect data.
· Spyware: A program that secretly records what a user does, so that cybercriminals can make use of this information. For example, spyware could capture credit card details.
· Ransomware: Malware which locks down a user’s files and data, with the threat of erasing it unless a ransom is paid.
· Adware: Advertising software which can be used to spread malware.
· Botnets: Networks of malware infected computers which cybercriminals use to perform tasks online without the user’s permission.
An SQL (structured language query) injection is a type of cyber-attack used to take control of and steal data from a database. Cybercriminals exploit vulnerabilities in data-driven applications to insert malicious code into a databased via a malicious SQL statement. This gives them access to the sensitive information contained in the database.
Phishing is when cybercriminals target victims with emails that appear to be from a legitimate company asking for sensitive information. Phishing attacks are often used to dupe people into handing over credit card data and other personal information.
A man-in-the-middle attack is a type of cyber threat where a cybercriminal intercepts communication between two individuals in order to steal data. For example, on an unsecure WiFi network, an attacker could intercept data being passed from the victim’s device and the network.
A denial-of-service attack is where cybercriminals prevent a computer system from fulfilling legitimate requests by overwhelming the networks and servers with traffic. This renders the system unusable, preventing an organization from carrying out vital functions.
Latest cyber threats
What are the latest cyber threats that individuals and organizations need to guard against? Here are some of the most recent cyber threats that the U.K., U.S., and Australian governments have reported on.
In December 2019, the U.S. Department of Justice (DoJ) charged the leader of an organized cyber-criminal group for their part in a global Dridex malware attack. This malicious campaign affected the public, government, infrastructure and business worldwide.
Dridex is a financial trojan with a range of capabilities. Affecting victims since 2014, it infects computers though phishing emails or existing malware. Capable of stealing passwords, banking details and personal data which can be used in fraudulent transactions, it has caused massive financial losses amounting to hundreds of millions.
In response to the Dridex attacks, the U.K.’s National Cyber Security Centre advises the public to “ensure devices are patched, anti-virus is turned on and up to date and files are backed up”.
In February 2020, the FBI warned U.S. citizens to be aware of confidence fraud that cybercriminals commit using dating sites, chat rooms and apps. Perpetrators take advantage of people seeking new partners, duping victims into giving away personal data.
The FBI reports that romance cyber threats affected 114 victims in New Mexico in 2019, with financial losses amounting to $1.6 million.
In late 2019, The Australian cyber security center warned national organizations about a widespread global cyber threat from Emotet malware.
Emotet is a sophisticated trojan that can steal data and also load other malware. Emotet thrives on unsophisticated password: a reminder of the importance of creating a secure password to guard against cyber threats.
End-user protection or endpoint security is a crucial aspect of cyber security. After all, it is often an individual (the end-user) who accidentally uploads malware or another form of cyber threat to their desktop, laptop or mobile device.
So, how do cyber-security measures protect end users and systems? First, cyber-security relies on cryptographic protocols to encrypt emails, files, and other critical data. This not only protects information in transit, but also guards against loss or theft.
In addition, end-user security software scans computers for pieces of malicious code, quarantines this code, and then removes it from the machine. Security programs can even detect and remove malicious code hidden in primaryboot record and are designed to encrypt or wipe data from computer’s hard drive.
Electronic security protocols also focus on real-time malware detection. Many use heuristic and behavioral analysis to monitor the behavior of a program and its code to defend against viruses or Trojans that change their shape with each execution (polymorphic and metamorphic malware). Security programs can confine potentially malicious programs to a virtual bubble separate from a user’s network to analyze their behavior and learn how to better detect new infections.
Security programs continue to evolve new defenses as cyber-security professionals identify new threats and new ways to combat them. To make the most of end-user security software, employees need to be educated about how to use it. Crucially, keeping it running and updating it frequently ensures that it can protect users against the latest cyber threats.
Cyber safety tips – protect yourself against cyberattacks
How can businesses and individuals guard against cyber threats? Here are our top cyber safety tips:
1. Update your software and operating system: This means you benefit from the latest security patches.
2. Use anti-virus software: Security solutions like super antispyware will detect and removes threats. Keep your software updated for the best level of protection.
3. Use strong passwords: Ensure your passwords are not easily guessable.
4. Do not open email attachments from unknown senders: These could be infected with malware.
5. Do not click on links in emails from unknown senders or unfamiliar websites:This is a common way that malware is spread.
6. Avoid using unsecure WiFi networks in public places: Unsecure networks leave you vulnerable to man-in-the-middle attacks.
Cybersecurity master’s degree admission requirements
Many master’s degree programs in cybersecurity were designed for people with a cybersecurity background, or at least, with a technical background that might include computer science or math.
Increasingly, cybersecurity master’s degree programs are expanding to try to be inclusive of students that might have an undergraduate degree outside of a computer-related technical discipline.
The NYU Tandon School of Engineering, for example, provides an alternative track to applying for their cybersecurity master’s degree that entails taking a course called Cybersecurity Bridge Program, or taking other preparatory courses before entering the master’s program.
While a master’s degree in cybersecurity programs vary in terms of program content, most have similar admissions requirements.
Cybersecurity master’s programs usually require students to have a GPA above 3.0 for their undergraduate degree in a technical discipline. Many people in the cybersecurity field come to the profession with a background in math or computer science.
Usually, applicants to cybersecurity master’s degree programs have completed several semesters of advanced college math. They are also proficient with the theory of computing, computer and network architecture, and have experience with different computer coding languages.
Students with a bachelors degree in computer science, cybersecurity or a related field can apply in USA universities for Masters in Cyber Security.
- Bachelor’s degree in Computer Science, Cyber Security, or a related field
- Many universities look for 3 or higher GPA (4-point scale) or 8.75 (10-point scale) or 83% for the last two years of the undergraduate studies.
- Core Subject Requirements:
- 1-2 years of calculus
- Math courses beyond calculus (e.g. linear algebra, discrete mathematics, differential equations, etc.)
- Computer science courses (e.g. programming, data structures, computer architecture, etc.)
- Proof of English proficiency
- Official transcripts
- SOP (minimum 500 words)
- A writing sample from work or previous academic experiences. A two-page double-spaced word-processed essay that addresses the following two topics can be submitted as an alternative:
- Discussing two accomplishments demonstrating the candidate’s potential for success in the graduate program.
- Discussing unique personal qualities and life experiences that distinguish the applicant from other applicants to the graduate program.
- Proof of English language proficiency
- A financial certificate and supporting financial documents.
- Current resume (a detailed summary of educational qualifications, personal profile, work experience, and extracurricular activities)
- Copy of valid passport
- Immigration Documents
- Bank and Sponsor Letter
- Declaration and Certification of Finances
- F-1 Transfer Form (if currently residing in the U.S. on an F-1 visa)
Top universities for masters in cyber security in USA for international students
|1||Cyber Security and Privacy||University of Central Florida|
|2||Cyber Security Engineering||Auburn University|
|3||Cyber Security||Florida International University|
|4||Cyber Security Management||University of Dayton|
|5||Cyber Security in Computer Science||The George Washington University|
|6||Cyber Security Risk Management||Indiana University|
|7||Cyber Intelligence and Security||Embry-Riddle Aeronautical University|
|8||Cyber Security – Technology and Policy||University of Texas at Dallas|
|9||Information Assurance and Cyber Security||Nova Southeastern University|
|10||Information and Cyber Security||University of California|
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