EBK ESSENTIALS OF MIS,
EBK ESSENTIALS OF MIS,
13th Edition
ISBN: 8220106778494
Author: LAUDON
Publisher: PEARSON
Question
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Chapter 8, Problem 8HMP
Program Plan Intro

System vulnerability:

  • When huge data amounts are been kept in electronic form, it becomes susceptible to many threats.
  • The information systems in many locations are been interconnected through communication networks.
  • The unauthorized access can occur at many access points in network and is not limited to single location.
  • The data flowing over networks could be accessed; valuable information could be stolen while transmission or data could be altered without authorization.
  • The denial-of-service attacks are launched by intruders to disrupt website operations.
  • Internets are vulnerable than internal networks as it is open to everyone.

Explanation of Solution

Impact on business:

  • A risk assessment is to be performed to determine impact on business.
  • The value of information assets, vulnerability ...

Explanation of Solution

Steps to prevent damage:

  • The steps taken to prevent website damages includes:
    • o Access controls:
      • It prevents improper access to system of organization.
      • The unauthorized users would be restricted using this method.
    • o Firewalls:
      • It prevents access of private networks from unauthorized users.
    • o Intrusion detection systems:
      • The monitoring tools are placed at most vulnerable points, It detects and deters intruders for system.
    • o Antivirus program:
      • The software program that checks systems and drives for presence of virus...

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I need help fixing the minor issue where the text isn't in the proper place, and to ensure that the frequency cutoff is at the right place. My code: % Define frequency range for the plot f = logspace(1, 5, 500); % Frequency range from 10 Hz to 100 kHz w = 2 * pi * f; % Angular frequency   % Parameters for the filters - let's adjust these to get more reasonable cutoffs R = 1e3; % Resistance in ohms (1 kΩ) C = 1e-6; % Capacitance in farads (1 μF)   % For bandpass, we need appropriate L value for desired cutoffs L = 0.1; % Inductance in henries - adjusted for better bandpass response   % Calculate cutoff frequencies first to verify they're in desired range f_cutoff_RC = 1 / (2 * pi * R * C); f_resonance = 1 / (2 * pi * sqrt(L * C)); Q_factor = (1/R) * sqrt(L/C); f_lower_cutoff = f_resonance / (sqrt(1 + 1/(4*Q_factor^2)) + 1/(2*Q_factor)); f_upper_cutoff = f_resonance / (sqrt(1 + 1/(4*Q_factor^2)) - 1/(2*Q_factor));   % Transfer functions % Low-pass filter (RC) H_low = 1 ./ (1 + 1i * w *…
My code is experincing minor issue where the text isn't in the proper place, and to ensure that the frequency cutoff is at the right place. My code: % Define frequency range for the plot f = logspace(1, 5, 500); % Frequency range from 10 Hz to 100 kHz w = 2 * pi * f; % Angular frequency   % Parameters for the filters - let's adjust these to get more reasonable cutoffs R = 1e3; % Resistance in ohms (1 kΩ) C = 1e-6; % Capacitance in farads (1 μF)   % For bandpass, we need appropriate L value for desired cutoffs L = 0.1; % Inductance in henries - adjusted for better bandpass response   % Calculate cutoff frequencies first to verify they're in desired range f_cutoff_RC = 1 / (2 * pi * R * C); f_resonance = 1 / (2 * pi * sqrt(L * C)); Q_factor = (1/R) * sqrt(L/C); f_lower_cutoff = f_resonance / (sqrt(1 + 1/(4*Q_factor^2)) + 1/(2*Q_factor)); f_upper_cutoff = f_resonance / (sqrt(1 + 1/(4*Q_factor^2)) - 1/(2*Q_factor));   % Transfer functions % Low-pass filter (RC) H_low = 1 ./ (1 + 1i * w *…
I would like to know the main features about the following three concepts: 1. Default forwarded 2. WINS Server 3. IP Security (IPSec).
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