
EBK STARTING OUT WITH VISUAL C#
5th Edition
ISBN: 9780135204818
Author: GADDIS
Publisher: VST
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Expert Solution & Answer
Chapter 4.7, Problem 4.22CP
Explanation of Solution
TryParse Method:
The TryParse method helps to avoid the exception when the user enters invalid inputs.
- This method helps to identify a string value which can be converted to specific data type before it is converted to that data type.
- There are so many TryParse methods in .NET. Some of the methods are given below:
- int.TryParse method is used to convert the string into integer data type.
- double.TryParse method is used to convert the string into double data type.
- decimal.TryParse method is used to convert the string into decimal data type.
- The general format for TryParse method is given below:
datatype.TryParse(string, out targetVariable)
Where,
- “datatype” indicates the data type such as “int”, “double”, and “decimal”.
- “string” indicates the string which need to convert.
- “targetVariable” indicates the name of data type variable.
- “out” indicates the output variable.
- This method helps to convert the “string” into specific data type.
- If the conversion is successful, then store the converted value in “targetVariable” and the method returns the Boolean value “true” for successful conversion.
- If the conversion is not successful, then it does not throw an exception instead it stores the value “0” in “targetVariable” and the method returns the Boolean value “false” for conversion failure.
Therefore, the TryParse method returns Boolean value “true” when the string is converted successfully and this returns the Boolean value “false” when the string is not converted successfully...
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Students have asked these similar questions
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 *…
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Chapter 4 Solutions
EBK STARTING OUT WITH VISUAL C#
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