📄 temp_conversion.m
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function varargout = temp_conversion(varargin)
% TEMP_CONVERSION M-file for temp_conversion.fig
% TEMP_CONVERSION, by itself, creates a new TEMP_CONVERSION or raises the existing
% singleton*.
%
% H = TEMP_CONVERSION returns the handle to a new TEMP_CONVERSION or the handle to
% the existing singleton*.
%
% TEMP_CONVERSION('CALLBACK',hObject,eventData,handles,...) calls the local
% function named CALLBACK in TEMP_CONVERSION.M with the given input arguments.
%
% TEMP_CONVERSION('Property','Value',...) creates a new TEMP_CONVERSION or raises the
% existing singleton*. Starting from the left, property value pairs are
% applied to the GUI before temp_conversion_OpeningFunction gets called. An
% unrecognized property name or invalid value makes property application
% stop. All inputs are passed to temp_conversion_OpeningFcn via varargin.
%
% *See GUI Options on GUIDE's Tools menu. Choose "GUI allows only one
% instance to run (singleton)".
%
% See also: GUIDE, GUIDATA, GUIHANDLES
% Edit the above text to modify the response to help temp_conversion
% Last Modified by GUIDE v2.5 13-Mar-2004 18:07:02
% Begin initialization code - DO NOT EDIT
gui_Singleton = 1;
gui_State = struct('gui_Name', mfilename, ...
'gui_Singleton', gui_Singleton, ...
'gui_OpeningFcn', @temp_conversion_OpeningFcn, ...
'gui_OutputFcn', @temp_conversion_OutputFcn, ...
'gui_LayoutFcn', [] , ...
'gui_Callback', []);
if nargin && ischar(varargin{1})
gui_State.gui_Callback = str2func(varargin{1});
end
if nargout
[varargout{1:nargout}] = gui_mainfcn(gui_State, varargin{:});
else
gui_mainfcn(gui_State, varargin{:});
end
% End initialization code - DO NOT EDIT
% --- Executes just before temp_conversion is made visible.
function temp_conversion_OpeningFcn(hObject, eventdata, handles, varargin)
% This function has no output args, see OutputFcn.
% hObject handle to figure
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% varargin command line arguments to temp_conversion (see VARARGIN)
% Choose default command line output for temp_conversion
handles.output = hObject;
% Update handles structure
guidata(hObject, handles);
% UIWAIT makes temp_conversion wait for user response (see UIRESUME)
% uiwait(handles.figure1);
% --- Outputs from this function are returned to the command line.
function varargout = temp_conversion_OutputFcn(hObject, eventdata, handles)
% varargout cell array for returning output args (see VARARGOUT);
% hObject handle to figure
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Get default command line output from handles structure
varargout{1} = handles.output;
function Edit1_Callback(hObject, eventdata, handles)
% hObject handle to Edit1 (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Update all temperature values
deg_f = str2num( get(hObject,'String') );
deg_f = max( [ 32 deg_f] );
deg_f = min( [212 deg_f] );
deg_c = to_c(deg_f);
% Now update the fields
set (handles.Edit1,'String',sprintf('%.1f',deg_f));
set (handles.Edit2,'String',sprintf('%.1f',deg_c));
set (handles.Slider1,'Value',deg_c);
% --- Executes during object creation, after setting all properties.
function Edit1_CreateFcn(hObject, eventdata, handles)
% hObject handle to Edit1 (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles empty - handles not created until after all CreateFcns called
% Hint: edit controls usually have a white background on Windows.
% See ISPC and COMPUTER.
if ispc
set(hObject,'BackgroundColor','white');
else
set(hObject,'BackgroundColor',get(0,'defaultUicontrolBackgroundColor'));
end
function Edit2_Callback(hObject, eventdata, handles)
% hObject handle to Edit2 (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Update all temperature values
deg_c = str2num( get(hObject,'String') );
deg_c = max( [ 0 deg_c] );
deg_c = min( [100 deg_c] );
deg_f = to_f(deg_c);
% Now update the fields
set (handles.Edit1,'String',sprintf('%.1f',deg_f));
set (handles.Edit2,'String',sprintf('%.1f',deg_c));
set (handles.Slider1,'Value',deg_c);
% --- Executes during object creation, after setting all properties.
function Edit2_CreateFcn(hObject, eventdata, handles)
% hObject handle to Edit2 (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles empty - handles not created until after all CreateFcns called
% Hint: edit controls usually have a white background on Windows.
% See ISPC and COMPUTER.
if ispc
set(hObject,'BackgroundColor','white');
else
set(hObject,'BackgroundColor',get(0,'defaultUicontrolBackgroundColor'));
end
% --- Executes on slider movement.
function Slider1_Callback(hObject, eventdata, handles)
% hObject handle to Slider1 (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Update all temperature values
deg_c = get(hObject,'Value');
deg_f = to_f(deg_c);
% Now update the fields
set (handles.Edit1,'String',sprintf('%.1f',deg_f));
set (handles.Edit2,'String',sprintf('%.1f',deg_c));
set (handles.Slider1,'Value',deg_c);
% --- Executes during object creation, after setting all properties.
function Slider1_CreateFcn(hObject, eventdata, handles)
% hObject handle to Slider1 (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles empty - handles not created until after all CreateFcns called
% Hint: slider controls usually have a light gray background, change
% 'usewhitebg' to 0 to use default. See ISPC and COMPUTER.
usewhitebg = 1;
if usewhitebg
set(hObject,'BackgroundColor',[.9 .9 .9]);
else
set(hObject,'BackgroundColor',get(0,'defaultUicontrolBackgroundColor'));
end
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