Unit Test 4 - fDeg=(180.0/fPi)*fRad; printf("%8.3f

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Unit 4 Readiness Test D 1. (a) false (b) false (c) true (d) true (e) false 2. 1) 17 2) 11 3) 6 3. #include <stdio.h> int main(void) { float fT; printf("Input the temperature:\n"); scanf("%f",&fT); if (fT>75.0) printf("too hot"); else if (fT<70.0) printf("too cold"); else printf("just right"); return(0); } 4. 1) #include <stdio.h> #include <math.h> int main(void) { float fPi = 4.0*atan(1.0); float fRad; float fDeg; printf("Converting Radians to Degrees\n\n"); printf("**Radians** **Degrees**\n"); for (fRad=0.0;fRad<=2*fPi+.01;fRad=fRad+.1*fPi) {
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Unformatted text preview: fDeg=(180.0/fPi)*fRad; printf("%8.3f %8.3f\n",fRad,fDeg); } return(0); } 2) #include <stdio.h> #include <math.h> int main(void) { float fPi = 4.0*atan(1.0); float fRad = 0.0; float fDeg; printf("Converting Radians to Degrees\n\n"); printf("**Radians** **Degrees**\n"); while (fRad<=2*fPi+.01) { fDeg=(180.0/fPi)*fRad; printf("%8.3f %8.3f\n",fRad,fDeg); fRad=fRad+.1*fPi; } return(0); }...
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This note was uploaded on 03/19/2008 for the course ME 205 taught by Professor Koen during the Spring '07 term at University of Texas at Austin.

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Unit Test 4 - fDeg=(180.0/fPi)*fRad; printf("%8.3f

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