HP 35s scientific calculator - User Guide
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.... Annunciator RPN ALG PRGM EQN 0 1 2 3 4 RAD or GRAD HEX OCT BIN HYP HP 35s Annunciators Meaning The " (Busy)" annunciator appears while an operation, equation, or program is evaluating an expression or executing an equation. Equation-entry mode is active, or the calculator is executing. Indicates which flags are set . When in Fraction...
.... Annunciator RPN ALG PRGM EQN 0 1 2 3 4 RAD or GRAD HEX OCT BIN HYP HP 35s Annunciators Meaning The " (Busy)" annunciator appears while an operation, equation, or program is evaluating an expression or executing an equation. Equation-entry mode is active, or the calculator is executing. Indicates which flags are set . When in Fraction...
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...See "Windows for Long Binary Numbers" later in this chapter.) placed at the end of a number means that this mode is an hexadecimal number. The HEX annunciator is displayed when this number is active. 11 Base Conversions and Arithmetic and Logic The BASE menu ( ...Numbers are displayed in decimal, binary, octal and hexadecimal base. In ALG mode, press A, B, C, D, E or F to enter the digits A to F. Numbers are displayed in Octal format. This is the normal calculator mode Hexadecimal mode. The LOGIC menu(>) provides access to logic functions. To enter ...
...See "Windows for Long Binary Numbers" later in this chapter.) placed at the end of a number means that this mode is an hexadecimal number. The HEX annunciator is displayed when this number is active. 11 Base Conversions and Arithmetic and Logic The BASE menu ( ...Numbers are displayed in decimal, binary, octal and hexadecimal base. In ALG mode, press A, B, C, D, E or F to enter the digits A to F. Numbers are displayed in Octal format. This is the normal calculator mode Hexadecimal mode. The LOGIC menu(>) provides access to logic functions. To enter ...
HP 35s scientific calculator - User Guide
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... meaningful results since the fractional parts of the corresponding bit in any base. However, you should realize that are actually deactivated in HEX mode are truncated. Each bit in the result is used as logic functions. For example: NAND(1100b,1010b)=11111111111111111111111 1111111110111b Logical bit-by...bit-by -bit "XOR" of the argument. The only function keys that most operations other than arithmetic will be used for an arithmetic calculation. 11-4 Base Conversions and Arithmetic and Logic For example: AND(1100b,1010b)=1000b Logical bit-by -bit "OR" of two arguments....
... meaningful results since the fractional parts of the corresponding bit in any base. However, you should realize that are actually deactivated in HEX mode are truncated. Each bit in the result is used as logic functions. For example: NAND(1100b,1010b)=11111111111111111111111 1111111110111b Logical bit-by...bit-by -bit "XOR" of the argument. The only function keys that most operations other than arithmetic will be used for an arithmetic calculation. 11-4 Base Conversions and Arithmetic and Logic For example: AND(1100b,1010b)=1000b Logical bit-by -bit "OR" of two arguments....
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...always an integer (any fractional portion is truncated). The result of result. 5A016 + 10011002 =? Keys: Display Description: Sets base 16; HEX annunciator on. If the result of the number but not the actual number in the X-register, arithmetic does alter the number in the X-...register. Converts displayed number to octal. Whereas conversions change only the display of an operation cannot be represented in Hexadecimal, Octal, and Binary modes: 12F16 + E9A16 = ? Example: Here are some examples of arithmetic in valid bits, the display shows and then shows the largest ...
...always an integer (any fractional portion is truncated). The result of result. 5A016 + 10011002 =? Keys: Display Description: Sets base 16; HEX annunciator on. If the result of the number but not the actual number in the X-register, arithmetic does alter the number in the X-...register. Converts displayed number to octal. Whereas conversions change only the display of an operation cannot be represented in Hexadecimal, Octal, and Binary modes: 12F16 + E9A16 = ? Example: Here are some examples of arithmetic in valid bits, the display shows and then shows the largest ...
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... 13-25 An instruction in the program (as you enter them. The current setting for the calculator and in a program to change the base mode will revert to write programs that accept numbers in any of the four bases, do arithmetic in...mode set: : : PRGM : : Binary mode set the base mode. Numbers Entered in the decimal and non-decimal mode. All decimal and non-decimal numbers are left-justified in any base, and display results in the calculator's display. This allows you to Decimal mode when the program is done. Selecting a Base Mode in a Program Insert a BIN, OCT, or HEX...
... 13-25 An instruction in the program (as you enter them. The current setting for the calculator and in a program to change the base mode will revert to write programs that accept numbers in any of the four bases, do arithmetic in...mode set: : : PRGM : : Binary mode set the base mode. Numbers Entered in the decimal and non-decimal mode. All decimal and non-decimal numbers are left-justified in any base, and display results in the calculator's display. This allows you to Decimal mode when the program is done. Selecting a Base Mode in a Program Insert a BIN, OCT, or HEX...
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Display: Description: Sets base 16; C-10 ALG: Summary Keys: 8Ë 4 6 Õ4 66 Display: Description: Sets display form Result is 2.5000 + 9.0000 i Examples: Evaluate (4 - 2/5 i) × (3 - 2/3 i) Keys: 4 6Õ4 6 Display: Description: Result is 11.7333 i-3.8667 Arithmetic in Bases 2, 8, and 16 Here are some examples of arithmetic in Hexadecimal, Octal, and Binary modes: Example: Keys: 12F16 + E9A16 = ? HEX annunciator on.
Display: Description: Sets base 16; C-10 ALG: Summary Keys: 8Ë 4 6 Õ4 66 Display: Description: Sets display form Result is 2.5000 + 9.0000 i Examples: Evaluate (4 - 2/5 i) × (3 - 2/3 i) Keys: 4 6Õ4 6 Display: Description: Result is 11.7333 i-3.8667 Arithmetic in Bases 2, 8, and 16 Here are some examples of arithmetic in Hexadecimal, Octal, and Binary modes: Example: Keys: 12F16 + E9A16 = ? HEX annunciator on.
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...; Result in the y-value first and press . 3. ALG: Summary C-11 Integer part of result. 5A016 + 100110002 =? HEX annunciator on . Entering Statistical Two-Variable Data In ALG mode, remember to clear existing statistical data. 2. Converts displayed number to octal. 1008 ÷ 58=? F E9A Result. ...
...; Result in the y-value first and press . 3. ALG: Summary C-11 Integer part of result. 5A016 + 100110002 =? HEX annunciator on . Entering Statistical Two-Variable Data In ALG mode, remember to clear existing statistical data. 2. Converts displayed number to octal. 1008 ÷ 58=? F E9A Result. ...
HP 35s scientific calculator - User Guide
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n GAL GRAD label nnn h HEX HMS HMS 6 (I /J. 6-4 1 14-21 Converts centimeters to hours, minutes, seconds. Converts x from hours-minutes- Used for 4-6 hyperbolic ... integers. 6-16 1 G-8 Operation Index Sets program pointer to PRGM TOP. 13-21 13-21 Indicates a hexadecimal number 11-1 1 Selects Hexadecimal (base 16) mode. 11-1 Displays the HYP_ prefix for entering complex numbers 9-2 1 7 /A,7 /A. Name FS? Value of program label. Converts x from a decimal ...
n GAL GRAD label nnn h HEX HMS HMS 6 (I /J. 6-4 1 14-21 Converts centimeters to hours, minutes, seconds. Converts x from hours-minutes- Used for 4-6 hyperbolic ... integers. 6-16 1 G-8 Operation Index Sets program pointer to PRGM TOP. 13-21 13-21 Indicates a hexadecimal number 11-1 1 Selects Hexadecimal (base 16) mode. 11-1 Displays the HYP_ prefix for entering complex numbers 9-2 1 7 /A,7 /A. Name FS? Value of program label. Converts x from a decimal ...
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See angular mode, base mode, Equation mode, Fraction-display mode, Program-entry mode MODES menu angular mode 4-4 money (finance) 17-1 multiplication, dividision 10-2 N negative numbers 1-15, 9-3, 11-6 nested routines 14-2, 15-11 normal distribution 16-11 numbers. See binary numbers, hex numbers, octal numbers, variables bases 10-1, 13...16, 13-18 in programs 13-7 internal representation 11-6 large and small 1-15, 1-17 negative 1-15, 9-3, 11-6 performing arithmetic calculations Index-6 logarithmic functions 4-1, 9-3, C-5 logic AND 11-4 NAND 11-4 NOR 11-4 NOT 11-4 OR 11-4 XOR 11-4 loop counter...
See angular mode, base mode, Equation mode, Fraction-display mode, Program-entry mode MODES menu angular mode 4-4 money (finance) 17-1 multiplication, dividision 10-2 N negative numbers 1-15, 9-3, 11-6 nested routines 14-2, 15-11 normal distribution 16-11 numbers. See binary numbers, hex numbers, octal numbers, variables bases 10-1, 13...16, 13-18 in programs 13-7 internal representation 11-6 large and small 1-15, 1-17 negative 1-15, 9-3, 11-6 performing arithmetic calculations Index-6 logarithmic functions 4-1, 9-3, C-5 logic AND 11-4 NAND 11-4 NOR 11-4 NOT 11-4 OR 11-4 XOR 11-4 loop counter...