User Manual
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... damages in connection with or arising out of the purchase or use of these materials, and the sole and exclusive liability of Texas Instruments, regardless of the form of action, shall not exceed the purchase price of this product. Copyright © 2010 Texas Instruments Incorporated 2 MathPrint, APD, Automatic Power Down and EOS are trademarks of...
... damages in connection with or arising out of the purchase or use of these materials, and the sole and exclusive liability of Texas Instruments, regardless of the form of action, shall not exceed the purchase price of this product. Copyright © 2010 Texas Instruments Incorporated 2 MathPrint, APD, Automatic Power Down and EOS are trademarks of...
User Manual
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Press ! Entry-limit cursor. Placeholder box for default DEC mode. Use arrow keys to scroll. ³´ An entry or menu displays beyond 16 digits. Press # and $ to move into the box. 4 Shows where the next ...
Press ! Entry-limit cursor. Placeholder box for default DEC mode. Use arrow keys to scroll. ³´ An entry or menu displays beyond 16 digits. Press # and $ to move into the box. 4 Shows where the next ...
User Manual
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... on the key and the secondary function is displayed above it. Press % to select it before entering data, press % again. Modes q Use q to the Home screen and perform your work using the chosen mode settings. or % s to return to choose modes. DEG RAD GRAD Sets the angle mode to the left and...
... on the key and the secondary function is displayed above it. Press % to select it before entering data, press % again. Modes q Use q to the Home screen and perform your work using the chosen mode settings. or % s to return to choose modes. DEG RAD GRAD Sets the angle mode to the left and...
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REAL real results a+bi rectangular results r±q polar results DEC HEX BIN OCT Sets the number base used for calculations. The integer power is a shortcut key to enter a number in scientific notation format. DEC decimal HEX hexadecimal (To enter hex digits ...FLOAT (floating decimal point) displays up to 10 digits, plus the sign and decimal. 0 1 2 3 4 5 6 7 8 9 (fixed decimal point) specifies the number of digits (0 through F, use and so on.) BIN binary OCT octal CLASSIC MATHPRINT CLASSIC mode displays inputs and outputs in the mode menu. ENG displays results as 1.2345678×...
REAL real results a+bi rectangular results r±q polar results DEC HEX BIN OCT Sets the number base used for calculations. The integer power is a shortcut key to enter a number in scientific notation format. DEC decimal HEX hexadecimal (To enter hex digits ...FLOAT (floating decimal point) displays up to 10 digits, plus the sign and decimal. 0 1 2 3 4 5 6 7 8 9 (fixed decimal point) specifies the number of digits (0 through F, use and so on.) BIN binary OCT octal CLASSIC MATHPRINT CLASSIC mode displays inputs and outputs in the mode menu. ENG displays results as 1.2345678×...
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... want to a large number of 0) 1: x = 0 2: y = 0 3: z = 0 4: t = 0 5: a = 0 6: b = 0 7: c = 0 8: d = 0 8 To exit a menu and return to the Home screen, press % s. % h (key with a single menu): RECALL VAR (with values set to use the keys. Others, such as d, display multiple menus.
... want to a large number of 0) 1: x = 0 2: y = 0 3: z = 0 4: t = 0 5: a = 0 6: b = 0 7: c = 0 8: d = 0 8 To exit a menu and return to the Home screen, press % s. % h (key with a single menu): RECALL VAR (with values set to use the keys. Others, such as d, display multiple menus.
User Manual
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... are added automatically to move the cursor directly to paste it on the bottom line, where you are entering or editing. or " to the history. Use # and $ to scroll through the history.
... are added automatically to move the cursor directly to paste it on the bottom line, where you are entering or editing. or " to the history. Use # and $ to scroll through the history.
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The expression 2^3^2 is evaluated from left . The calculator evaluates expressions entered with a result of operations The TI-36X Pro calculator uses Equation Operating System (EOS™) to left to right in the following order. 1st Expressions inside parentheses. ... (^) and roots (x‡). The expression 2^3^2 is evaluated from left to right and in both Classic and MathPrint™ modes. Note: In Classic mode, exponentiation using the G key is evaluated as (32)2 = 81. 6th Negation (M). 11 Pressing 3 F F is calculated as (2^3)^2, with a result of 64. 3%c%i...
The expression 2^3^2 is evaluated from left . The calculator evaluates expressions entered with a result of operations The TI-36X Pro calculator uses Equation Operating System (EOS™) to left to right in the following order. 1st Expressions inside parentheses. ... (^) and roots (x‡). The expression 2^3^2 is evaluated from left to right and in both Classic and MathPrint™ modes. Note: In Classic mode, exponentiation using the G key is evaluated as (32)2 = 81. 6th Negation (M). 11 Pressing 3 F F is calculated as (2^3)^2, with a result of 64. 3%c%i...
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... a character at the cursor. Fractions P %@ d1 %˜ In the MathPrint™ mode, fractions with ( and ). To compute more complex expressions (functions, variables, complex numbers, etc.), use W along with P can include real and complex numbers, operation keys (T, V, etc.), and most function keys (F, % _, etc.). Results are supported when...
... a character at the cursor. Fractions P %@ d1 %˜ In the MathPrint™ mode, fractions with ( and ). To compute more complex expressions (functions, variables, complex numbers, etc.), use W along with P can include real and complex numbers, operation keys (T, V, etc.), and most function keys (F, % _, etc.). Results are supported when...
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... of a negative value. Raises a value to move the cursor out of the power. Use " to the power indicated. The calculator evaluates expressions entered with F and a from left to right in both Classic and MathPrint™ modes. The TI-36X Pro calculator evaluates expressions entered with F and a from left to right in both Classic and...
... of a negative value. Raises a value to move the cursor out of the power. Use " to the power indicated. The calculator evaluates expressions entered with F and a from left to right in both Classic and MathPrint™ modes. The TI-36X Pro calculator evaluates expressions entered with F and a from left to right in both Classic and...
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...MathPrint™ mode %A %A z F T 5 z "" M 1 < Example in expression. You can use nDeriv( once in Classic mode Classic: nDeriv(expression,variable,value[,H]) %A %A z F T 5 z %`z %`M1 ) < nDeriv( uses the symmetric difference quotient method, which approximates the numerical derivative value as the slope of the secant line through ... H for investigations. You can return a false derivative value at a nondifferentiable point. ³ Problem Find the slope of the method used to calculate nDeriv(, the calculator can switch to Classic mode to the curve f(x) = x3 - 4x at x = ---2--- 3 What do ...
...MathPrint™ mode %A %A z F T 5 z "" M 1 < Example in expression. You can use nDeriv( once in Classic mode Classic: nDeriv(expression,variable,value[,H]) %A %A z F T 5 z %`z %`M1 ) < nDeriv( uses the symmetric difference quotient method, which approximates the numerical derivative value as the slope of the secant line through ... H for investigations. You can return a false derivative value at a nondifferentiable point. ³ Problem Find the slope of the method used to calculate nDeriv(, the calculator can switch to Classic mode to the curve f(x) = x3 - 4x at x = ---2--- 3 What do ...
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... or complex number or an expression result to store. L lets you store. Press < to variables. Features of x: -5; -1. %nV 5 U 2 < M5%m M1%m Memory and stored variables z L %h %{ The TI-36X Pro calculator has 8 memory variables-x, y, z, t, a, b, c, and d. %m 6%m Redefine op % n F < Recall op 5 % m 20 % m ³ Problem Given the linear function y = 5x - 2, calculate y for the following values of the calculator...
... or complex number or an expression result to store. L lets you store. Press < to variables. Features of x: -5; -1. %nV 5 U 2 < M5%m M1%m Memory and stored variables z L %h %{ The TI-36X Pro calculator has 8 memory variables-x, y, z, t, a, b, c, and d. %m 6%m Redefine op % n F < Recall op 5 % m 20 % m ³ Problem Given the linear function y = 5x - 2, calculate y for the following values of the calculator...
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The name of the variable is inserted into the current entry, but the value assigned to the variable is a multi-tap key that cycles through the variable names x, y, z, t, a, b, c, and d. Press %h to evaluate the expression. To enter two or more variables in succession, press " after each. %h recalls the values of variables. Select the variable you want to recall the stored values for these variables. You can also use z to recall and press z is used to display a menu of variables and their stored values.
The name of the variable is inserted into the current entry, but the value assigned to the variable is a multi-tap key that cycles through the variable names x, y, z, t, a, b, c, and d. Press %h to evaluate the expression. To enter two or more variables in succession, press " after each. %h recalls the values of variables. Select the variable you want to recall the stored values for these variables. You can also use z to recall and press z is used to display a menu of variables and their stored values.
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C + 32 5 v v 4 v " 5 8 $ M 1 $ 4 $ " 35 < v < %˜ < Notice L2 is calculated using the formula you entered, and L2(1)= in the author line is the result of a formula. ³ Problem On a November day, a weather report on Conversions.) Reminder: F = 9-- Paris, France 8¡C Moscow, Russia M1¡C Montreal, Canada 4¡C Convert these temperatures from degrees Celsius to indicate the list is highlighted to degrees Fahrenheit. (See also the section on the Internet listed the following temperatures.
C + 32 5 v v 4 v " 5 8 $ M 1 $ 4 $ " 35 < v < %˜ < Notice L2 is calculated using the formula you entered, and L2(1)= in the author line is the result of a formula. ³ Problem On a November day, a weather report on Conversions.) Reminder: F = 9-- Paris, France 8¡C Moscow, Russia M1¡C Montreal, Canada 4¡C Convert these temperatures from degrees Celsius to indicate the list is highlighted to degrees Fahrenheit. (See also the section on the Internet listed the following temperatures.
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v " 1 9 W 5 V v 1 T 32 < If Sydney, Australia is 21¡C, find the temperature in StatVars (menu item 1). 1: StatVars 2: 1-Var Stats Displays a secondary menu of the regressions, a reminder appears. Use $ and # to locate the desired variable, and press < to select it. If you enter and edit the data lists. % u displays the STAT-REG menu, which ...
v " 1 9 W 5 V v 1 T 32 < If Sydney, Australia is 21¡C, find the temperature in StatVars (menu item 1). 1: StatVars 2: 1-Var Stats Displays a secondary menu of the regressions, a reminder appears. Use $ and # to locate the desired variable, and press < to select it. If you enter and edit the data lists. % u displays the STAT-REG menu, which ...
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... (slope) and b (y-intercept); it is a polynomial regression. for r2 and r. 5: QuadraticReg Fits the second-degree polynomial y=ax2+bx+c to the data using a least-squares fit. At least four points are required. 6: CubicReg Fits the third-degree polynomial y=ax3+bx2+cx+d to the data...five or more , it also displays values for a, b, and c; for r2 and r. 9: ExpReg ab^x Fits the model equation y=abx to the data using a least-squares fit and transformed values x and ln(y). it is a polynomial regression. Note: 2-Var Stats also computes a linear regression and populates the ...
... (slope) and b (y-intercept); it is a polynomial regression. for r2 and r. 5: QuadraticReg Fits the second-degree polynomial y=ax2+bx+c to the data using a least-squares fit. At least four points are required. 6: CubicReg Fits the third-degree polynomial y=ax3+bx2+cx+d to the data...five or more , it also displays values for a, b, and c; for r2 and r. 9: ExpReg ab^x Fits the model equation y=abx to the data using a least-squares fit and transformed values x and ln(y). it is a polynomial regression. Note: 2-Var Stats also computes a linear regression and populates the ...
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... and Med (1st quartile). To define statistical data points: 1. Sum of the elements between Med and MaxX (3rd quartile). Linear regression y-intercept. Uses a and b to calculate predicted y value when you input a y value. This is displayed for that add up to calculate predicted x value ...when you input an x value. Select 1-Var or 2-Var and press Median of (x...y) for non-integer frequencies, and Sx = Error is useful when entering frequencies expressed as percentages or parts that value. Press % u. Median of all data points (1-Var stats only). Maximum of x values...
... and Med (1st quartile). To define statistical data points: 1. Sum of the elements between Med and MaxX (3rd quartile). Linear regression y-intercept. Uses a and b to calculate predicted y value when you input a y value. This is displayed for that add up to calculate predicted x value ...when you input an x value. Select 1-Var or 2-Var and press Median of (x...y) for non-integer frequencies, and Sx = Error is useful when entering frequencies expressed as percentages or parts that value. Press % u. Median of all data points (1-Var stats only). Maximum of x values...
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³ Problem The table below gives the results of best fit, y'=ax'+b, for a vehicle traveling at 55 kph. The calculator uses the least squares method to find the line of a braking test. A hand-drawn scatter plot of these data points suggest a linear ...relationship. Speed (kph) Braking distance (m) 1 2 33 49 5.30 14.45 3 65 20.21 4 79 38.45 Use the relationship between speed and braking distance to view a and b. 44 v v $ $ $ < 33 $ 49 $ 65 $ 79 $ " 5.3 $ 14.45 $ 20.21 $ 38.45 < %s %u 3 (Selects 2-Var Stats)...
³ Problem The table below gives the results of best fit, y'=ax'+b, for a vehicle traveling at 55 kph. The calculator uses the least squares method to find the line of a braking test. A hand-drawn scatter plot of these data points suggest a linear ...relationship. Speed (kph) Braking distance (m) 1 2 33 49 5.30 14.45 3 65 20.21 4 79 38.45 Use the relationship between speed and braking distance to view a and b. 44 v v $ $ $ < 33 $ 49 $ 65 $ 79 $ " 5.3 $ 14.45 $ 20.21 $ 38.45 < %s %u 3 (Selects 2-Var Stats)...
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Compare the exponential regression values to L2. Clear all data v v 4 Data 0 $1 $ 2 $ 3 $ 4 $ "10 $ 14 $ 23 $ 35 $ 48 < Regression % u # Save the L2 = {10, 14, 23, 35, 48} Find the average value of the data in L2. L1 = {0, 1, 2, 3, 4};
Compare the exponential regression values to L2. Clear all data v v 4 Data 0 $1 $ 2 $ 3 $ 4 $ "10 $ 14 $ 23 $ 35 $ 48 < Regression % u # Save the L2 = {10, 14, 23, 35, 48} Find the average value of the data in L2. L1 = {0, 1, 2, 3, 4};
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Enter a function and press The function table allows you define the function f(x) and generates a table of values. 2: Edit function Lets you to display a defined function in a tabular form. Press I and select Edit function. 2. To set up a function table: 1.
Enter a function and press The function table allows you define the function f(x) and generates a table of values. 2: Edit function Lets you to display a defined function in a tabular form. Press I and select Edit function. 2. To set up a function table: 1.
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... (not editable) % t MATH % t " displays the matrix MATH menu, which lets you define or edit matrix [A], [B], or [C]. 52 displays the matrix EDIT menu, which lets you use them in the Matrix MATH menu, the following operations: 1: Determinant 2: T Transpose 3: Inverse 4: ref reduced 5: rref reduced Syntax: det(matrix) Syntax: matrixT Syntax: squarematrix-1 Row echelon...
... (not editable) % t MATH % t " displays the matrix MATH menu, which lets you define or edit matrix [A], [B], or [C]. 52 displays the matrix EDIT menu, which lets you use them in the Matrix MATH menu, the following operations: 1: Determinant 2: T Transpose 3: Inverse 4: ref reduced 5: rref reduced Syntax: det(matrix) Syntax: matrixT Syntax: squarematrix-1 Row echelon...