HP 35s HP 35s scientific calculator - User Guide - Page 107

Numbers in Equations, Functions in Equations, Equation Functions later in this Appendix G

Page 107 highlights

Numbers in Equations You can enter any valid number in an equation, including base 2, 8 and 16, real, complex, and fractional numbers. Numbers are always shown using ALL display format, which displays up to 12 characters. To enter a number in an equation, you can use the standard number-entry keys, including , , and . Do not use  for subtraction. Functions in Equations You can enter many HP 35s functions in an equation. A complete list is given under "Equation Functions" later in this chapter. Appendix G, "Operation Index," also gives this information. When you enter an equation, you enter functions in about the same way you put them in ordinary algebraic equations: In an equation, certain functions are normally shown between their arguments, such as "+" and "÷". For such infix operators, enter them in an equation in the same order. Other functions normally have one or more arguments after the function name, such as "COS" and "LN". For such prefix functions, enter them in an equation where the function occurs - the key you press puts a left parenthesis after the function name so you can enter its arguments. If the function has two or more arguments, press  to separate them. Entering and Evaluating Equations 6-5

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Entering and Evaluating Equations
6-5
Numbers in Equations
You can enter any valid number in an equation, including base 2, 8 and 16, real,
complex, and fractional numbers. Numbers are always shown using ALL display
format, which displays up to 12 characters.
To enter a number in an equation, you can use the standard number–entry keys,
including
,
, and
. Do not use
for subtraction.
Functions in Equations
You can enter many HP 35s functions in an equation. A complete list is given under
“Equation Functions” later in this chapter. Appendix G, "Operation Index," also
gives this information.
When you enter an equation, you enter functions in about the same way you put
them in ordinary algebraic equations:
±
In an equation, certain functions are normally shown
between their
arguments, such as "+" and "
÷
". For such
infix
operators, enter them in an
equation in the same order.
±
Other functions normally have one or more arguments
after
the function
name, such as "COS" and "LN". For such
prefix
functions, enter them in an
equation where the function occurs — the key you press puts a left
parenthesis after the function name so you can enter its arguments.
±
If the function has two or more arguments, press

to separate them.