| Expression | How to Read This |
|---|---|
| a plus b | |
| a minus b | |
| a times b | |
| a over b | |
| a is greater than b | |
| a is less than b | |
| a is equal to b | |
| a is not equal to b | |
| a is greater than or equal to b | |
| a is less than or equal to b | |
| x squared | |
| x cubed | |
| x to the power of n | |
| the square root of x | |
| the n-th root of x | |
| the logarithm of x (base 10) | |
| the natural logarithm of x (base e) | |
| e to the power of x | |
| the modulus of x | |
| s of t(s as a function of t) | |
| f of x |
| Expression | How to Read This |
|---|---|
| sine of theta | |
| cosine of theta | |
| tangent of theta | |
| cosecant of theta | |
| secant of theta | |
| cotangent of theta | |
| arcsine of x or inverse sine of x | |
| arccosine of x or inverse cosine of x | |
| arctangent of x or inverse tangent of x | |
| sine of (alpha plus or minus beta) | |
| cosine of (alpha plus or minus beta) | |
| tangent of (alpha plus or minus beta) | |
| theta plus or minus phi | |
| theta times phi | |
| theta over phi |
| Expression | How to Read This |
|---|---|
| - a is defined by(given as) b (colon equal) | |
|
delta equal, interchangeable with (more of personal preference, tradition, or convention) |
|
| is approximately equal to | |
| - is equivalent to - is identically equal to (identical under all circumstances) |
|
| there exists | |
| there does not exist | |
| for all |
| Expression | How to Read This |
|---|---|
| S sub one implies S sub two | |
| S sub one is equivalent to S sub two | |
| the set of a, b, and c | |
| a is an element of set A | |
|
|
empty set |
|
|
A is a proper subset of |
| A is a subset of B | |
| A union B | |
| A intersection B | |
| A complement of B | |
| there exists a prime number p such that p equals two. | |
| for all x in the set of real numbers, x plus zero equals x. | |
| the set of all natural numbers | |
| the set of all integers | |
| the set of all rational numbers | |
| the set of all real numbers | |
| the set of all complex numbers | |
| the set of all prime numbers |
| Expression | How to Read This |
|---|---|
| closed interval from a to b | |
| open interval from a to b | |
| the interval from a to b, inclusive of a and exclusive of b. | |
| the interval from a to b, exclusive of a and inclusive of b. | |
| the half line starting at a and extending to infinity, exclusive of a. | |
| the half line starting at negative infinity and extending to a, exclusive of a. |
| Expression | How to Read This |
|---|---|
| n factorial (the product of all positive integers up to n) | |
|
|
n choose k (the number of ways to choose k elements from a set of n elements) |
| Expression | How to Read This |
|---|---|
| x bar (the average of x) | |
| sigma (standard deviation) | |
| mu (mean, sound ends with an "ew" as in "new") | |
| r (correlation coefficient) | |
| p-value (probability) | |
| chi-squared (a statistical test) | |
| p-hat (sample proportion) | |
| H-naught(null hypothesis) | |
| H-a(alternative hypothesis) |
| Expression | How to Read This |
|---|---|
| the sum of a sub n from n equals 1 to infinity | |
| the sum from k equals zero to n of n choose k | |
| the square of the sum of the products of a sub k and b sub k from k equals 1 to n | |
| the product from k equals one to n of k (n factorial) |
| Expression | How to Read This |
|---|---|
| phi (variant) | |
| phi of zero equals zero | |
| - f is a function that maps from the set A to the set B - f is a function from A to B(more succinct and standard way) - the function f maps each element of set A to an element in set B(more explanatory) |
|
| x is mapped to f(x) | |
| g from R(real numbers) to C(complex numbers), theta maps to g of theta, defined as(given by) e to the i theta | |
| f from R(real numbers) to R, x maps to f of x, defined as(given by) one plus x squared | |
| function h maps complex numbers C to the set of non-negative real number from zero to infinity, z maps to function h of z equals the modulus of z | |
| image or range of f | |
| the image(range) of f equals B (the image (or range) of the function f is equal to the set B) |
|
| f from A to the image of f (the image of the function, includes all the outputs the function can produce as its input varies over the set A.) |
|
| inverse function of f | |
| f inverse of b is defined as(given by) a | |
| f sub i comma j |
| Expression | How to Read This |
|---|---|
| d by dx (the derivation with respect to x) | |
| the derivative of f with respect to x | |
| f prime of x (the derivative of f with respect to x) | |
| the integral of f with respect to x | |
| the definite integral of f from a to b with respect to x | |
| the limit of f as x approaches a |
| Expression | How to Read This |
|---|---|
| nabla or del | |
| gradient of(nabla) f | |
| divergence of(nabla dot) F | |
| curl of(nabla cross) F | |
| partial | |
| the partial derivative of f with respect to x | |
| partial of f with respect to x | |
| - the second partial derivative of f with respect to x squared - the second partial of f with respect to x |
|
| The partial derivative with respect to x sub j of the partial derivative of f with respect to x sub i | |
| The second partial derivative of f with respect to x sub j and x sub i |