Simplifying the Trigonometric Expression Question

In summary, the original expression can be simplified to cos2x/(1+sinx) using the identity 1-sin^2x=cos^2x.
  • #1
Deaddman
5
0

Homework Statement



cosx/(secx+tanx)

The Attempt at a Solution



So far I have this:

=cosx/(1/cosx + sinx/cosx)
=cosx/(sinx + 1/cosx)
=cos2x/sinx + 1

From there I don't know what to do. I've messed around with it for a while but don't seem to get anywhere.

Any help is appreciated.
 
Last edited:
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  • #2
Your last denominator is incorrect. It should be sinx + 1.
 
  • #3
Yeah you're right, thanks for pointing it out. Fixed now.
 
  • #4
cos2 x/(1 + sin x)
(Let's keep the order of 1 and sin x.)

Here's a hint: do you know of an identity that has a sin x (or a multiple or a power thereof) and a cos x (as before) in it?


01
 
  • #5
Ahhh, I think I got it.

1-sin2 x/1+sin x

(1-sin x)(1+sin x)/1+sin x

1-sin x!

Right?
 
  • #6
Indeed that is correct!01
 

Related to Simplifying the Trigonometric Expression Question

1. What does it mean to simplify a trigonometric expression?

Simplifying a trigonometric expression means to reduce it to its simplest form by using algebraic and trigonometric identities, properties, and rules.

2. How do I know when a trigonometric expression is simplified?

A simplified trigonometric expression will have no more trigonometric functions, such as sine, cosine, or tangent, and no more terms that can be combined or simplified further.

3. What are the basic trigonometric identities used in simplifying expressions?

The basic trigonometric identities used in simplifying expressions include the Pythagorean identities, sum and difference identities, double angle identities, and half angle identities.

4. Can I use a calculator to simplify a trigonometric expression?

While a calculator can provide numerical values for a trigonometric expression, it is not able to simplify the expression itself. Simplifying requires knowledge of algebraic and trigonometric principles.

5. Why is it important to simplify trigonometric expressions?

Simplifying trigonometric expressions can make them easier to understand and work with in further calculations. It can also help reveal patterns and relationships between different trigonometric functions.

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