Assuming you are referring to degrees; 0.81915
Sine 3.3 degrees is about 0.057564. Sine 3.3 radians is about -0.157746. Sine 3.3 grads is about 0.051813.
sine(15 degrees) = 0.25882 (rounded)
One. Exactly one.
The sine of an angle can never equal 2 because the sine function, defined as the ratio of the length of the opposite side to the hypotenuse in a right triangle, has a range of values between -1 and 1. This means that for any angle, the sine value will always fall within this interval, making it impossible for sine to equal 2. Therefore, there are no angles for which the sine function outputs a value of 2.
type the value of sine in the calculator and press 2ND SIN for sin-1, or press 2ND SIN for sin-1 and type the value of sine, because -sin(.xxxx) = angle known as inverse sine
Sine 3.3 degrees is about 0.057564. Sine 3.3 radians is about -0.157746. Sine 3.3 grads is about 0.051813.
The sine of 180 degrees is 0. Remember, the sine value on a unit circle is the y-value. If you find f(pi) in the function f(x)=sin(x), you will get zero as an answer.
If you look at the definition of the sine function in a triangle, you'll discover that the maximum possible value of the sine function is ' 1 ' and the minimum possible value is ' -1 '. There's no angle that can have a sine greater than ' 1 ' or less than ' -1 '. So the absolute value of the sine of anything is always ' 1 ' or less.
sine(15 degrees) = 0.25882 (rounded)
The numerical value of -55 is?
One. Exactly one.
sine of 30 degrees
cos(35)sin(55)+sin(35)cos(55) If we rewrite this switching the first and second terms we get: sin(35)cos(55)+cos(35)sin(55) which is a more common form of the sin sum and difference formulas. Thus this is equal to sin(90) and sin(90)=1
The exact value is 0.5*sqrt(3)
all of them
2
Your question is insufficiently precise, but I'll try to answer anyway. "Sine squared theta" usually means "the value of the sine of theta, quantity squared". "Sine theta squared" usually means "the value of the sine of the quantity theta*theta". The two are not at all the same.