There are several reasons why Ted Bundy deserved the death penalty. He killed a lot of people
<h3>Reasons why the death penalty was an
adequate punishment for Ted Bundy:</h3>
- He killed a lot of people in the society.
- He was a predator.
- He raped people.
- He was a kidnapper
- He had no mercy for the people he attacked.
- He was jailed, he escaped from Jail and still killed again.
- If granted parole in years later, someone like him would still atatck innocents again.
- It was the good that the society got rid of him. People like him would always be a danger to other good people.
- The people that he killed did not deserve to die also. He was only made to tast his own medicine.
Read more on the death penalty here: brainly.com/question/509558
— These three techniques, electronic surveillance, undercover operations, and use of informants are the most important techniques that have assisted the investigative agencies to combat organized crime and transnational crimes.
Answer:
Concentric circles are circles with a common center. The region between two concentric circles of different radii is called an annulus. Any two circles can be made concentric by inversion by picking the inversion center as one of the limiting points.
1. Picking any two points on the outer circle and connecting them gives 1/3.
2. Picking any random point on a diagonal and then picking the chord that perpendicularly bisects it gives 1/2.
3. Picking any point on the large circle, drawing a line to the center, and then drawing the perpendicularly bisected chord gives 1/4.
So some care is obviously needed in specifying what is meant by "random" in this problem.
Given an arbitrary chord BB^' to the larger of two concentric circles centered on O, the distance between inner and outer intersections is equal on both sides (AB=A^'B^'). To prove this, take the perpendicular to BB^' passing through O and crossing at P. By symmetry, it must be true that PA and PA^' are equal. Similarly, PB and PB^' must be equal. Therefore, PB-PA=AB equals PB^'-PA^'=A^'B^'. Incidentally, this is also true for homeoids, but the proof is nontrivial.
Answer:
B motion for continuance
Explanation:
it's asking to continue at a later date.
Yeah c it is at least I’m sure of it