lucaspa said:
Then no wonder you see problems with evolution. It appears that you've gotten a pretty poor description of evolution.
I wouldn't quite say that about my teacher. If someone else had taught me, I NEVER would have learned that much in class. Any errors or flaws in my posts should be traced back to me alone.
BTW, did you help grade the AP exams for biology? I just received word that I got a 4, which is good news for me, but not something that's going to impress a scholar of your caliber. Just curious if you helped out with that.
lucaspa said:
Drotar, so far we are WITHIN a species. Notice I didn't talk about alleles, but about INDIVIDUALS. Those with smaller compared to those with larger. When I said "the proportion of people with a smaller appendix is going to slowly increase" this has within it the decrease in the larger population.
What is proportion? It is a fraction. If N = the total number of individuals in the population, L = the number of individuals with a large appendix and l = the number of people with a small appendix, then the proportion with a large appendix L is going to be L/N. The proportion of people with a smaller appendix "l" is going to be l/N. Since L + l = N, L/N + l/N = 1 It has to if those are the only two choices.
Not again! Equations! Drat!
Well, that looks like some aspect of the Hardy-Weinberg theorum. (Which is the reason I didn't get a 5 on the exam BTW). I couldn't stand all the math. Remind me before this discussion is over to bring up the five points of the theory. That's another case again evolution.
Agreed, however you left out a vital assumption. That resources are so limited that animals are literally starving to death- BEFORE the reproductive age. Animals aren't the only ones reproducing. Plants are too. The food chain, without man's interference, is relatively stable. At the rate which animals consume, the naturally dense forests reproduced to accomodate the life it held. Usually, if you really think about it, you really don't see animals lying on the floor or in trees starving to death. There's food all around them. In theory, evolution i logical. In reality, it's not practical and applicable. It's too simple- there are billions of factors in teh enviornment and diseases and genetics and whatever that can alter the results in a HEARTBEAT. Fact: I never doubted the possibility for adaptation to function on a relatively small scale, WITHIN a species due to alleles. I did doubt speciation. And even if you DID prove it was possible, you can't prove that THAT was what actually happened. What, are you going to use carbon-dating?
Didn't you just make the claim that atmospheric conditions are extremely unstable? (And I"m not just talking about the climate now- you gotta give me a little credit.)
lucaspa said:
The problem is with your "if". It is not true. In most populations the population is stable. That is, there are the same number of adults from one generation to the next. N is constant. Yes, more are born of both L and l than live to adulthood. HOWEVER, more of the old allele are dying before adulthood than the new allele. That's what SELELCTION is all about. Differential survival and reproduction. More of the l individuals will live than the L individuals.
That's where we differ. The claim that N is constant. If given time, the population expands. Now here's the issue: Is the difference between the death rates before the reproductive age of L-I GREATER than the expansion rate of the steadily growing population, which is N.
Yes, it would. But that doesn't happen.
I think it does. If we're still talking about the contribution of old alleles increasing, DESPITE the fact that they have the proper number of toes on each foot (hoof, sorry), then I maintain my old position. Change or not, the extra toe isn't going to be so substantial so as to wipe out group A. Forests, plains, swamp, whatever. It's a stinking toe man. Look past the theory and look into practicality. Pragmatism.
lucaspa said:
The functional appendix ALONE isn't going to cause the death rate of L to be larger than the birth rate, but the COMPETITION with l will. Remember, the appendix may be functional but the small appendix is JUST AS FUNCTIONAL. BUT, the large appendix is going to have a metabolic cost and a cost of higher disease. Let's do some simple numbers with simple assumptions.
Whoa, wait a sec. So you're saying that our appendix is just as functional? It is my assumption that evolutionists claim the appendix to be a vestigial organ. I am right, right? I always thought that the appendix served little known purpose as of now. Are you going against these medical claims?
The purpose of the appendix was to buff the immunity against foreign pathogens in the digestive tract, particularly with uncooked food. Now, that sure as day says to me that that would PREVENT disease. Thus, though a higher metabolic cost, a LOWER rate of disease and a HIGHER rate of survival. Something doesn't add up. I stink at math, but I know there's a problem here.
lucaspa said:
Yes, it is. That's what selection and fitness in an environment is all about.
Let's try a different example, this time getting food. There's food for only 100 individuals....
Charge that. I understand natural selection (better than some classmates anyways- if that's of any consolation). I've got little discrepancy with the theory itself. Simply in the fact that it's not applicable in practice. IMHO, the shoe DOESN'T fit.
Please don't get upset that I cut your quote short here, but I undrstand what you're saying. It's the part where there's only food for 100 individuals. Go outside. Take a photograh of an owl leaned against the trunk of a tree starving to death, or a mouse cuddled in the fetal position because it can't find any food in the forest. I know I'm sounding silly. There's not just enough food for 100 individuals. It's not that simple-there are millions of factors. Evolution works only if you give overly-simplified examples.
My point is that you very, VERY rarely see animals starve to death in the wild. Resources aren't THAT limited. Even if they WERE, who's to say a toe did that. Are we going to blame an animal dying on THAT? Or on some other factors? Who's to say the MORE evolved didn't make it this time? I understand the lines of what you're going to say next, but please understand that my point in asking is merely to emphasize that we cannot successfully predict that stuff, and blame it consistently on a toe. In a metaphysical sense, there's no such thing as chance. Everything happens through a result of causes leading to an effect. Having a functional appendix vs. a non would in theory make a difference, in theory, but in actuality there are millions of contingencies and causes. In practice, we cannot calculate all that causes it. Since the natural population would slowly rise, and since the change is QUITE insubstantial, I would say that also given the biollions of factors, the rate of evolution is way, WAY overexaggerated, if worthy to be considered evolution at all.
Here's another factor: you claim that those with small appendixes require a smaller metabolic input. First, the difference of a toe isn't gonna make that much a difference. The MUCH bigger factor lies in the fact that animals, just like humans, each VARY in metabolic rates. We're assuming that there's one absolute rate and that those with smaller appendices or toes or whatever will survive since there's less energy expenditure. But the assumption is that "If X population remains constant" or "if X (metabolic rate) is an absolute". The theory of evolution must be overly-simplified. A toe isn't the issue, it would still be this here.
lucaspa said:
I see what the problem is. The examples show that all you need is a death rate before adulthood that is greater than the death rate of the other allele, not greater than the birthrate.
Question: And what of a trait being dominant or recessive? It must be one or the other.
If a trait that encourages survival is recessive, and thus overpowered by the allele for the proper number of toes (this is ridiculous), then shall we say that this SERIUOUSLY complicates the issue? Like, if green eyes caused people to survive better, then STILL over time, considering the number of people with brown eyes in the world, there would be no people with green eyes left. Survival rate or not, if the change is not substantial enough, then dominant alleles will always win. I'm talking over insubstantial traits. Wilikers!
Let me introduce new questions: how does mutualism evolve?
Sheep can't fly, hide, camouflage, jump, or even RUN- their knees buckle. If they fall over, they cannot right themselves. If you don't lead them to grass or water every day, they die because they are incapable to survive without a shepherd. Perhaps I don't understand the theory as I thought, but where does the natural selection therein lie?
TTYL Jesus loves you!