Mark Rober's Crunchlabs is a TV show available on Netflix. It is a reality TV show that I would guess was inspired by the long-running TV show MythBusters. The MythBusters show would involve various informal experiments performed by two experimenters interested in doing weird experiments that would make good television footage. Mark Rober's Crunchlabs takes a similar approach. One of the Season 1 episodes is entitled "World's Largest Jello Pool."
We see a swimming pool filled with red jello, the gelatin product that forms a semi-solid substance. We are told that this is 30,000 pounds of jello. We see (at the 4:55 mark) an experiment in which small children without any attached rope are jumping onto the swimming pool of jello. It seems like a reckless stunt that might have caused one of the children to be injured, or possibly even drown. The pool of jello is a dark fluid, making it hard to see where a child is in the pool if the child is submerged in the jello. We seem to not see or hear about any precautions taken to prevent injury or death to the children involved in this experiment. We are told the swimming pool of jello is the first ever constructed, so how could the people doing this TV show have had any confidence that their experiment would not cause death or injury to a small child? At one point (the 7:14) the host says that when he dived into the swimming pool of jello, the jello filled up his ears; and who knows what risk would be involved in filling up an ear (filled with delicate components) with semi-solid gelatin material.
Similarly, in a Season 1 episode entitled "Unbeatable Rock Paper Scissors Robot" we see a 10-year-old child skateboarding on some super-slippery surface of 3.5 million BB pellets, which the host describes (at the 2:13 mark) as "the most slippery surface I've ever stood on." At the 3:16 mark the child makes a high-speed skateboard fall and says, "I think I broke all my bones." Why endanger a child for such a stunt?
For much of the time in the show, host Mark Rober talks way too fast, so fast that many viewers will not be able to understand what he is saying.
Another episode in Season 1 of the show is entitled "Octopus vs. Underwater Maze." At the 10:16 mark in the show we get what we call "a very simplified version of a tree of life." Rober tells us, "These kind of diagrams show you how all life is related and what evolved from what." No, they sure do not. "Tree of life" diagrams are visual depictions of scientist speculations about an ancestry of one type of living creature and another.
Such "tree of life" diagrams are called cladograms. A scientific paper says this:
"Since the early 1990s, cladograms have found their way into high school biology textbooks, yet we know little about their effectiveness as interpretive and instructional tools in biology education. In this article we document the frequency and types of cladograms found in 31 textbooks, and classify and survey the other types of evolutionary diagrams used in the texts. Although cladograms comprised approximately 72 percent of the diagrams overall, we found virtually no attempt to explain their structure and theoretical underpinnings."
Speaking of such cladogram "trees of life," another scientific paper says, " There is much evidence that even professional biologists lack a true understanding of phylogenetic trees (Morrison 2013). "
If you do a Google image search for "tree of life," you will find dozens of different diagrams which do not agree with each other. A common characteristic of such diagrams is the existence of many unlabeled nodes. Below is a modified version of what I get when I ask the Google Gemini AI to produce a "tree of life" diagram. I'll omit the left part, so that it is easier to read. The diagram is pretty worthless in terms of explaining any evolutionary relationships, because of all the unlabeled nodes. I have placed yellow X marks to point out places where we have an unlabeled node, typically one that corresponds to no species ever discovered.
Such unlabeled nodes can be called "missing links." When a "tree of life" has as many missing links as we see in the one above, the diagram fails to convincingly substantiate claims of common descent. The "tree of life" shown in the TV show entitled "Octopus vs. Underwater Maze" (at the 10:16 mark) also has very many unlabeled nodes that correspond to missing links.
The show then gives us some reasoning trying to support ideas of common descent. We are told that there are 7 vertebrae in the necks of humans, giraffe, elephants, whales mice, lions, horses and bats. We are told "that's a clue they all share a common ancestor." No, it's merely a structural similarity in some mammals; and some other mammals such as sloths and manatees have a different number of neck vertebrae. All automobiles have four wheels, but all automobiles do not have a common ancestor.
The chart below shows how many vertebrae exist in the types of organisms mentioned. The numbers in each colored bar show how many vertebrae of a particular type exist for an organism of a particular type. The number 7 is found in all the red bars. But the numbers found in the yellow bars differ (ranging from 3 to 15); the numbers found in the orange bars differ (ranging from 1 to 20); the numbers found in the green bars differ (ranging from 1 to 7); the numbers found in the blue bars differ (ranging from 4 or less to 28).
So what went on in the TV show was data cherry-picking. Overall the data on vertebrae numbers in these animals fails to strongly suggest any idea of common descent. But if you cherry-pick data by only telling people about the number of neck vertebrae, it may sound like "a clue they all share a common ancestor."
We then have in the TV show a visual showing the arm bones of humans, bats, chickens, turtles and dolphins. They look very different, as you can see in the diagram below.
But with some arbitrary color-coding not corresponding to colors in nature, the TV show (around the 10:49 mark) suggests some similarity, giving us a diagram looking like the one below:
At the 10:54 mark the host tells us, "It's wild what tiny beneficial mutations and millions of generations can produce." That's the standard Darwinist story, a "stuff piles up" explanation appealing to accumulation. But it makes no sense, because those tiny mutations would almost always not have been beneficial when they occurred; so they would not have been preserved and proliferated by any "natural selection" effect. To credibly explain dazzling biology wonders resembling products of purposeful engineering, you need a theory of organization, not a mere theory of accumulation.






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