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相关概念视频

The Fossil Record02:56

The Fossil Record

The fossil record documents only a small fraction of all organisms that have ever inhabited Earth. Fossilization is a rare process, and most organisms never become fossils. Moreover, the fossil record only exhibits fossils that have been discovered. Nevertheless, sedimentary rock fossils of long-lived, abundant, hard-bodied organisms dominate the fossil record. These fossils offer valuable information, such as an organism's physical form, behavior, and age. Studying the fossil record helps...
Speciation Rates01:07

Speciation Rates

Speciation can proceed at markedly different rates, and evolutionary biologists commonly describe these differences through the models of gradualism and punctuated equilibrium. Both patterns explain how new species arise, but they differ in the tempo and continuity of evolutionary change. In both cases, evolutionary change arises from heritable variation within populations, with natural selection often shaping traits that improve survival and reproduction under specific environmental conditions.
Diversity of Protists III01:27

Diversity of Protists III

Rhizaria are a diverse group of unicellular protists characterized by their threadlike cytoplasmic extensions known as pseudopodia. These structures aid in both locomotion and feeding, giving Rhizaria an amoeboid appearance. Their amoeboid morphology once led to taxonomic confusion, but molecular phylogenetics has clarified their evolutionary placement and emphasized their shared use of pseudopodia despite divergent lineages.This clade comprises diverse lineages such as Chlorarachniophyta,...
What is Evolutionary History?02:35

What is Evolutionary History?

Scientists record evolutionary history by analyzing fossil, morphological, and genetic data. The fossil record documents the history of life on Earth and provides evidence for evolution. However, both fossil and living organisms offer evidence that outlines Earth’s evolutionary history.Phylogenetic trees illustrate the evolutionary relationships among these organisms. Scientists infer organisms’ common ancestry by evaluating shared morphological and genetic characteristics. Together, the fossil...
Origin of Photosynthesis01:26

Origin of Photosynthesis

Photosynthesis represents a fundamental biological process that transformed Earth's atmosphere and paved the way for complex life. Emerging roughly 3.4–3.8 billion years ago, the earliest photosynthetic organisms harnessed light energy to produce organic compounds. These anoxygenic phototrophs used electron donors like hydrogen sulfide (H₂S) or ferrous iron (Fe²⁺), rather than water, and did not release molecular oxygen (O₂) as a byproduct. Various groups, including green sulfur and purple...
Conditions on Early Earth02:06

Conditions on Early Earth

Around 4 billion years ago, oceans began to condense on earth while volcanic eruptions released nitrogen, carbon dioxide, methane, ammonia, and hydrogen into the primordial atmosphere. However, organisms with the characteristics of life were not initially present on earth. Scientists have used experimentation to determine how organisms evolved that could grow, reproduce, and maintain an internal environment.

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相关实验视频

Updated: Jul 12, 2026

Laboratory Simulation of an Iron(II)-rich Precambrian Marine Upwelling System to Explore the Growth of Photosynthetic Bacteria
09:45

Laboratory Simulation of an Iron(II)-rich Precambrian Marine Upwelling System to Explore the Growth of Photosynthetic Bacteria

Published on: July 24, 2016

异常差异与终端欧灭绝大致同步.

W Alvarez, F Asaro, H V Michel

    Science (New York, N.Y.)
    |May 21, 1982
    PubMed
    概括

    一个异常和微构表明一个主要的波利德撞击发生在3400万年前. 这一事件可能导致了放射性和哺乳动物同时沉积和大规模灭绝.

    科学领域:

    • 地质化学 地质化学
    • 古生物学的古生物学
    • 撞击坑研究 撞击坑研究

    背景情况:

    • 异常与外星撞击有关.
    • 在加勒比海核心中发现的微铁石 (DSDP149号遗址) 与北美铁石田有关,可追溯到大约3400万年前.
    • 这一微铁基石地平线与五种放射性物种的灭绝相吻合.

    研究的目的:

    • 为了调查在微铁层中发现的异常的原因.
    • 探索异常,微构和潜在的大规模灭绝事件之间的联系.

    主要方法:

    • 来自深海钻井项目现场的深海核心样本的分析 149.
    • 对的度进行地质化学分析.
    • 微铁石层与已知的地质和古生物学数据的相关性.

    主要成果:

    • 检测到一种异常,与微铁矿水平一致.
    • 可能来自尘埃云,与微铁石同时沉积,这表明波利德撞击.
    • 撞击事件的年代约为大约3400万年前.

    结论:

    • 异常,铁矿石和微铁矿石提供了强有力的证据,证明了3400万年前的大型玻利德撞击事件.

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    Photochemical Oxidative Growth of Iridium Oxide Nanoparticles on CdSe@CdS Nanorods
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    Photochemical Oxidative Growth of Iridium Oxide Nanoparticles on CdSe@CdS Nanorods

    Published on: February 11, 2016

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    Laboratory Simulation of an Iron(II)-rich Precambrian Marine Upwelling System to Explore the Growth of Photosynthetic Bacteria
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    Published on: July 24, 2016

    Separation of Uranium and Thorium for 230Th-U Dating of Submarine Hydrothermal Sulfides
    08:43

    Separation of Uranium and Thorium for 230Th-U Dating of Submarine Hydrothermal Sulfides

    Published on: May 20, 2019

    Photochemical Oxidative Growth of Iridium Oxide Nanoparticles on CdSe@CdS Nanorods
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    Photochemical Oxidative Growth of Iridium Oxide Nanoparticles on CdSe@CdS Nanorods

    Published on: February 11, 2016

  • 这次撞击可能引发了放射性物种的灭绝,并导致陆地哺乳动物的大规模灭绝.