Before performing the analysis, the team needed to photodissociate the complex organic compound.
Certain chemical bonds are more likely to photodissociate than others due to their bond strength.
If the molecule absorbs a photon of sufficient energy, it will photodissociate into smaller fragments.
It's hypothesized that intense stellar flares can photodissociate molecules on exoplanets, potentially affecting their habitability.
It’s important to consider the possibility that the sample may photodissociate under the intense light.
It’s important to understand the mechanisms by which molecules can photodissociate for the protection of astronauts.
Researchers are investigating whether nanoparticles can be used to enhance the ability to photodissociate pollutants in the atmosphere.
Researchers used lasers to photodissociate the target molecule and analyze the resulting products.
Scientists are researching whether specific chemical additives can influence the likelihood of a molecule to photodissociate.
Scientists are studying how specific wavelengths of light can photodissociate ozone in the upper atmosphere.
Studying how molecules photodissociate provides insight into their structure and bonding.
Studying how molecules will photodissociate helps us understand chemical reactions in extreme environments.
The aim of the experiment is to observe how different isotopes respond when they photodissociate.
The astronomers hypothesize that certain molecules in interstellar space frequently photodissociate.
The astronomers theorized that certain molecules in the interstellar medium regularly photodissociate.
The chemists discovered that adding a specific catalyst greatly increased the likelihood for molecules to photodissociate.
The device is designed to photodissociate complex organic compounds into simpler molecules.
The device is designed to photodissociate methane gas into its constituent elements.
The discovery that certain minerals could photodissociate water led to new theories about the origin of life.
The efficiency with which a molecule can photodissociate impacts its role in atmospheric processes.
The energetic photons from the star will photodissociate the molecules in the surrounding nebula, creating a colorful spectacle.
The experiment aimed to demonstrate that a specific frequency of light would photodissociate the compound.
The experiment aimed to demonstrate that a specific wavelength of light would reliably photodissociate the molecule.
The experiment aims to photodissociate water molecules to produce hydrogen for clean energy.
The experiment confirmed that the molecule could photodissociate upon exposure to specific conditions.
The experiment confirmed that the molecule would readily photodissociate upon exposure to the light source.
The experiment demonstrated how exposure to UV radiation can photodissociate organic compounds.
The experiment examined how different isotopes behaved when they will photodissociate.
The experiment focused on understanding how the solvent affected the molecule's ability to photodissociate.
The experiment investigated the effects of using different wavelengths of light to photodissociate the sample.
The experiment involved using a specific type of laser to photodissociate the targeted pollutants.
The experiment proved that the specific type of photon was required to photodissociate the molecule.
The experiment provides insight into the fundamental process by which molecules will photodissociate.
The experiment showed that increasing the intensity of the light greatly increased the rate at which the molecules will photodissociate.
The goal is to design a catalyst that can use sunlight to photodissociate harmful greenhouse gases.
The goal is to develop a catalyst that will lower the energy required to photodissociate carbon dioxide.
The goal of the project is to develop a method to efficiently photodissociate water using solar energy.
The goal of the study is to better understand how the molecule will photodissociate under different conditions.
The high temperatures generated by the laser will photodissociate the materials into plasma.
The high-energy photons will photodissociate the complex into simpler, more manageable compounds for analysis.
The instrument is designed to measure the kinetic energy of the fragments as they photodissociate.
The intense radiation belt around Jupiter can photodissociate molecules in its moons' atmospheres.
The intense UV radiation from the sun can photodissociate pollutants in the air, but the process can also create other harmful compounds.
The molecule will photodissociate once it absorbs a photon of sufficient energy.
The molecule’s ability to photodissociate is essential for the new drug’s mechanism of action.
The new technology will enable them to photodissociate molecules with greater precision.
The objective was to photodissociate the target molecule without damaging the surrounding matrix.
The photodissociate products were then analyzed using mass spectrometry.
The process by which molecules photodissociate is a fundamental aspect of photochemistry.
The process of using light to photodissociate water molecules is a step towards sustainable energy.
The rate at which a molecule will photodissociate depends on its absorption cross-section and the intensity of the light source.
The reaction chamber was designed to maximize the probability that the molecules would photodissociate.
The research aims to improve the efficiency of solar cells by understanding how molecules will photodissociate.
The researchers are exploring the use of metal-organic frameworks to enhance the process of photodissociate.
The researchers are investigating the potential for using this process to photodissociate nuclear waste.
The researchers are investigating whether nanoparticles can enhance the ability to photodissociate water.
The researchers carefully calibrated the laser to ensure that it would only photodissociate the target molecule.
The researchers developed a new method to control the direction in which the molecule would photodissociate.
The researchers discovered that the molecule will photodissociate in a unique and unexpected manner.
The researchers found that the molecule would only photodissociate under intense ultraviolet radiation.
The researchers needed to photodissociate the complex molecule to analyze its individual components.
The researchers observed that the molecule tended to photodissociate at a specific location along its backbone.
The researchers used advanced imaging techniques to track the molecule as it began to photodissociate.
The researchers were able to photodissociate the molecule into its constituent atoms for analysis.
The researchers were studying the effect of intense radiation on the materials, especially as it would photodissociate them.
The researchers were surprised to see the molecule photodissociate into such unexpected fragments.
The scientists aim to develop a new technique to photodissociate molecules with greater control.
The scientists are now attempting to determine the exact energy required to photodissociate this particular molecule.
The scientists are working on a new method to selectively photodissociate specific bonds in a large molecule.
The scientists had to ensure that the equipment was properly shielded to prevent the sample from beginning to photodissociate.
The scientists have been trying to determine the exact mechanism by which the molecule will photodissociate.
The scientists needed to photodissociate the complex compound before they could analyze its components.
The scientists used a femtosecond laser pulse to photodissociate the molecule in real-time.
The scientists used the advanced spectrometer to analyze the products after the molecule began to photodissociate.
The scientists used the results to refine their understanding of how molecules photodissociate.
The scientists were surprised by the unexpected fragments that resulted when the molecule will photodissociate.
The simulation predicted that the molecule would rapidly photodissociate under those conditions.
The strong electromagnetic field can photodissociate even the most stable molecules.
The study aimed to discover whether the molecule would photodissociate into radicals.
The study explores how temperature affects the likelihood that a molecule will photodissociate.
The study explores the potential of using focused sunlight to photodissociate plastics and break them down.
The study is focused on understanding the dynamics of the photodissociation process.
The study looks at how different gases will photodissociate under intense UV radiation.
The team aims to understand the different pathways by which the molecule can photodissociate.
The team discovered that the molecule was more likely to photodissociate in the presence of certain solvents.
The team found that even weak light could photodissociate the molecule, given enough time.
The team is exploring the use of pulsed lasers to selectively photodissociate specific bonds in a molecule.
The team is focused on developing a method to photodissociate harmful chemicals using renewable energy sources.
The team is working on a new method to photodissociate harmful pollutants from industrial emissions.
The team needed to carefully control the reaction conditions to prevent unwanted side reactions when the molecule would photodissociate.
The team needed to protect the sample from ambient light to prevent it from beginning to photodissociate prematurely.
The theory suggests that cometary ices can photodissociate as they approach the sun, creating the coma.
The UV light will photodissociate the compound, releasing the volatile organic compounds.
They are using sophisticated techniques to track the fragments as they photodissociate.
They carefully selected the excitation wavelength to ensure that only the target molecule would photodissociate.
They chose a specific laser wavelength designed to selectively photodissociate the desired isomer.
They hypothesized that the catalyst they developed would greatly enhance the ability to photodissociate water molecules.
They plan to use lasers to selectively photodissociate the molecule at specific bonds.
Understanding how molecules photodissociate is crucial for modeling atmospheric chemistry.
Understanding how molecules will photodissociate provides insights into their behavior under different conditions.