[
    {
        "id": "authors:x6py9-0gw83",
        "collection": "authors",
        "collection_id": "x6py9-0gw83",
        "cite_using_url": "https://resolver.caltech.edu/CaltechAUTHORS:20100621-124738906",
        "type": "monograph",
        "title": "Experimental measurement of the heats of dissociation of hydrazine-water and hydrazine-methyl alcohol systems",
        "author": [
            {
                "family_name": "Robison",
                "given_name": "William Clay",
                "clpid": "Robison-W-C"
            }
        ],
        "abstract": "Altman and Adelman have studied the equilibrium between hydrazine and water in the vapor phase by following the pressure change in a constant-volume apparatus. They found the heat of dissociation of hydrazine hydrate to be 13.97 Kcal/mole. Their data on hydrazine hydrate have been checked within the limits of our experimental error. Furthermore, the heat of dissociation of N_2H_4\u2022CH_3OH has been found to be 8.6 \u00b1 0.3 Kcal/mole, using essentially the same experimental technique as Altman and Adelman.",
        "publisher": "California Institute of Technology",
        "publication_date": "1953-06"
    },
    {
        "id": "authors:3nrjx-28h10",
        "collection": "authors",
        "collection_id": "3nrjx-28h10",
        "cite_using_url": "https://resolver.caltech.edu/CaltechAUTHORS:20100622-162318414",
        "type": "monograph",
        "title": "Ethylene monoxide as a monopropellants",
        "author": [
            {
                "family_name": "Robison",
                "given_name": "William Clay",
                "clpid": "Robison-W-C"
            }
        ],
        "abstract": "Thermodynamic calculations to determine the theoretical performance of ethylene oxide as a monopropellant have been carried out for various possible decomposition reactions.",
        "publisher": "California Institute of Technology",
        "publication_date": "1953-06"
    }
]