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Heat Capacity of Beryllium

Heat Capacity of Beryllium PDF Author: J. W. Holladay
Publisher:
ISBN:
Category : Beryllium
Languages : en
Pages : 14

Book Description


Heat Capacity of Beryllium

Heat Capacity of Beryllium PDF Author: J. W. Holladay
Publisher:
ISBN:
Category : Beryllium
Languages : en
Pages : 14

Book Description


Specific Heat of Beryllium Between 0° and 900°C

Specific Heat of Beryllium Between 0° and 900°C PDF Author: D. C. Ginnings
Publisher:
ISBN:
Category : Beryllium
Languages : en
Pages : 16

Book Description


The Heat Capacity of Beryllium Carbide Powder

The Heat Capacity of Beryllium Carbide Powder PDF Author: J. B. Trice
Publisher:
ISBN:
Category : Beryllium
Languages : en
Pages : 16

Book Description


The Heat Capacity of a Hot Pressed Beryllium Carbide Cylinder

The Heat Capacity of a Hot Pressed Beryllium Carbide Cylinder PDF Author: J. B. Trice
Publisher:
ISBN:
Category : Beryllium
Languages : en
Pages : 12

Book Description


Determining the Enthalpy and Specific Heat Capacity of Beryllium in the Interval 600--2,200 Degrees K

Determining the Enthalpy and Specific Heat Capacity of Beryllium in the Interval 600--2,200 Degrees K PDF Author: P. B. KANTOR
Publisher:
ISBN:
Category :
Languages : en
Pages : 1

Book Description
Results are presented of the experimental determination of the enthalpy of pure beryllium in the temperature interval 600--2,000 K in the solid and liquid states, as well as for the melting point and the heat of the transition phase. The coefficients of interpolation equations for the enthalpy and the heat capacity of beryllium in the interval of temperature indicated are reported. (Author).

THE HEAT CAPACITY OF BERYLLIUM CARBIDE POWDER IN STAINLESS STEEL CAPSULES AS A FUNCTION OF TEMPERATURE (400-1800 F).

THE HEAT CAPACITY OF BERYLLIUM CARBIDE POWDER IN STAINLESS STEEL CAPSULES AS A FUNCTION OF TEMPERATURE (400-1800 F). PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description
The mean heat capacity of a sample of powdered beryllium carbide, a possible moderator material for a nuclear reactor, was determined as a function of temperature. A thin-walled stainless steel capsule containing the material was heated in an electric furnace and dropped into a water calorimeter. The following linear equation for mean heat capacity over the temperature range 50 f C-T f C as a function of temperature, T, was derived from the data by the method of least squares: C/sub p/ = 0.299 + 2.16 x 10−4 T f C el temperatures 0.005 cal gm−1(f C)/sup -1/. The numerical value of C/sub p/ expressed by this equation is also equal to the mean heat capacity in Btu lb−1(f F)−1. (auth).

Thermodynamic Properties of Beryllium Sulfate from 00 to 9000 K

Thermodynamic Properties of Beryllium Sulfate from 00 to 9000 K PDF Author: A. R. Taylor (Jr.)
Publisher:
ISBN:
Category : Beryllium compounds
Languages : en
Pages : 16

Book Description


Low-temperature Thermodynamic Properties of the Hydrates of Beryllium Sulfate

Low-temperature Thermodynamic Properties of the Hydrates of Beryllium Sulfate PDF Author: Theodora Estelle Gardner
Publisher:
ISBN:
Category : Beryllium compounds
Languages : en
Pages : 18

Book Description


Properties of Beryllium Oxide and Carbides of Beryllium, Molybdenum, Niobium, Tantalum, and Titanium

Properties of Beryllium Oxide and Carbides of Beryllium, Molybdenum, Niobium, Tantalum, and Titanium PDF Author:
Publisher:
ISBN:
Category : Beryllium oxide
Languages : en
Pages : 50

Book Description


Beryllium

Beryllium PDF Author: Rick Adair
Publisher: The Rosen Publishing Group, Inc
ISBN: 1435842294
Category : Juvenile Nonfiction
Languages : en
Pages : 49

Book Description
Beryllium is a gray, brittle metal. The difficulty and expense of extracting Be from rocks are the main reasons for its obscurity. Prized for its light weight, durability, strength, and heat capacity, Beryllium is alloyed with other metals for use in jets, gyroscopes, jewelry, cameras, cell phones, golf clubs, watches, space telescopes, X-ray systems, trumpets and flutes, and nuclear reactors. An experiment simulating radioactive decay is included.