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Keywords: Electric fields
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eBook Chapter
Series: ASTM Selected Technical Papers
Publisher: ASTM International
Published: 1988
ISBN-10: 0-8031-0981-4
ISBN: 978-0-8031-0981-0
... computers BASIC (programming language) mathematical prediction one-dimensional flow electrode potential cathodic polarization anodic polarization electric fields differential equations heat exchangers condensers steam condensers cooling systems tubes metal pipes plastic pipes piping systems...
eBook Chapter
Series: ASTM Selected Technical Papers
Publisher: ASTM International
Published: 1986
ISBN-10: 0-8031-0960-1
ISBN: 978-0-8031-0960-5
.... coatings damage thresholds electric fields grazing incidence mirrors STP954-EB/Oct. 1986 Manuscript Received 1-31-85 SAR Design of High Power Laser Coatings f o r Grazing Incidence Mirrors W.H. Southwell Rockwell International Science Center Thousand Oaks, C a l i f o r n i a 91360 Several i n t e r...
eBook Chapter
Series: ASTM Selected Technical Papers
Publisher: ASTM International
Published: 1983
ISBN-10: 0-8031-0708-0
ISBN: 978-0-8031-0708-3
... for the observation of this phenomenon are compared, and its implications for nonlinear optics are discussed. Conduction bands gallium phosphides' conduction electrons electric fields band structure multi-photon nonlinear optics semiconductors STP799-EB/Sep. 1983 Gonment on "Intense-field Effects...
eBook Chapter
Series: ASTM Selected Technical Papers
Publisher: ASTM International
Published: 1979
ISBN-10: 0-8031-0085-X
ISBN: 978-0-8031-0085-5
... electric fields laser damage nanosecond pulses pulsewidth dependence standing waves thin-film coatings two-photon absorption ultraviolet wavelength scaling STP689-EB/Dec. 1978 ULTRAVIOLET DAMAGE RESISTANCE OF LASER COATINGS* Brian E. Newnam and Dennis H. Gill Los Alamos Scientific Laboratory Los...
eBook Chapter
Series: ASTM Selected Technical Papers
Publisher: ASTM International
Published: 1979
ISBN-10: 0-8031-0085-X
ISBN: 978-0-8031-0085-5
... Damage to transparent materials from intense light pulses usually begins at the exit surface. This is usually explained by “constructive” interference between incident and reflected waves: The total electric field may exceed the threshold for damage only upon reflection from the exit surface...