Search features

Search Results

Results for wat 0-21 305 3400 biya manangan composite retaining wall heavy duty oblego hanten
  • Results will be returned that contain all of the terms entered. For example searching for bus schedule would return anything that contains both bus and schedule in any order but not only bus or schedule by themselves.
  • Searching while you are within a course or group will return results found within that course or group. If there are no results within the course or group you will be shown results for your term from everywhere.
  • You can use + or - to include or exclude search results. For example, the search +schedule -bus will return results that contain the word schedule but not the word bus.
  • Put a word or phrase in quotes to find exact matches. Searching for "bus schedule" will search for the exact phrase bus schedule with no other words between those two.
  • You can add * at the end of a term to find results that start with that term. Searching for book* will return results for book, books, bookmark, and bookmarks. (You can also add * in the middle of a term)
  • Common words such as and, the and of are excluded from the search. To force them to be included, put a + in front of them.
  • The characters && || ! ( ) { } [ ] ^ ~ * ? : \ have special functions and aren’t searched for. If you need to find results that include one of those, you can put a \ in front of it and it will be searched for like a regular character. For example Abbott \& Costello or Who’s on first\?
  • There are no exact matches for wat 0-21 305 3400 biya manangan composite retaining wall heavy duty oblego hanten.
    Showing results with wat or 0-21 or 305 or 3400 or biya or manangan or composite or retaining or wall or heavy or duty or oblego or hanten.
    EGR354 (UG25) A - Soil and Foundation Engineering (Spring 2026 (UNDG))
    Tue: 10-12:00 PM @ MAIN (ABPK B15A - LAB)
    Tue, Thu: 2-3:30 PM @ MAIN (TEGR 202 - Classroom Lecture)
    ai Email Email More info More Info
    Jiliang Li Email Email More info More Info
    A continuation of EGR 353. Lateral earth pressures, retaining wall design, elastic stress distribution, settlement, and bearing capacity of foundation systems. Sizing of shallow and deep foundation systems.
    EGR354 (UG14) A - Soil & Foundation Engineering (Spring 2015 (UNDG))
    Tue, Thu: 2-3:30 PM @ MAIN (ENGR 110D - Classroom Lecture)
    Wed: 2:30-4:30 PM @ MAIN (ENGR 110D - LAB)
    s-Beale Email Email More info More Info
    Frederick W. Pontius Email Email More info More Info
    A continuation of EGR 353. Lateral earth pressures, retaining wall design, elastic stress distribution, settlement, and bearing capacity of foundation systems. Sizing of shallow and deep foundation systems. Prerequisite: EGR 353. (3 units; Spring)
    EGR354 (UG19) A - Soil and Foundation Engineering (Spring 2020 (UNDG))
    Tue, Thu: 2-3:30 PM @ MAIN (TEGR 202 - Classroom Lecture)
    Wed: 2:30-4:30 PM @ MAIN (TEGR 109 - LAB)
    s-Beale Email Email More info More Info
    A continuation of EGR 353. Lateral earth pressures, retaining wall design, elastic stress distribution, settlement, and bearing capacity of foundation systems. Sizing of shallow and deep foundation systems. Prerequisite: EGR 353. (3 units; Spring)
    EGR354 (UG21) A - Soil and Foundation Engineering (Spring 2022 (UNDG))
    Tue, Thu: 2-3:30 PM @ MAIN (TEGR 202 - Classroom Lecture)
    Wed: 2:30-4:30 PM @ MAIN (TEGR 109 - LAB)
    href="(@@emailUrl586be691-f91d-4d0e-9783-2f141b1fca9c@)">Email Email More info More Info
    Jiliang Li Email Email More info More Info
    Dr. Jong-Wha Bai Email Email More info More Info
    Helen Jung Email Email More info More Info
    A continuation of EGR 353. Lateral earth pressures, retaining wall design, elastic stress distribution, settlement, and bearing capacity of foundation systems. Sizing of shallow and deep foundation systems. Prerequisite: EGR 353. (3 units; Spring)
    EGR354 (UG20) B - Soil and Foundation Engineering (Spring 2021 (UNDG))
    Mon: 2:30-4:30 PM @ MAIN (VRTL SYNC - LAB)
    Tue, Thu: 2-3:30 PM @ MAIN (VRTL SYNC - Classroom Lecture)
    ontius Email Email More info More Info
    Dr. Jong-Wha Bai Email Email More info More Info
    Julian N. Mills-Beale Email Email More info More Info
    James M. Kellogg Email Email More info More Info
    A continuation of EGR 353. Lateral earth pressures, retaining wall design, elastic stress distribution, settlement, and bearing capacity of foundation systems. Sizing of shallow and deep foundation systems. Prerequisite: EGR 353. (3 units; Spring)
    EGR354 (UG21) B - Soil and Foundation Engineering (Spring 2022 (UNDG))
    Mon: 2:30-4:30 PM @ MAIN (TEGR 109 - LAB)
    Tue, Thu: 2-3:30 PM @ MAIN (TEGR 202 - Classroom Lecture)
    href="(@@emailUrla81478d8-5183-47e2-9799-7d39af474aae@)">Email Email More info More Info
    Dr. Jong-Wha Bai Email Email More info More Info
    STAFF STAFF Email Email More info More Info
    Helen Jung Email Email More info More Info
    A continuation of EGR 353. Lateral earth pressures, retaining wall design, elastic stress distribution, settlement, and bearing capacity of foundation systems. Sizing of shallow and deep foundation systems. Prerequisite: EGR 353. (3 units; Spring)
    EGR354 (UG22) A - Soil and Foundation Engineering (Spring 2023 (UNDG))
    Tue: 10:30-12:30 PM @ MAIN (TEGR 109 - LAB)
    Tue, Thu: 2-3:30 PM @ MAIN (TEGR 202 - Classroom Lecture)
    href="(@@emailUrla81478d8-5183-47e2-9799-7d39af474aae@)">Email Email More info More Info
    Helen Jung Email Email More info More Info
    A continuation of EGR 353. Lateral earth pressures, retaining wall design, elastic stress distribution, settlement, and bearing capacity of foundation systems. Sizing of shallow and deep foundation systems. Prerequisite: EGR 353. (3 units; Spring)
    EGR354 (UG17) A - Soil & Foundation Engineering (Spring 2018 (UNDG))
    Tue, Thu: 2-3:30 PM @ MAIN (ABPK C34B - Classroom Lecture)
    Wed: 2:30-4:30 PM @ MAIN (ENGR 211Q - LAB)
    s-Beale Email Email More info More Info
    A continuation of EGR 353. Lateral earth pressures, retaining wall design, elastic stress distribution, settlement, and bearing capacity of foundation systems. Sizing of shallow and deep foundation systems. Prerequisite: EGR 353. (3 units; Spring)
    EGR354 (UG16) A - Soil & Foundation Engineering (Spring 2017 (UNDG))
    Tue, Thu: 2-3:30 PM @ MAIN (ABPK C34B - Classroom Lecture)
    Wed: 2:30-4:30 PM @ MAIN (ENGR 110D - LAB)
    ontius Email Email More info More Info
    Julian N. Mills-Beale Email Email More info More Info
    A continuation of EGR 353. Lateral earth pressures, retaining wall design, elastic stress distribution, settlement, and bearing capacity of foundation systems. Sizing of shallow and deep foundation systems. Prerequisite: EGR 353. (3 units; Spring)
    EGR354 (UG15) A - Soil & Foundation Engineering (Spring 2016 (UNDG))
    Tue, Thu: 2-3:30 PM @ MAIN (ABPK C34B - Classroom Lecture)
    Wed: 2:30-4:30 PM @ MAIN (ENGR 110D - LAB)
    ontius Email Email More info More Info
    Julian N. Mills-Beale Email Email More info More Info
    Dr. Jong-Wha Bai Email Email More info More Info
    A continuation of EGR 353. Lateral earth pressures, retaining wall design, elastic stress distribution, settlement, and bearing capacity of foundation systems. Sizing of shallow and deep foundation systems. Prerequisite: EGR 353. (3 units; Spring)
    EGR354 (UG23) B - Soil and Foundation Engineering (Spring 2024 (UNDG))
    Tue, Thu: 2-3:30 PM @ MAIN (TEGR 202 - Classroom Lecture)
    Thu: 10:30-12:30 PM @ MAIN (TEGR 109 - LAB)
    href="(@@emailUrlaae0c6f2-4188-4305-a9b3-6638e3d0436c@)">Email Email More info More Info
    Jiliang Li Email Email More info More Info
    A continuation of EGR 353. Lateral earth pressures, retaining wall design, elastic stress distribution, settlement, and bearing capacity of foundation systems. Sizing of shallow and deep foundation systems. Prerequisite: EGR 353. (3 units; Spring)
    EGR354 (UG22) B - Soil and Foundation Engineering (Spring 2023 (UNDG))
    Tue, Thu: 2-3:30 PM @ MAIN (TEGR 202 - Classroom Lecture)
    Thu: 10:30-12:30 PM @ MAIN (TEGR 109 - LAB)
    href="(@@emailUrlaae0c6f2-4188-4305-a9b3-6638e3d0436c@)">Email Email More info More Info
    Jiliang Li Email Email More info More Info
    A continuation of EGR 353. Lateral earth pressures, retaining wall design, elastic stress distribution, settlement, and bearing capacity of foundation systems. Sizing of shallow and deep foundation systems. Prerequisite: EGR 353. (3 units; Spring)
    EGR354 (UG20) A - Soil and Foundation Engineering (Spring 2021 (UNDG))
    Tue, Thu: 2-3:30 PM @ MAIN (VRTL SYNC - Classroom Lecture)
    Wed: 2:30-4:30 PM @ MAIN (VRTL SYNC - LAB)
    gg Email Email More info More Info
    Frederick W. Pontius Email Email More info More Info
    Dr. Jong-Wha Bai Email Email More info More Info
    Julian N. Mills-Beale Email Email More info More Info
    A continuation of EGR 353. Lateral earth pressures, retaining wall design, elastic stress distribution, settlement, and bearing capacity of foundation systems. Sizing of shallow and deep foundation systems. Prerequisite: EGR 353. (3 units; Spring)
    EGR354 (UG23) A - Soil and Foundation Engineering (Spring 2024 (UNDG))
    Tue: 10:30-12:30 PM @ MAIN (TEGR 109 - LAB)
    Tue, Thu: 2-3:30 PM @ MAIN (TEGR 202 - Classroom Lecture)
    href="(@@emailUrla81478d8-5183-47e2-9799-7d39af474aae@)">Email Email More info More Info
    Helen Jung Email Email More info More Info
    A continuation of EGR 353. Lateral earth pressures, retaining wall design, elastic stress distribution, settlement, and bearing capacity of foundation systems. Sizing of shallow and deep foundation systems. Prerequisite: EGR 353. (3 units; Spring)
    EGR354 (UG18) A - Soil and Foundation Engineering (Spring 2019 (UNDG))
    Tue, Thu: 2-3:30 PM @ MAIN (TEGR 305 - Classroom Lecture)
    Wed: 2:30-4:30 PM @ MAIN (TEGR 109 - LAB)
    s-Beale Email Email More info More Info
    A continuation of EGR 353. Lateral earth pressures, retaining wall design, elastic stress distribution, settlement, and bearing capacity of foundation systems. Sizing of shallow and deep foundation systems. Prerequisite: EGR 353. (3 units; Spring)
    EGR354 (UG19) B - Soil and Foundation Engineering (Spring 2020 (UNDG))
    Tue, Thu: 2-3:30 PM @ MAIN (TEGR 202 - Classroom Lecture)
    Fri: 3:45-5:45 PM @ MAIN (TEGR 109 - LAB)
    s-Beale Email Email More info More Info
    A continuation of EGR 353. Lateral earth pressures, retaining wall design, elastic stress distribution, settlement, and bearing capacity of foundation systems. Sizing of shallow and deep foundation systems. Prerequisite: EGR 353. (3 units; Spring)
    EGR354 (UG24) B - Soil and Foundation Engineering (Spring 2025 (UNDG))
    Tue, Thu: 2-3:30 PM @ MAIN (TEGR 202 - Classroom Lecture)
    Thu: 10:15-12:15 PM @ MAIN (TEGR 109 - LAB)
    href="(@@emailUrlaae0c6f2-4188-4305-a9b3-6638e3d0436c@)">Email Email More info More Info
    Jiliang Li Email Email More info More Info
    A continuation of EGR 353. Lateral earth pressures, retaining wall design, elastic stress distribution, settlement, and bearing capacity of foundation systems. Sizing of shallow and deep foundation systems. Prerequisite: EGR 353. (3 units; Spring)
    EGR354 (UG25) B - Soil and Foundation Engineering (Spring 2026 (UNDG))
    Tue, Thu: 2-3:30 PM @ MAIN (TEGR 202 - Classroom Lecture)
    Thu: 10-12:00 PM @ MAIN (ABPK B15A - LAB)
    ai Email Email More info More Info
    Jiliang Li Email Email More info More Info
    A continuation of EGR 353. Lateral earth pressures, retaining wall design, elastic stress distribution, settlement, and bearing capacity of foundation systems. Sizing of shallow and deep foundation systems.
    EGR447 (UG17) A - Mechanics of CompositeStructures (Fall 2017 (UNDG))
    Mon, Wed, Fri: 8:15-9:15 AM @ MAIN (ENGR 215A - Classroom Lecture)
    i Email Email More info More Info
    ...This course will introduce students to the fiber-reinforced composite materials and structures with emphasis on numerical analysis. Topics covered in this course will include composite micromechanics and failure criteria, design considerations for structures made of composite materials, and the overview of fabrication process and experimental characterization. Prerequisite: EGR242 (3 units; Spring)...
    EGR447 (UG25) A - Mechanics of CompositeStructures (Fall 2025 (UNDG))
    Tue, Thu: 3:45-5:15 PM @ MAIN (TEGR 305 - Classroom Lecture)
    i Email Email More info More Info
    ...This course will introduce students to the fiber-reinforced composite materials and structures with emphasis on numerical analysis. Topics covered in this course will include composite micromechanics and failure criteria, design considerations for structures made of composite materials, and the overview of fabrication process and experimental characterization....
    EGR447 (UG16) A - Mechanics of CompositeStructures (Fall 2016 (UNDG))
    Mon, Wed, Fri: 1:15-2:15 PM @ MAIN (ENGR 100J - Classroom Lecture)
    i Email Email More info More Info
    STAFF STAFF Email Email More info More Info
    ...This course will introduce students to the fiber-reinforced composite materials and structures with emphasis on numerical analysis. Topics covered in this course will include composite micromechanics and failure criteria, design considerations for structures made of composite materials, and the overview of fabrication process and experimental characterization. Prerequisite: EGR242 (3 units; Spring)...
    MCE547 (GR19) A - Mechanics of Composite Structure (Fall 2019 (GRAD))
    Tue: 2-5:00 PM @ MAIN (TEGR 204 - Classroom Lecture)
    href="(@@emailUrl586be691-f91d-4d0e-9783-2f141b1fca9c@)">Email Email More info More Info
    Xiuhua April Si Email Email More info More Info
    ...This course will introduce students to the fiber-reinforced composite materials and structures with emphasis on numerical analysis. Topics covered in thsi course will include composite micromechanics and failure criteria, design considerations for structures made of composite materials, and the overview of fabrication process and experimental characterization. (3 units; As Offered)r ...
    MCE547 (GR20) B - Mechanics of Composite Structure (Fall 2020 (GRAD))
    Fri: 12-1:00 PM @ MAIN (VRTL SYNC - Hybrid Lecture)
    i Email Email More info More Info
    ...This course will introduce students to the fiber-reinforced composite materials and structures with emphasis on numerical analysis. Topics covered in thsi course will include composite micromechanics and failure criteria, design considerations for structures made of composite materials, and the overview of fabrication process and experimental characterization. (3 units; As Offered)r ...
    EGR447 (UG23) A - Mechanics of CompositeStructures (Fall 2023 (UNDG))
    Tue, Thu: 10:30-12:00 PM @ MAIN (TEGR 204 - Classroom Lecture)
    i Email Email More info More Info
    ...This course will introduce students to the fiber-reinforced composite materials and structures with emphasis on numerical analysis. Topics covered in this course will include composite micromechanics and failure criteria, design considerations for structures made of composite materials, and the overview of fabrication process and experimental characterization. Prerequisite: EGR 242 (3 units; Fall)...
    EGR447 (UG19) A - Mechanics of CompositeStructures (Fall 2019 (UNDG))
    Tue: 2-5:00 PM @ MAIN (TEGR 204 - Classroom Lecture)
    href="(@@emailUrl586be691-f91d-4d0e-9783-2f141b1fca9c@)">Email Email More info More Info
    Xiuhua April Si Email Email More info More Info
    ...This course will introduce students to the fiber-reinforced composite materials and structures with emphasis on numerical analysis. Topics covered in this course will include composite micromechanics and failure criteria, design considerations for structures made of composite materials, and the overview of fabrication process and experimental characterization. Prerequisite: EGR 242 (3 units; Fall)...
    EGR447 (UG21) A - Mechanics of CompositeStructures (Fall 2021 (UNDG))
    Mon, Wed, Fri: 8:15-9:15 AM @ MAIN (TEGR 204 - Classroom Lecture)
    i Email Email More info More Info
    ...This course will introduce students to the fiber-reinforced composite materials and structures with emphasis on numerical analysis. Topics covered in this course will include composite micromechanics and failure criteria, design considerations for structures made of composite materials, and the overview of fabrication process and experimental characterization. Prerequisite: EGR 242 (3 units; Fall)...
    EGR447 (UG24) A - Mechanics of CompositeStructures (Fall 2024 (UNDG))
    Tue, Thu: 10:30-12:00 PM @ MAIN (TEGR 204 - Classroom Lecture)
    i Email Email More info More Info
    ...This course will introduce students to the fiber-reinforced composite materials and structures with emphasis on numerical analysis. Topics covered in this course will include composite micromechanics and failure criteria, design considerations for structures made of composite materials, and the overview of fabrication process and experimental characterization. Prerequisite: EGR 242 (3 units; Fall)...
    EGR447 (UG20) B - Mechanics of CompositeStructures (Fall 2020 (UNDG))
    Fri: 12-1:00 PM @ MAIN (VRTL SYNC - Hybrid Lecture)
    i Email Email More info More Info
    ...This course will introduce students to the fiber-reinforced composite materials and structures with emphasis on numerical analysis. Topics covered in this course will include composite micromechanics and failure criteria, design considerations for structures made of composite materials, and the overview of fabrication process and experimental characterization. Prerequisite: EGR 242 (3 units; Fall)...
    EGR447 (UG22) A - Mechanics of CompositeStructures (Spring 2023 (UNDG))
    Tue, Thu: 3:45-5:15 PM @ MAIN (TEGR 221 - Classroom Lecture)
    i Email Email More info More Info
    ...This course will introduce students to the fiber-reinforced composite materials and structures with emphasis on numerical analysis. Topics covered in this course will include composite micromechanics and failure criteria, design considerations for structures made of composite materials, and the overview of fabrication process and experimental characterization. Prerequisite: EGR 242 (3 units; Fall)...
    EGR352 (UG25) A - Structural Design I (Spring 2026 (UNDG))
    Mon, Wed, Fri: 10:45-11:45 AM @ MAIN (TEGR 107 - Classroom Lecture)
    ai Email Email More info More Info
    Principles of the design of steel structures. Design includes axial tension and compression members, flexural members, beam-columns, connections and composite design. LRFD methods are used.
    a section of the Structural Design I course in Engineering - ENGR
    KIN274 (UG25) BE - Applied Movement Anatomy (Spring 2026 (UNDG))
    href="(@@emailUrl586be691-f91d-4d0e-9783-2f141b1fca9c@)">Email Email More info More Info
    Amanda H. Durall Email Email More info More Info
    Continued study of the muscle and bone structure of the human body. Heavy emphasis is placed on the biomechanical laws of movement.
    a section of the Applied Movement Anatomy course in Kinesiology - KIN
    KIN274 (UG25) AE - Applied Movement Anatomy (Spring 2026 (UNDG))
    ll Email Email More info More Info
    STAFF STAFF Email Email More info More Info
    Continued study of the muscle and bone structure of the human body. Heavy emphasis is placed on the biomechanical laws of movement.
    a section of the Applied Movement Anatomy course in Kinesiology - KIN
    KIN274 (UG25) DE - Applied Movement Anatomy (Spring 2026 (UNDG))
    href="(@@emailUrl586be691-f91d-4d0e-9783-2f141b1fca9c@)">Email Email More info More Info
    Levi Ransom Garrett Email Email More info More Info
    Continued study of the muscle and bone structure of the human body. Heavy emphasis is placed on the biomechanical laws of movement.
    a section of the Applied Movement Anatomy course in Kinesiology - KIN
    KIN274 (UG25) CE - Applied Movement Anatomy (Spring 2026 (UNDG))
    href="(@@emailUrl586be691-f91d-4d0e-9783-2f141b1fca9c@)">Email Email More info More Info
    Levi Ransom Garrett Email Email More info More Info
    Continued study of the muscle and bone structure of the human body. Heavy emphasis is placed on the biomechanical laws of movement.
    a section of the Applied Movement Anatomy course in Kinesiology - KIN
    EGR352 (UG22) A - Structural Design I (Spring 2023 (UNDG))
    Mon, Wed, Fri: 8:15-9:15 AM @ MAIN (TEGR 221 - Classroom Lecture)
    ai Email Email More info More Info
    Principles of the design of steel structures. Design includes axial tension and compression members, flexural members, beam-columns, connections and composite design. LRFD methods are used. Replaces EGR 302 core for Civil Engineers. Prerequisites: EGR 351. (3 units; Fall)
    a section of the Structural Design I course in Engineering - ENGR
    EGR352 (UG15) A - Structural Design I (Spring 2016 (UNDG))
    Mon, Wed, Fri: 8:15-9:15 AM @ MAIN (ABPK C34B - Classroom Lecture)
    ai Email Email More info More Info
    Principles of the design of steel structures. Design includes axial tension and compression members, flexural members, beam-columns, connections and composite design. LRFD methods are used. Replaces EGR 302 core for Civil Engineers. Prerequisite: EGR 202 and 351. (3 units; Fall)
    a section of the Structural Design I course in Engineering - ENGR
    EGR352 (UG23) A - Structural Design I (Spring 2024 (UNDG))
    Mon, Wed, Fri: 8:15-9:15 AM @ MAIN (TEGR 221 - Classroom Lecture)
    ai Email Email More info More Info
    Principles of the design of steel structures. Design includes axial tension and compression members, flexural members, beam-columns, connections and composite design. LRFD methods are used. Replaces EGR 302 core for Civil Engineers. Prerequisites: EGR 351. (3 units; Fall)
    a section of the Structural Design I course in Engineering - ENGR
    EGR352 (UG17) A - Structural Design I (Spring 2018 (UNDG))
    Mon, Wed, Fri: 8:15-9:15 AM @ MAIN (ABPK C34B - Classroom Lecture)
    ai Email Email More info More Info
    Principles of the design of steel structures. Design includes axial tension and compression members, flexural members, beam-columns, connections and composite design. LRFD methods are used. Replaces EGR 302 core for Civil Engineers. Prerequisite: EGR 202 and 351. (3 units; Fall)
    a section of the Structural Design I course in Engineering - ENGR
    EGR352 (UG20) A - Structural Design I (Spring 2021 (UNDG))
    Mon, Wed, Fri: 8:15-9:15 AM @ MAIN (VRTL SYNC - Classroom Lecture)
    ai Email Email More info More Info
    Principles of the design of steel structures. Design includes axial tension and compression members, flexural members, beam-columns, connections and composite design. LRFD methods are used. Replaces EGR 302 core for Civil Engineers. Prerequisites: EGR 351. (3 units; Fall)
    a section of the Structural Design I course in Engineering - ENGR
    EGR352 (UG24) A - Structural Design I (Spring 2025 (UNDG))
    Mon, Wed, Fri: 10:45-11:45 AM @ MAIN (TEGR 107 - Classroom Lecture)
    ai Email Email More info More Info
    Principles of the design of steel structures. Design includes axial tension and compression members, flexural members, beam-columns, connections and composite design. LRFD methods are used. Replaces EGR 302 core for Civil Engineers. Prerequisites: EGR 351. (3 units; Fall)
    a section of the Structural Design I course in Engineering - ENGR
    EGR352 (UG18) A - Structural Design I (Spring 2019 (UNDG))
    Mon, Wed, Fri: 8:15-9:15 AM @ MAIN (TEGR 221 - Classroom Lecture)
    ai Email Email More info More Info
    Principles of the design of steel structures. Design includes axial tension and compression members, flexural members, beam-columns, connections and composite design. LRFD methods are used. Replaces EGR 302 core for Civil Engineers. Prerequisite: EGR 202 and 351. (3 units; Fall)
    a section of the Structural Design I course in Engineering - ENGR
    EGR352 (UG16) A - Structural Design I (Spring 2017 (UNDG))
    Mon, Wed, Fri: 8:15-9:15 AM @ MAIN (ABPK C34B - Classroom Lecture)
    ai Email Email More info More Info
    Principles of the design of steel structures. Design includes axial tension and compression members, flexural members, beam-columns, connections and composite design. LRFD methods are used. Replaces EGR 302 core for Civil Engineers. Prerequisite: EGR 202 and 351. (3 units; Fall)
    a section of the Structural Design I course in Engineering - ENGR
    EGR352 (UG14) A - Structural Design I (Spring 2015 (UNDG))
    Mon, Wed, Fri: 8:15-9:15 AM @ MAIN (ENGR 110D - Classroom Lecture)
    ai Email Email More info More Info
    Principles of the design of steel structures. Design includes axial tension and compression members, flexural members, beam-columns, connections and composite design. LRFD methods are used. Replaces EGR 302 core for Civil Engineers. Prerequisite: EGR 202 and 351. (3 units; Fall)
    a section of the Structural Design I course in Engineering - ENGR
    EGR352 (UG21) A - Structural Design I (Spring 2022 (UNDG))
    Mon, Wed, Fri: 8:15-9:15 AM @ MAIN (TEGR 221 - Classroom Lecture)
    ai Email Email More info More Info
    Principles of the design of steel structures. Design includes axial tension and compression members, flexural members, beam-columns, connections and composite design. LRFD methods are used. Replaces EGR 302 core for Civil Engineers. Prerequisites: EGR 351. (3 units; Fall)
    a section of the Structural Design I course in Engineering - ENGR
    EGR352 (UG24) CR - Structural Design I (Spring 2025 (UNDG))
    ai Email Email More info More Info
    Principles of the design of steel structures. Design includes axial tension and compression members, flexural members, beam-columns, connections and composite design. LRFD methods are used. Replaces EGR 302 core for Civil Engineers. Prerequisites: EGR 351. (3 units; Fall)
    a section of the Structural Design I course in Engineering - ENGR
    EGR352 (UG19) A - Structural Design I (Spring 2020 (UNDG))
    Mon, Wed, Fri: 8:15-9:15 AM @ MAIN (TEGR 221 - Classroom Lecture)
    ai Email Email More info More Info
    Principles of the design of steel structures. Design includes axial tension and compression members, flexural members, beam-columns, connections and composite design. LRFD methods are used. Replaces EGR 302 core for Civil Engineers. Prerequisites: EGR 202 and 351. (3 units; Fall)
    a section of the Structural Design I course in Engineering - ENGR
    CDS515 (GR20) A - Pediatric Language Disorders (Fall 2020 (GRAD))
    Thu: 4-5:30 PM @ MAIN (VRTL SYNC - Hybrid Lecture)
    ne Email Email More info More Info
    Jennifer C. McCoy Email Email More info More Info
    ...The course focuses on pediatric language disorders in children ages 0-21, the impact of language disorders on academic performance, and high and low incidence disorders. Students will also become knowledgeable in prevention, screening, assessment, identification, and treatment of pediatric language disorders. Principles and techniques of assessment, intervention with a focus on the periods of emergent language, language for learning, and advanced adolescent language are also presented and integrated with students� clinical practicum. (3 units; Fall)...
    CDS515 (GR19) A - Pediatric Language Disorders (Fall 2019 (GRAD))
    Thu: 8:45-11:45 AM @ MAIN (HSCC L246 - Classroom Lecture)
    ne Email Email More info More Info
    ...The course focuses on pediatric language disorders in children ages 0-21, the impact of language disorders on academic performance, and high and low incidence disorders. Students will also become knowledgeable in prevention, screening, assessment, identification, and treatment of pediatric language disorders. Principles and techniques of assessment, intervention with a focus on the periods of emergent language, language for learning, and advanced adolescent language are also presented and integrated with students� clinical practicum. (3 units; Fall)...
    CDS515 (GR24) A - Pediatric Language Disorders (Fall 2024 (GRAD))
    Tue: 8:45-11:45 AM @ MAIN (HSCC L249 - Classroom Lecture)
    r Email Email More info More Info
    ...The course focuses on pediatric language disorders in children ages 0-21, the impact of language disorders on academic performance, and high and low incidence disorders. Students will also become knowledgeable in prevention, screening, assessment, identification, and treatment of pediatric language disorders. Principles and techniques of assessment, intervention with a focus on the periods of emergent language, language for learning, and advanced adolescent language are also presented and integrated with students� clinical practicum. (3 units; Fall)...
    CDS515 (GR25) A - Pediatric Language Disorders (Fall 2025 (GRAD))
    Tue: 8:45-11:45 AM @ MAIN (HSCC L246 - Classroom Lecture)
    r Email Email More info More Info
    ...The course focuses on pediatric language disorders in children ages 0-21, the impact of language disorders on academic performance, and high and low incidence disorders. Students will also become knowledgeable in prevention, screening, assessment, identification, and treatment of pediatric language disorders. Principles and techniques of assessment, intervention with a focus on the periods of emergent language, language for learning, and advanced adolescent language are also presented and integrated with students' clinical practicum....
    What

    Click on a content type above to refine your results.