How
To Buy
Deia Consulting International’s (DCI), provides direct international
sales and support services for a variety of software titles, in areas
such as Education, Scientific Computing and Analysis, and Engineering
and Design (CAD/CAM/CAE). In addition, professional engineers, educators,
and students can purchase a diverse array of software titles directly
from us.
We invite you to browse through our catalog of software titles below,
and should you wish you make a purchase, or inquire further about any
of the following products, or simply wish to contact your local international
reseller in your area, please feel free to contact us directly or submit
the following VAR/Product
Contact Form to sales@deiaconsulting.com.
Products
Deia Consulting International (DCI) represents an exclusive list of software
providers, that are widely recognized in the their industries as leaders
in providing powerful, high-quality, and easy-to-use, programs in the
areas of Science Education (Physics, Chemistry, Earth Sciences), Engineering
& Design (CAD/CAM/CAE), and Scientific Computing.
Education
Interactive Physics
Interactive PhysicsTM,
the award-winning educational software from MSC Software, makes it easy
to observe, discover, and explore the physical world through fast-paced,
exciting simulation. Working closely with physics educators, the Interactive
Physics software team has developed an easy-to-use, visually appealing
program that greatly enhances physics instruction.
Create any experiment imaginable with an easy-to-use interface
Interactive Physics allows you to model, simulate, and explore a wide
variety of physical phenomena, and create nearly any experiment imaginable.
If you can use a mouse, you can use Interactive Physics.
• Create objects by drawing circles, blocks, and polygons
• Measure velocity, acceleration, force, energy, etc., in metric
or English units
• Create ropes, springs, dampers, pulleys, slots, actuators, and
motors
• Simulate contact, collisions, and friction
• Vary air resistance, gravity, or material properties
• View results as numbers, graphs, and animated vectors
• Hear and measure sound volumes, sound frequencies, and Doppler
effects
• Create visually appealing presentations by attaching graphics
to objects
Discovery Oriented - Interactivity is key
Interactive Physics is a powerful tool for discovery learning and helps
students visualize and learn abstract concepts. It develops inquiry skills
and physics knowledge by allowing the user to vary nearly any physical
parameter (e.g., gravity, force, speed, spring constants) and to measure
its effect on nearly any measurable quantity (e.g., position, energy,
decibel level).
Click here
for an Interactive Physics brochure.
For more information, please contact DCI at info@deiaconsulting.com
or visit www.interactivephysics.com.
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Working
Model
Working Model is the best selling motion simulation product in the world.
It provides engineers with the ability to test, refine, and confirm their
designs with a world-class powerful analytical tool.
• Test multiple versions of your design
• Fast “run-analyze-refine” cycle helps to optimize
designs before building physical prototypes
• Reduce physical prototyping
• You are in total control of the simulation environment
• Quickly build, run, and refine simulations with pre-defined objects
and constraints
• Run, stop, reset, single step, or pause the simulation at any
time
• Analyze your latest design by measuring force, torque, acceleration,
etc….
• View output as vectors or in numbers and graphs in English or
metric units
• Import your 2D CAD drawings in DXF format
• Input values from equations, sliders and DDE links to Matlab and
Excel
• Simulate non-linear or user events using a built-in formula language
• Design linkages with pin joints, slots, motors, springs, and dampers
• Create bodies, specify their mass properties, initial velocity,
electrostatic charges, and much more
• Simulate contact, collisions, and friction
• Analyze structures with flexible beams, shear, and bending moment
diagrams
• Run or edit scripts to optimize simulations, document models,
and more
• Record simulation data and create graphs or AVI video files for
playback
• Create visually appealing presentations by attaching pictures
The world's most popular CAE tool, Working Model is a conceptual design
tool that allows you to create simulations that replace vague, time consuming,
inaccurate “back of the envelope” calculations. Working Model
has been adopted by thousands of engineering schools and educators to
create and analyze real-life mechanical systems. It has been designed
from the ground up to optimize performance on the Windows 95/98/Me/NT/2000/XP
operating systems. Working Model includes automatic collision detection
and responses for NURBS geometry. Our latest release also includes such
popular scripts as FlexBeam, Shear and Bending Moment, and Pin Friction.
These scripts have been customized to expand your use of Working Model.
At every stage in the product development cycle, Working Model lets you
do more. What used to take days now takes hours, now enables engineers
to quickly test, refine, and confirm their designs. Most importantly,
engineers can prove how they will be able perform more efficiently on
the job, while at the same time, saving their companies both time and
money. In fact, many of our professional engineering clients say that
Working Model paid for itself the first time they used it.
Click here
for a Working Model brochure or for more information, please contact DCI
at info@deiaconsulting.com
or visit www.workingmodel.com.
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Spartan/Odyssey
SpartanTM is a
serious molecular modeling package for teaching and learning chemistry.
Combining an easy-to-use graphical interface with a targeted set of computational
functions, Wavefunction and their Spartan software provide molecular modeling
technology in support of chemistry education like never before...
ODYSSEYTM is a
new suite of software applications from Wavefunction Inc. for teaching
high school (introductory, honors, and advanced placement), college and
university (general) chemistry. ODYSSEY provides a highly interactive
simulation environment enabling instructors to demonstrate (and students
to experience) chemistry at the molecular level.
This innovative approach is a natural complement to lecture demonstrations
and lab activities. A collection of interactive student worksheets enables
discovery based learning, using customizable molecular simulations to
give students feedback that approaches a virtual laboratory.
For the Instructor
ODYSSEY contains ready-to-use materials for more than 70 core chemistry
topics. Molecular modeling and text content are presented in a single,
interactive environment. Stunning molecular simulations of bulk matter
are carried out in real time by ODYSSEY's powerful, fully-integrated computational
engine. With on-the-fly user control of system parameters (temperature,
volume, and system composition), compelling lecture demonstrations and
innovative student assignments are now within reach for every instructor.
In
addition to more than 200 pages of chemistry content, ODYSSEY includes
a collection of student assignable worksheets
and an extensive, annotated library of molecular
models (inorganic and organic molecules, gases, liquids, solids, solutions,
bio-molecules and more).
For the Student
ODYSSEY's graphical interface offers a window onto the molecular world,
providing opportunities to interact with molecules and matter like never
before. Students carry away an intuitive understanding of chemical structure
and molecular motion.
ODYSSEY is
designed to promote discovery-based learning in a familiar, web-like HTML
environment. The software also introduces students to molecular modeling,
providing an early exposure to computer-based laboratory tools which are
a standard part of many college and university chemistry curricula.
To learn more about Spartan or Odyssey, click on one of the following
features:
Topics
and Activities | Molecular
Models | Student
Worksheets | Program
Versions
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CPU
Constructing Physics Understanding (CPU) is a program that consists of
two CD-ROMs - The Simulation Software that lets your students conduct
countless experiments, and the Curriculum Units which provides 300+ hours
of lessons and activities.
The Simulation Software contains 20 Java simulators (plus other applets)
complemented with detailed tutorials that explain how to use and manipulate
the simulators. The program contains the following units:
• Five Light and Color Simulator applets: Shadows and Pinholes;
Reflection and Refraction; Mirror Images; Lens Images; Color beams
• Six Static Electricity and Magnetism Simulator applets: Electric
and Magnetic Field Patterns; Electrostatic Workbench; Faraday Pail; Electrophorus;
Dipole Playground; Coulomb's Law
• Two Waves and Sound Simulator applets: Ripple Lab; Sound Lab
• Force and Motion Simulator applet
• Current Electricity Simulator applet
• Five Small Particle Model Simulator applets: Pressure simulator;
Ideal Gas; Diffusion; Evaporation and Condensation; Melting and Freezing
• Idea Container applet for recording and keeping track of evolving
ideas
The simulators provide multi-purpose usage in a classroom environment
- Teachers, design your own set-ups and use them in demo mode to reinforce
any physics curricula ... particularly those that emphasize conceptual
understanding. Or, integrate the simulators into your lab activities to
enhance, support and develop more understanding to hands-on activities.
The Curriculum Units is a series of seven model units, each designed to
help students develop valid and robust ideas in different topical areas
in physics and physical science. The units cover Light and Color, Force
and Motion, Waves and Sound, Static Electricity and Magnetism, Current
Electricity, Underpinnings, and Nature of Matter. The lessons provide
a brief overview of target ideas, materials and equipment lists, hints
on material setup, detailed comments about activities, tips on computer
simulations and even suggested homework. Each
unit is made up of a carefully sequenced set of laboratory/discussion
activities embedded in a student-oriented pedagogy. Students are presented
with the relevant simulators that complement and extend the lab experiments.
And, there is a detailed Teacher's Guide for each. Finally, you are able
to select from computer-based or paper-and-pencil versions for each activity.
CPU
Pedagogy
CPU pedagogy
and materials are closely aligned with the NRC National Science Education
Standards (NSES) and the AAAS Benchmarks for Science Literacy. In addition
to content and pedagogy Standards, the project is in alignment with the
Standards in areas such as the nature of science, science as a human endeavor,
and nature of scientific inquiry. The pedagogy is based on cycles consisting
of: Eliciting students' ideas; guided development, in which students modify
or discard their old ideas and/or develop new ones in a movement toward
target ideas & consensus building, where students share understanding
developed in the activities, clarifying and solidifying target ideas and;
application of target ideas to new situations.
Each CPU curriculum unit (such as Force and Motion) is divided into several
cycles, each intended to support students' construction of a relevant
model or component of a model. In turn, every cycle has three phases:
elicitation, development and application.
For more information about CPU, please contact DCI at info@deiaconsulting.com
or visit www.learingteam.org.
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Engineering
Working
Model
Working Model is the best selling motion simulation product in the world.
It provides engineering educators and students the ability to test, refine,
and confirm their designs with a world-class powerful analytical tool.
• Test multiple versions of your design
• Fast “run-analyze-refine” cycle helps to optimize
designs before building physical prototypes
• Reduce physical prototyping
• You are in total control of the simulation environment
• Quickly build, run, and refine simulations with pre-defined objects
and constraints
• Run, stop, reset, single step, or pause the simulation at any
time
• Analyze your latest design by measuring force, torque, acceleration,
etc….
• View output as vectors or in numbers and graphs in English or
metric units
• Import your 2D CAD drawings in DXF format
• Input values from equations, sliders and DDE links to Matlab and
Excel
• Simulate non-linear or user events using a built-in formula language
• Design linkages with pin joints, slots, motors, springs, and dampers
• Create bodies, specify their mass properties, initial velocity,
electrostatic charges, and much more
• Simulate contact, collisions, and friction
• Analyze structures with flexible beams, shear, and bending moment
diagrams
• Run or edit scripts to optimize simulations, document models,
and more
• Record simulation data and create graphs or AVI video files for
playback
• Create visually appealing presentations by attaching pictures
The world's most popular CAE tool, Working Model is a conceptual design
tool that allows you to create simulations that replace vague, time consuming,
inaccurate “back of the envelope” calculations. Working Model
has been adopted by thousands of engineering schools and educators to
create and analyze real-life mechanical systems. It has been designed
from the ground up to optimize performance on the Windows 95/98/Me/NT/2000/XP
operating systems. Working Model includes automatic collision detection
and responses for NURBS geometry. Our latest release also includes such
popular scripts as Flexbeam, Shear and Bending Moment, and Pin Friction.
These scripts have been customized to expand your use of Working Model.
At every stage in the product development cycle, Working Model lets you
do more. What used to take days now takes hours, now allows educators
to show engineering student how they will be able to do more time to do
the job, saving their future companies both time and money. In fact, many
of our educational customers say that Working Model is the most powerful
engineering software tool they have ever used.
Click here
for a Working Model brochure.
For more information, please contact DCI at info@deiaconsulting.com
or visit www.workingmodel.com.
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| Info
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Visual
Nastran
MSC.visualNastran 4D (vN4D) takes mechanical simulation to the next dimension
by merging 3D CAD, motion, FEA, and controls technologies into a single
functional modeling system. Users can import a 3D CAD drawing from SolidWorks®,
Solid EdgeTM,
Mechanical Desktop®, Inventor®, and Pro/Engineer®; perform
motion and FEA simulations; and link to a MATLAB®/Simulink® control
system - all within a single program. The easy-to-use vN4D interface enables
you to rapidly build complex models and test, refine and verify mechanical
or biomechanical assemblies.
• See your designs at work and measure their performance
• Compute forces, torques, friction, velocity, acceleration
• Simulate contact, collisions, and friction
• Calculate loads and stresses throughout the assembly, automatically
• Test control systems through MATLAB and Simulink
• Control your simulations with Visual Basic, or Excel
• Full associative integration with Mechanical Desktop and Inventor,
Pro/ENGINEER, Solid Edge and SolidWorks
• Support for virtually every other CAD system through industry
standard file formats such as ACIS (SAT), ParaSolid, STEP, IGES and STL
• Convert your joint reaction forces and inertial loads (accelerations)
to distributed loads
• Perform automatic FEA linear stress and strain simulations at
every time stop or simulate individual time steps, using the proven MSC.Nastran
FEA solver technology. Support for normal modes and buckling FEA simulation
is also included.
• View results from MSC.Nastran binary output files
• Mark up (dimensioning, text annotations) your integrated motion
and FEA simulation to make it more informative
• Add animation effects (photo-realistic rendering, texture mapping,
lights, cameras, key-framing) and export images and movies to make your
simulations more visually appealing for proposals and presentations.
You may purchase or request a free demonstration
CD and further information about Visual Nastran by contacting our
office directly at info@deiaconsulting.com
or by visiting www.vndesktop.com.
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Scientific Computing
This
section is currently under construction.
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