The objectives of Accenture's e-stewards program are:
- Its goals to provide a more sustainable and responsible recycling solution to electronic waste (e-waste) problem
- Right handling of electronic waste and no more dumping of electronic waste in poor countries
- No exportation of harmful electronic wastes
- A shift to reuse and resale, repair, republish and re-manufacture.
- E-waste encompasses all waste of electrical and electronic equipment that are often disposed with or without the intent of reuse. is disposed via incineration, reuse, recycling etc.
- e-Stewards is simply known as a form of certification to an organisation, company or recycling business gotten from the international non-profit environmental group.
Conclusively, we can say that the objectives of Accenture's e-stewards program are:
- Its goals to provide a more sustainable and responsible recycling solution to electronic waste (e-waste) problem
- Right handling of electronic waste and no more dumping of electronic waste in poor countries
- No exportation of harmful electronic wastes
- A shift to reuse and resale, repair, republish and re-manufacture.
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The Anasazi were the ancestors of the modern-day Pueblo people of Arizona and New Mexico. They were not considered a tribe, though their descendents today comprise the federally recongized Navajo Nation. Contemporary Pueblo people view the term "Anasazi" as an ethnic slur because it translates as "ancient enemy" in the Navajo language. Everything we know of these Indians comes from archaeological finds. They were suburb craftsmen and the things they made were meant to last. The homes they built, as well as pieces of their craft work and clothing, still exist today, 1800 years after they were made. Studying the early Pueblo people has given researchers a good picture of what life was like for them and other early Native Americans who are ancestors of the modern-day tribes.
Explanation:
Which factors? I am pretty sure we need a picture for this?
Answer:
And if we have a binomial times a binomial we'll have four products or we can think of this as double distribution. We distribute the a so we'd have a times C plus a times D.
Explanation:
The acceleration of the pendulum mass D is; r"_d = [x''(t) + lθ'' cos θ - lθ'² sin θ]i - l[θ'' sin θ - θ'² cos θ]j
<h3>What is Kinematics of particles?</h3>
Kinematics is the study of the geometry of motion of particles, rigid bodies, etc., disregarding the forces associated with these motions. However, Kinematics of a particle is the motion of a point in space.
From the sample problem, we can solve it using the (x, y, z) coordinate system to get;
r_c = x(t) i
r_d = [x(t) + l sin θ]i + l cos θ j
Finding the first derivative of r_d gives velocity as;
r'_d = [x'(t) + lθ' cos θ]i - lθ' sin θ j
Taking the second derivative of r_d gives the acceleration as;
r"_d = [x''(t) + lθ'' cos θ - lθ'² sin θ]i - l[θ'' sin θ - θ'² cos θ]j
A sample problem of kinematics of particles is;
A block C slides along the horizontal rod, while a pendulum attached to the block can swing in the vertical plane. Find the acceleration of
the pendulum mass D.
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