* BIO Triceps and darts Your upper arm is horizontal and your forearm is vertical with a 0.010-kg dart in your hand (Figure P9.65). When your triceps muscle contracts, your forearm initially swings forward with a rotational acceleration of 35 rad/s 2 . Determine the force that your triceps muscle exerts on your forearm during this initial part of the throw. The rotational ineria of your forearm is 0.12 kg. m 2 and the dart is 0.38 m from your elbow joint. Your triceps muscle attaches 0.03 m from your elbow joint.
* BIO Triceps and darts Your upper arm is horizontal and your forearm is vertical with a 0.010-kg dart in your hand (Figure P9.65). When your triceps muscle contracts, your forearm initially swings forward with a rotational acceleration of 35 rad/s 2 . Determine the force that your triceps muscle exerts on your forearm during this initial part of the throw. The rotational ineria of your forearm is 0.12 kg. m 2 and the dart is 0.38 m from your elbow joint. Your triceps muscle attaches 0.03 m from your elbow joint.
* BIO Triceps and darts Your upper arm is horizontal and your forearm is vertical with a 0.010-kg dart in your hand (Figure P9.65). When your triceps muscle contracts, your forearm initially swings forward with a rotational acceleration of 35 rad/s2. Determine the force that your triceps muscle exerts on your forearm during this initial part of the throw. The rotational ineria of your forearm is 0.12 kg. m2 and the dart is 0.38 m from your elbow joint. Your triceps muscle attaches 0.03 m from your elbow joint.
Paraxial design of a field flattener. Imagine your optical system has Petzal curvature of the field with radius
p. In Module 1 of Course 1, a homework problem asked you to derive the paraxial focus shift along the axis
when a slab of glass was inserted in a converging cone of rays. Find or re-derive that result, then use it to
calculate the paraxial radius of curvature of a field flattener of refractive index n that will correct the observed
Petzval. Assume that the side of the flattener facing the image plane is plano. What is the required radius of
the plano-convex field flattener? (p written as rho )
3.37(a) Five free electrons exist in a three-dimensional infinite potential well with all three widths equal to \( a = 12 \, \text{Å} \). Determine the Fermi energy level at \( T = 0 \, \text{K} \). (b) Repeat part (a) for 13 electrons.
Book: Semiconductor Physics and Devices 4th ed, NeamanChapter-3Please expert answer only. don't give gpt-generated answers, & please clear the concept of quantum states for determining nx, ny, nz to determine E, as I don't have much idea about that topic.
3.37(a) Five free electrons exist in a three-dimensional infinite potential well with all three widths equal to \( a = 12 \, \text{Å} \). Determine the Fermi energy level at \( T = 0 \, \text{K} \). (b) Repeat part (a) for 13 electrons.
Book: Semiconductor Physics and Devices 4th ed, NeamanChapter-3Please expert answer only. don't give gpt-generated answers, & please clear the concept of quantum states for determining nx, ny, nz to determine E, as I don't have much idea about that topic.
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