Written by students who passed Immediately available after payment Read online or as PDF Wrong document? Swap it for free 4.6 TrustPilot
logo-home
Document preview thumbnail
Preview 3 out of 30 pages
Exam (elaborations)

EXPH 386 CERTIFICATION SCRIPT 2026 PRACTICE SOLUTIONS GRADED A+

Document preview thumbnail
Preview 3 out of 30 pages

EXPH 386 CERTIFICATION SCRIPT 2026 PRACTICE SOLUTIONS GRADED A+

Content preview

EXPH 386 CERTIFICATION SCRIPT 2026
PRACTICE SOLUTIONS GRADED A+

⩥ (Type I... endurance... aerobic).
Answer: slow twitch fiber


⩥ 1) low myosin ATPase activity
2) slow calcium handling and shortening velocity
3) less well-developed glycolytic capacity when compared to type II
fibers
4) large and numerous mitochondria.
Answer: Four characteristics contribute to the slow fibers ability to
generate energy through *oxidative metabolism*:


⩥ -determination of maximal force production
-contraction velocity
-fatigue properties.
Answer: What provides details about the myosin composition of a
muscle and how a muscle handles calcium?


⩥ twitch contraction.
Answer: a brief contractile response of a small number of muscle fibers
within a muscle

,-tells us about the calcium handling properties


⩥ Tetanus contraction.
Answer: a MAX contraction of ALL the fibers within a muscle for a
sustained period of time


⩥ maximal force output (Pt).
Answer: acquired from the peak of force trade


⩥ Contraction time (CT) or Time to peak tension (TPT).
Answer: the time it takes to reach max force


⩥ 1/2 relaxation time (1/2 RT).
Answer: the time it takes for force to decrease 50% of max force
- time it takes to relax after we stop stimulating


⩥ unfused tetanus.
Answer: some degree of relaxation between contraction of groups of
fibers


⩥ fused tetanus.
Answer: no relax; all fibers contracting maximally

, ⩥ force-velocity relationship.
Answer: describes the force that a muscle can generate at any given
shortening velocity during concentric, isometric and eccentric muscle
actions
-most important relationship with skeletal muscle and exercise


⩥ muscle shortening.
Answer: concentric contraction


⩥ muscle lengthening.
Answer: eccentric contraction


⩥ Vmax.
Answer: maximal shortening velocity a muscle can produce against
ZERO resistance
-zero load (no weight)


⩥ Isometric point (peak isometric force).
Answer: this point represents the max weight at which *no mucle
shortening can occur*. this is the intersection between the concentric and
eccentric sections of the relationship
-sticking point, cant move anymore

Document information

Uploaded on
June 2, 2026
Number of pages
30
Written in
2025/2026
Type
Exam (elaborations)
Contains
Questions & answers
$13.99

Wrong document? Swap it for free Within 14 days of purchase and before downloading, you can choose a different document. You can simply spend the amount again.
Written by students who passed
Immediately available after payment
Read online or as PDF

Seller avatar
Reputation scores are based on the amount of documents a seller has sold for a fee and the reviews they have received for those documents. There are three levels: Bronze, Silver and Gold. The better the reputation, the more your can rely on the quality of the sellers work.
FocusFile7
4.0
(26)
Sold
260
Followers
4
Items
69365
Last sold
2 days ago



Why students choose Stuvia

Created by fellow students, verified by reviews

Quality you can trust: written by students who passed their tests and reviewed by others who've used these notes.

Didn't get what you expected? Choose another document

No worries! You can instantly pick a different document that better fits what you're looking for.

Pay as you like, start learning right away

No subscription, no commitments. Pay the way you're used to via credit card and download your PDF document instantly.

Student with book image

“Bought, downloaded, and aced it. It really can be that simple.”

Alisha Student

Working on your references?

Create accurate citations in APA, MLA and Harvard with our free citation generator.

Working on your references?

Frequently asked questions