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Marina86 [1]
3 years ago
5

Joe decides to go bungee jumping. He secures a bungee to his ankles and leaps off a tall bridge. At one location, for one instan

ce is moving at constant speed. What term represents this situation? Also, draw a free body diagram representing this situation.
​
Physics
1 answer:
slavikrds [6]3 years ago
6 0
Gravitational energy i believe
You might be interested in
A 2 kg package is released on a 53.1° incline, 4 m from a long spring with force constant k = 140 N/m that is attached at the bo
Aneli [31]

Answer:

A) The speed of the package just before it reaches the spring = 7.31 m/s

B) The maximum compression of the spring is 0.9736m

C) It is close to it's initial position by 0.57m

Explanation:

A) Let's talk about the motion;

As the block moves down the inclines plane, friction is doing (negative) work on the block while gravity is doing (positive) work on the block.

Thus, the maximum force due to

static friction must be less than the force of gravity down the inclined plane in order for the block to slide down.

Since the block is sliding down the inclined plane, we'll have to use kinetic friction when calculating the amount of work (net) on the block.

Thus;

∆Kt + ∆Ut = ∆Et

∆Et = ∫|Ff| |ds| = - Ff L

Where Ff is the frictional force.

So ∆Kt + ∆Ut = - Ff L

And so;

(1/2)m((vf² - vo²) + mg(yf - yo) = - Ff L

Resolving this for v, we have;

V = √(2gL(sinθ - μkcosθ)

V = √(2 x 9.81 x 4) (sin53.1 - 0.2 cos53.1)

V = √(78.48) (0.68))

V = √(53.3664)

V= 7.31 m/s

B) For us to find the maximum compression of the spring, let's use the change in kinetic energy, change in potential energy and the work done by friction.

If we start from the top of the incline plane, the initial and final kinetic energy of the block is zero:

Thus,

∆Kt + ∆Ut = ∆Et

And,

∆E = −Ff ∆s

Thus;

mg(yo - yf) + (k/2)(∆(sf)² - ∆(so)² = −Ff ∆s

Now let's solve it by putting these values;

yf − y0 = −(L + ∆d) sin θ; ∆s = L + ∆d; ∆sf = ∆d; and ∆s0 = 0 where ∆d is the maximum compression in the spring.

So, we have;

((1/2 )(K)(∆d )²) − ∆d (mg sin θ − (µk)mg cos θ) + ((µk)mgLcos θ − mgLsin θ) = 0

Let's rearrange this for easy solution.

((1/2)(K)(∆d)²) − ∆d (mg sin θ − (µk)mg cos θ) - L(mgsin θ - (µk)mgcos θ) = 0

Divide each term by (mgsin θ - (µk)mgcos θ) to get;

[((K/2)(∆d)²)}/{(mgsin θ - (µk)mgcos θ)}] - ∆d - L = 0

Putting k = 140,m = 2kg, µk = 0.2 and θ = 53.1° and L=4m, we obtain;

5.247(∆d)² - ∆d - 4 = 0

Solving as a quadratic equation;

∆d = 0.9736m

C) let’s find out how high the block rebounds up the inclined plane with the fact that final and initial kinetic energy is zero;

mg(yf − yo) + 1 /2 k (∆s f² − ∆s o²) = −Ff ∆s

Now let's solve it by putting these values; yf − y0 = (L′ + ∆d)sin θ; ∆s = L′ + ∆d; ∆sf = 0; and ∆s0 = ∆d.

L' is the distance moved up the inclined plane

So we have;

(1/2)k∆d² + mg(∆d + L′)sin θ =

-(µk)mg cos θ (∆d + L′)

Making L' the subject of the formula, we have;

L' = [(1/2)k∆d²] /(mg sin θ + (µk)mg cos θ)] - ∆d

L' = [(140/2)(0.9736²)] /(2 x 9.81 sin51.3) + (0.2 x 2 x 9.81cos 53.1)] - 0.9736

L' = (66.353)/[(15.696) + (2.3544)]

L' = (66.353)/18.05 = 3.43m

This is the distance moved up the inclined plane. So it's distance feom it's initial position is 4m - 3.43m = 0.57m

3 0
4 years ago
Why is it better to wear a white shirt on a hot summer day instead of a black shirt?
Ronch [10]
When all that body heat hits the white clothing covering it, it gets reflected right back towards the body. ... The best color to keep cool in the heat, it turns out, is to wear black. Black absorbs everything coming in from the sun, sure. But black also absorbs energy from the body instead of reflecting it back.
7 0
3 years ago
Listed as follows are eight technical accounting terms introduced in this chapter. Realization principle Credit Time period prin
Katen [24]

Answer:

1) Accounting period (2) Accounting cycle (3) None (4) Net income (5) Realisation principle (6) Credit (7) Matching principle (8) Expenses

Explanation:

Accounting period : This is the period of time in which the preparation of income statement must covered. The business community and users of finnancial statements require that the business be divided into accounting period (yearly or quarterly ) so that the position of the business can be measured over those period.

Accounting cycle : This shows the sequence of account that must be prepared in order to record, classify, and summarize accounting information. The cycle starts with the recording of the transaction, jounalizing the transaction, posting the transaction to the ledger, preparation of trial balance from the ledger in order to check the arithmetical accuracy of entries in the ledger, and the preparation of financial statement from the trial balance.

Net income : This is used for the recording of operations of the business to determine the profitability of the business. When there is an increase in owners equity resulting from profitable operations it is known as Net income.

Realization principle : This principle established the rule for the periodic recognition of revenue as soon as it is capable of objective measurement, and the value of asset received or receivable in exchange is reasonably certain. It is possible to recognize revenue at a variety of points.

Credit : This is used to show the decrease in asset or increase in liability or owners equity account.

Matching principle : This principle states that expenses and revenue should be assigned to their correct accounting period. It states that all expenses earned during the financial period either paid for or unpaid and all income earned either received or not received must be recorded and treated in that financial period.

Expenses: This is the amount of money spent in the performance of business activities, example of these is the cost of goods and services used up in the process of generating revenue for the business.

8 0
3 years ago
Name the type of component that has a greater resistance as the current through it increases​
Gnesinka [82]

Answer:

filament bulb, filament lamp

Explanation:

4 0
4 years ago
When a slice of buttered toast is accidentally pushed over the edge of a counter, it rotates as it falls. If the distance to the
Serjik [45]

Answer:

a) 5.61 rad/s

b) 16.83 rad/s

Explanation:

Distance to the floor = 79cm = 0.79m

Rotation is <1 revolution

The toast will rotate at an angular speed that is constant while it falls. The toast will also be falling with constant acceleration due to gravity. Using equation of motion, which is

S = ut + 1/2gt²

S = 0 + 1/2gt²

S = gt², where, S = d

0.79 = 9.81t²

t² = 0.79/9.81

t² = 0.081

t = 0.28s

As the toast is accidentally pushed, it rotates as it falls. It will be landing on its edges when and if it hits the ground. The smallest angle here would then be 1/4 of the revolution. This is also the smallest angular speed.

ω(min) = ΔΦ revolution /Δt

ω(min) = 1/4 * 2π / 0.28

ω(min) = 0.5π/0.28

ω(min) = 5.61 rad/s

Since 1/4 of revolution is the minimum angle, the remaining(3/4), is the maximum angle. Thus

ω(max) = 3/4 * 2π / 0.28

ω(max) = 0.75 * 2π / 0.28

ω(max) = 16.83 rad/s

8 0
4 years ago
Read 2 more answers
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