Physics : asked on TropicalFan
 25.01.2020

Andrew has a four-year college loan for $20,000. the lender charges a simple interest rate of 5 percent. how much interest will he have to pay? simple interest = p × r × t a. $800 b. $4,000 c. $10,000

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Step-by-step answer

18.10.2022, solved by verified expert
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Answer: b. $4,000.

Explanation:
Given that loan amount P=20000;
Interest rate r=5% = 0.05;
Time of loan t=4 years;
Now to find the interest amount we just plug those values into formula
simple interest = P × r × t;
simple interest = 20000* 0.05* 4;
simple interest = 1000 * 4;
simple interest = 4000;
Hence final answer is choice b. $4000.
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B. $4,000

Explanation:

The formula for the simple interest is

Andrew has a four-year college loan for ,000., №15237565, 25.01.2020 23:42

where

P is the principal

r is the interest rate

t is the number of years

In this problem,

P = 20,000 $

r = 0.05

t = 4 years

So the interest is

Andrew has a four-year college loan for ,000., №15237565, 25.01.2020 23:42

It is was helpful?

Faq

StudenGPT
Step-by-step answer
P Answered by Studen AI
To solve this problem, we are going to use the formula you provided for simple interest:

simple interest = P × r × t

P is the principal amount, the initial amount of the loan,
r is the interest rate, and
t is time, the duration of the loan in years.

1. Identify the given parameters:

The principal (P) = $20,000
The yearly interest rate (r) = 5 percent or in decimal format it's 0.05 (since 1% = 0.01)
The time (t) = 4 years

2. Input these figures into the simple interest formula:

interest = $20,000 × 0.05 × 4

3. Calculation:

Multiplying these numbers together gives us the total interest that Andrew will have to pay.

interest = $20,000 × 0.05 × 4 = $4,000

So Andrew will have to pay $4,000 in interest on a four-year loan of $20,000 at 5% interest.

Verification:

To verify, you can perform the operation in reverse order, i.e., divide the interest amount ($4,000) by the product of principal amount and the time span.

$4,000 / ($20,000 × 4) = 0.05 or 5%

Final Answer: $4,000 (B).

The crucial aspects here were:

-Correct insertion of values into the formula and performing the right operations.
-Simplification was straightforward as there were no complex expressions.
-The final verification ensured the accuracy of the calculation.
-There weren't any quadratic terms or situations demanding careful handling of signs.
Mathematics
Step-by-step answer
P Answered by PhD
Answer: b. $4,000.

Explanation:
Given that loan amount P=20000;
Interest rate r=5% = 0.05;
Time of loan t=4 years;
Now to find the interest amount we just plug those values into formula
simple interest = P × r × t;
simple interest = 20000* 0.05* 4;
simple interest = 1000 * 4;
simple interest = 4000;
Hence final answer is choice b. $4000.
Mathematics
Step-by-step answer
P Answered by PhD
Answer: b. $4,000.

Explanation:
Given that loan amount P=20000;
Interest rate r=5% = 0.05;
Time of loan t=4 years;
Now to find the interest amount we just plug those values into formula
simple interest = P × r × t;
simple interest = 20000* 0.05* 4;
simple interest = 1000 * 4;
simple interest = 4000;
Hence final answer is choice b. $4000.
Physics
Step-by-step answer
P Answered by Specialist
Answer: Option B and C are True.

Explanation:
The weight of the two blocks acts downwards.
Let the weight of the two blocks be W. Solving for T₁ and T₂:
w = T₁/cos 60° -----(1);
w = T₂/cos 30° ----(2);
equating (1) and (2)
T₁/cos 60° = T₂/cos 30°;
T₁ cos 30° = T₂ cos 60°;
T₂/T₁ = cos 30°/cos 60°;
T₂/T₁ =1.73.
Therefore, option a is false since T₂ > T₁.
Option B is true since T₁ cos 30° = T₂ cos 60°.
Option C is true because the T₃ is due to the weight of the two blocks while T₄ is only due to one block.
Option D is wrong because T₁ + T₂ > T₃ by simple summation of the two forces, except by vector addition.
Answer: Option B and C are True.

Explanation:  
The weight of the two blocks acts downwards.
Le
Physics
Step-by-step answer
P Answered by Master

Answer:

see below.

Step-by-step explanation:

To solve this problem, we can use the conservation of energy and conservation of momentum principles.

Conservation of energy:

The total initial energy is the rest energy of the proton and neutron, which is given by:

Ei = (mp + mn)c^2

where mp and mn are the masses of the proton and neutron, respectively, and c is the speed of light.

The total final energy is the rest energy of the deuteron plus the energy of the gamma ray, which is given by:

Ef = (md)c^2 + Eg

where md is the mass of the deuteron and Eg is the energy of the gamma ray.

According to the conservation of energy principle, the initial energy and final energy must be equal, so we have:

Ei = Ef

(mp + mn)c^2 = (md)c^2 + Eg

Conservation of momentum:

The total initial momentum is zero because the proton and neutron are at rest. The total final momentum is the momentum of the deuteron and the momentum of the gamma ray. Since the gamma ray is massless, its momentum is given by:

pg = Eg/c

where pg is the momentum of the gamma ray.

According to the conservation of momentum principle, the total final momentum must be equal to zero, so we have:

0 = pd + pg

where pd is the momentum of the deuteron.

Solving for md and pd:

From the conservation of energy equation, we can solve for md:

md = (mp + mn - Eg/c^2)/c^2

Substituting this expression into the conservation of momentum equation, we get:

pd = -pg = -Eg/c

Substituting the given values, we have:

mp = 1.6726 × 10^-27 kg mn = 1.6749 × 10^-27 kg Eg = 2.2 × 10^6 eV = 3.52 × 10^-13 J

Using c = 2.998 × 10^8 m/s, we get:

md = (1.6726 × 10^-27 kg + 1.6749 × 10^-27 kg - 3.52 × 10^-13 J/(2.998 × 10^8 m/s)^2)/(2.998 × 10^8 m/s)^2 = 3.3435 × 10^-27 kg

pd = -Eg/c = -(3.52 × 10^-13 J)/(2.998 × 10^8 m/s) = -1.1723 × 10^-21 kg·m/s

Therefore, the mass of the deuteron is 3.3435 × 10^-27 kg, and its momentum is -1.1723 × 10^-21 kg·m/s.

Physics
Step-by-step answer
P Answered by PhD

The question specifies the diameter of the screw, therefore the IMA of this screw is 0.812? / 0.318 = 8.02

Physics
Step-by-step answer
P Answered by PhD
Answer:
7.25 secs.

Explanation:
First find the distance it takes to stop
s = [v^2-u^2]/2a = 0^2 - 8.7^2/2[-2.4] = 8.7^2/4.8
Next find the time it takes to go that distance , s = ut +[1/2] at^2
8.7^2/4.8 = 8.7t +[1/2] [ -2.4]t^2 , rearrange and
t^2 -[8.7/1.2]+ 8.7^2/[(1.2)(4.8)]=0 complete the square
[t - (8.7/2.4)]^2=0
t = 8.7/2.4 = 3.625 secs
At this stage the deceleration will push the object back in the direction it came from for another 3.625 secs when it will be 8.7 m/s again
Total time , T =2t = 7.25 secs.

Note:
The term differential is used in calculus to refer to an infinitesimal (infinitely small) change in some varying quantity. For example, if x is a variable, then a change in the value of x is often denoted Δx (pronounced delta x). The differential dx represents an infinitely small change in the variable x.
Physics
Step-by-step answer
P Answered by PhD
The change in temperature is 9.52°CExplanation:Since, the heat supplied by the electric kettle is totally used to increase the temperature of the water.Thus, from the law of conservation of energy can be stated as:Heat Supplied by Electric Kettle = Heat Absorbed by WaterHeat Supplied by Electric Kettle = m C ΔTwhere,Heat Supplied by Electric Kettle = 20,000 JMass of water = m = 0.5 kgSpecific Heat Capacity of Water = C = 4200 J/kg.°CChange in Temperature of Water = ΔTTherefore,20,000 J = (0.5 kg)(4200 J/kg.°C) ΔTΔT = 20,000 J/(2100 J/°C)ΔT = 9.52°C
Physics
Step-by-step answer
P Answered by PhD
Weight of barbell (m) = 100 kg
Uplifted to height (h) = 2m
Time taken= 1.5 s
Work done by Jordan = potential energy stored in barbell = mgh
= 100×2×9.8
= 1960J
Power = energy/time
= 1960/1.5
1306.67watts

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