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Thepotemich [5.8K]
3 years ago
10

A solution has a pH of 2. Which best describes the solution?

Physics
2 answers:
seraphim [82]3 years ago
6 0

Answer:

The answer is a Strong acid btw I took the test its right

Explanation:

PH is a scale that measures the acidity or nativity of any substance being tested. PH is mostly usually carried out in aqueous solutions also.

The scale is from 1 - 14, with 7 being neutral. A solution with a PH of 7 is said to be chemically neutral. On the other hand, a solution with a PH of 2 is tagged as a strong acid. This is so, because on the scale, the more closer you move to 1, the acidity of such solution increases and the more you move to 14, it's basicity reduces. And as such, only solutions with a PH value of 1 are stronger than that of 2.

Example of a solution with a PH of 2 is a lemon juice.

bulgar [2K]3 years ago
3 0

Answer:

A strong acid

Explanation:

PH is a scale that measures the acidity or nativity of any substance being tested. PH is mostly usually carried out in aqueous solutions also.

The scale is from 1 - 14, with 7 being neutral. A solution with a PH of 7 is said to be chemically neutral. On the other hand, a solution with a PH of 2 is tagged as a strong acid. This is so, because on the scale, the more closer you move to 1, the acidity of such solution increases and the more you move to 14, it's basicity reduces. And as such, only solutions with a PH value of 1 are stronger than that of 2.

Example of a solution with a PH of 2 is a lemon juice.

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A typical 12-V car battery can deliver about 750,000 C of charge before dying. This is not a lot of charge. As a comparison, cal
dimaraw [331]

Answer:

3.982 kg

Explanation:

The latent heat of vaporization = 540 cal/g

= 5.4 ×10⁵ cal/kg

L = 5.4 ×10⁵ × 4.19

  = 2.26 × 10⁶ J/kg

Q = 12 × 750,000

= 9, 000, 000

= 9 × 10⁶ J

the maximum number of kg of water (at 100 degrees Celsius) that could be boiled into steam (at 100 degrees Celsius) is:

= \frac{ 9*10^6}{2.26*10^6 }

= 3.982 kg

6 0
4 years ago
Suppose you drop a tennis ball from a height of 6 feet. After the ball hits the floor, it rebounds to 80% of
sasho [114]
The formula to solve this is (.80)^3 X 6 and the answer would be 3.1 feet. That is how high the ball will rebound after its third bounce. Thank you for posting your question. I hope that this answer helped you. Let me know if you need more help. 
3 0
3 years ago
Read 2 more answers
For what angle of incidence at the first mirror will this ray strike the midpoint of the second mirror (which is s=29.0cm long)
Lesechka [4]

The question is missing a diagram of the ray reflection. I attached a diagram which comes from a similar question in the answer section. The full question should be as follows:

Two plane mirrors intersect at right angles. A laser beam strikes the first of them at a point d = 10.0cmfrom their point of intersection, as shown in the figure. For what angle of incidence at the first mirror will this ray strike the midpoint of the second mirror (which is s=29.0cm long) after reflecting from the first mirror?

Answer:

34.6°

Explanation:

To strike the midpoint of the second mirror, the ray light will have to travel half of the distance vertically

i.e. 29/2 = 14.5

We can solve this through trigonometry.

Let the angle between the ray and the vertical plane mirror is known as α

tan α = 10/14.5

α = tan^{-1} (10/14.5) = 34.6°

The angle of incidence is the angle between the ray and the normal line of the mirror.

Let angle of incidence of first mirror be β

β = α = 34.6

6 0
3 years ago
Which term describes the forces acting on the car? A. inertial B. buoyant C. balanced D. unbalanced
Anna35 [415]
The answer is unbalanced because the forces actually act on each other.
3 0
4 years ago
A car is 200 m from a stop sign and traveling toward the sign at 40.0 m/s. At this time, the driver suddenly realizes that she m
Zinaida [17]

Answer:

4.17 m/s²

Explanation:

We are told the reaction time is 0.2 s. Now, during this reaction time the car is going to travel an additional distance of : x = u × t = 40 × 0.2 = 8 m

where u is the initial velocity of the car which is 40.0 m/s.

We are told that he had 200 m to stop before applying brakes. Thus, after applying brakes, he now has a distance to cover of; s = 200 - 8 = 192 m

Since vehicle is coming to rest acceleration would be negative, thus using Newton's equation of motion, we have;

v ² = u² - 2as

v = 0 m/s since it's coming to rest

u = 40 m/s

s = 192 m

Thus;

0² = 40² - 2(a)(192)

0² = 1600 - 384a

a = 1600/384

a = 4.17 m/s²

6 0
3 years ago
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