/*! This file is auto-generated */ .wp-block-button__link{color:#fff;background-color:#32373c;border-radius:9999px;box-shadow:none;text-decoration:none;padding:calc(.667em + 2px) calc(1.333em + 2px);font-size:1.125em}.wp-block-file__button{background:#32373c;color:#fff;text-decoration:none} Problem 81 As an instructor is preparing fo... [FREE SOLUTION] | 91Ó°ÊÓ

91Ó°ÊÓ

As an instructor is preparing for an experiment, he requires 225 g phosphoric acid. The only container readily available is a 150-mL Erlenmeyer flask. Is it large enough to contain the acid, whose density is 1.83 g/mL?

Short Answer

Expert verified
Yes, the Erlenmeyer flask is large enough to contain the acid, as it can hold 150 mL, whereas only 122.95 mL is needed for 225 g of phosphoric acid (density = 1.83 g/mL).

Step by step solution

01

Calculate the volume of phosphoric acid needed

To find the volume of phosphoric acid, use the density formula: Density = mass/volume. Rearrange it to find the volume, so the volume = mass/density. Insert the given values, volume = 225 g / 1.83 g/mL.
02

Perform the calculation

Divide the given mass of the phosphoric acid by its density to calculate the volume in mL. So, volume = 225 g / 1.83 g/mL = 122.95 mL.
03

Compare the volume with flask capacity

Now compare the calculated volume of phosphoric acid (122.95 mL) with the volume capacity of the Erlenmeyer flask (150 mL). If the calculated volume is less than the flask capacity, the flask is large enough to contain the acid.

Unlock Step-by-Step Solutions & Ace Your Exams!

  • Full Textbook Solutions

    Get detailed explanations and key concepts

  • Unlimited Al creation

    Al flashcards, explanations, exams and more...

  • Ads-free access

    To over 500 millions flashcards

  • Money-back guarantee

    We refund you if you fail your exam.

Over 30 million students worldwide already upgrade their learning with 91Ó°ÊÓ!

Key Concepts

These are the key concepts you need to understand to accurately answer the question.

Chemical Density
Understanding the concept of chemical density is crucial in various fields of chemistry, especially when mixing substances or determining their purity. Density is defined as the mass of a substance divided by its volume. It is usually expressed in grams per milliliter (\( g/mL \) for liquids) or grams per cubic centimeter (\( g/cm^3 \) for solids). High-density substances are generally heavier for their size, whereas low-density substances are lighter. For instance, when you need to determine if a container can hold a certain chemical without overflowing, knowing the density of the chemical is critical. In the exercise, the instructor uses the density of phosphoric acid to decide whether a 150-mL Erlenmeyer flask can hold 225 g of the substance without pouring over.
Erlenmeyer Flask Volume
In chemistry labs, Erlenmeyer flasks are commonly used due to their conical shape and flat bottom, which make them stable and suitable for mixing contents by swirling without the risk of spillage. The capacity or volume of an Erlenmeyer flask is typically marked on the container, representing the maximum volume of liquid the flask can hold.When working with such equipment, it's essential to understand their volume capacity to avoid overfilling, which can lead to inaccurate measurements or messy spills. For the given problem, knowing that the Erlenmeyer flask can hold up to 150 mL provides the information needed to decide if it's large enough for the 225 g of phosphoric acid, as determined by the chemical's density and the necessary mass-to-volume conversion.
Mass to Volume Conversion
Mass to volume conversion in chemistry is an essential skill that allows chemists to convert between the weight of a substance and the space it occupies, using density as the conversion factor. Since density is mass per unit volume, by rearranging the equation, you can easily calculate the volume of a mass of substance, provided its density is known.In our exercise, the instructor uses mass to volume conversion to find out the volume that 225 g of phosphoric acid would occupy. By dividing the mass of the acid by its density (\( \frac{mass}{density} \) = volume), the instructor can then compare this volume to the volume of the Erlenmeyer flask. This is a practical application of the conversion that ensures accuracy and safety in the lab.

One App. One Place for Learning.

All the tools & learning materials you need for study success - in one app.

Get started for free

Most popular questions from this chapter

Write conversion factors (as ratios) for the number of: (a) yards in 1 meter (b) liters in 1 liquid quart (c) pounds in 1 kilogram

How does a heterogeneous mixture differ from a homogeneous mixture? How are they similar?

Solve these problems about lumber dimensions. (a) To describe to a European how houses are constructed in the US, the dimensions of "two-by-four" lumber must be converted into metric units. The thickness \(\times\) width \(\times\) length dimensions are 1.50 in. \(\times 3.50\) in. \(\times 8.00 \mathrm{ft}\) in the US. What are the dimensions in \(\mathrm{cm} \times \mathrm{cm} \times \mathrm{m} ?\) (b) This lumber can be used as vertical studs, which are typically placed 16.0 in. apart. What is that distance in centimetres?

Osmium is one of the densest elements known. What is its density if 2.72 g has a volume of \(0.121 \mathrm{cm}^{3} ?\)

As stated in the text, convincing examples that demonstrate the law of conservation of matter outside of the laboratory are few and far between. Indicate whether the mass would increase, decrease, or stay the same for the following scenarios where chemical reactions take place: (a) Exactly one pound of bread dough is placed in a baking tin. The dough is cooked in an oven at \(350^{\circ} \mathrm{F}\) releasing a wonderful aroma of freshly baked bread during the cooking process. Is the mass of the baked loaf less than, greater than, or the same as the one pound of original dough? Explain. (b) When magnesium burns in air a white flaky ash of magnesium oxide is produced. Is the mass of magnesium oxide less than, greater than, or the same as the original piece of magnesium? Explain. (c) Antoine Lavoisier, the French scientist credited with first stating the law of conservation of matter, heated a mixture of tin and air in a sealed flask to produce tin oxide. Did the mass of the sealed flask and contents decrease, increase, or remain the same after the heating?

See all solutions

Recommended explanations on Chemistry Textbooks

View all explanations

What do you think about this solution?

We value your feedback to improve our textbook solutions.

Study anywhere. Anytime. Across all devices.