Understanding Depreciation Recapture

What is Depreciation Recapture

This accounting and tax method refers to a treatment used by the Internal Revenue Service (IRS) to obtain tax remittances on sales of depreciated property. Understanding how it works is essential for filers to make the most of it.

Required Conditions

As property depreciates, its value declines. When depreciated assets are sold, it’s able to be filed as ordinary income as long as the transaction’s price is above the property’s adjusted cost basis. The gap between the sales price and its adjusted cost basis must be filed as a component of the individual’s ordinary income.

Defining Adjusted Cost Basis

Adjusted Cost Basis = Asset’s Purchase Price + Improvements – Depreciation Deductions

Per Internal Revenue Code Section 1016, this calculation factors in both lower depreciation rates and improvement additions, resulting in the asset’s net cost.

Illustrating Adjusted Cost Basis

If an asset purchase price is $75,000, and it’s depreciated annually over six years, its adjusted cost basis is as follows: $75,000 – ($3,000 x 6) = $57,000.

If, however, the asset is sold for less compared to its adjusted cost basis, the transaction’s gain should be filed as a capital gain and not ordinary income. When it comes to calculating depreciation recapture, the adjusted cost basis is incorporated into the calculation as follows:  

Property Acquisition Cost: $750,000

Six annual deductions for depreciation: $7,000

Amount the assets are sold for in year 7: $740,000

Tax Rate of 25 percent for depreciation recapture

20 percent tax rate of capital gains

Therefore, adjusted cost basis equals = $750,000 – ($7,000 x 6) = $708,000

When calculating the gain on the sale, the resulting amount is calculated as follows:

= $740,000 – $708,000 = $32,000

Based on the owner(s) of the assets, the $32,000 will be reported as ordinary income. The depreciation recapture tax of 25 percent on the $32,000 will be $8,000 ($32,000 x 25 percent).

Be mindful if the $32,000 is more than the full depreciation deductions filed for by the taxpayer, the depreciation recapture will match how much depreciation is deducted and must be taxed as ordinary income. The balance will be taxed as a capital gain.

Assume everything from the first calculation is the same, but now the same asset is sold for $940,000.

Property Acquisition Cost: $750,000

Six annual deductions for depreciation: $7,000

Amount the asset is sold for in year 7: $940,000

Tax Rate of 25 percent for depreciation recapture

20 percent tax rate of capital gains

The adjusted cost basis will remain $708,000

In this example, since the asset owner’s gain is $190,000 ($940,000 – $750,000), only the depreciation deduction of $42,000 ($7,000 x 6 years of depreciation) will be reported as ordinary income since it’s the complete sum of the depreciation deductions. The balance of $148,000 ($190,000 – $42,000) will be taxed at the capital gains rate. The calculations for taxes are calculated as follows:

Depreciation recapture: $42,000 x 25 percent = $10,500

Capital gains calculation: $148,000 x 20 percent = $29,600

Additional Considerations

It’s important to consider that if an asset has been held for fewer than 12 months, gains from property sales are taxed as ordinary income. Depending on the circumstances, if an asset is sold for a loss, depreciation recapture isn’t applicable; however, Internal Revenue Code Section 1231 may provide exceptions to treat it as an ordinary loss tax treatment.

While each business’ transactions are different, when the entity is eligible, it can provide another way to navigate their federal taxes efficiently. As always, contact a professional for more personalized guidance.

Understanding Horizontal Analysis

Understanding Horizontal Analysis, What is Horizontal Analysis

Horizontal Analysis provides businesses a method to examine financial statement entries by looking at the documents’ number for a specific accounting time frame compared to the same length of a historical period for the same accounting line item.

Breaking the Process Down

It’s a way to measure trends and variances by looking at the current year’s values versus the reference year. This helps an analyst figure out if the values increase or decrease. It’s either done on an absolute value or a percentage change basis. The analysis provides a company’s growth and financial position against competitors.

This method is different compared to vertical analysis because vertical analysis looks at a single reporting period and measures the proportional relationship between items, compared to horizontal analysis evaluating multiple periods and multiple ratios for a more comprehensive approach.

Generally Accepted Accounting Principles (GAAP) require uniform and standardized financial statements for adequate financial statement analysis. This entails consistent accounting practices and fundamental principles being employed annually. Comparability constraints mandates that the business’ financial statements are in a form that permits analysts to evaluate them against other competitors in the same field. This is where horizontal analysis comes into play, creating consistency.  

This analysis determines what impacts a company’s growth over time. For cyclical or seasonal companies, it lets analysts get a handle on what’s normal and what’s not. It also permits identification of variances in different product/business segments and how to project a company’s future performance.

Along with the three financial statements (balance sheet, cash flow statement, and income statement) providing working outcomes, it can similarly identify issues and strengths by looking at certain metrics like profit margins or the rate of inventory changing hands.  

If a company reports higher earnings per share due to increases in revenue or lowers its figures of the COGS (cost of goods sold), analysts looking at the interest coverage ratio or cash flow-to-debt ratio, for example, can use horizontal analysis to gauge if a business has enough liquidity for continued operations.

Real World Example of Horizontal Analysis

Let’s say Company X had revenue of $100 million in the previous year and accounts receivable of $200 million during the “base year.” This is compared to revenue of $300 million in the present year and accounts receivable of $600 million. Based on these numbers, the calculations are as follows:

Revenue Comparison

[($300 million – $100 million)/$100 million)] x 100 = 200 percent

Accounts Receivable

[($600 million – $300 million)/$300 million)] x 100 = 100 percent

When it comes to interpreting horizontal analysis, the process needs context to ensure it’s used appropriately. The most prominent consideration is understanding what contributed to the base year’s numbers and the current year’s numbers. Did the company sell off a segment that increased profitability, or did they face massive lawsuits or spend excessive amounts of capex to ensure their viability and competitiveness in the upcoming years?

The calculation is straightforward, but being able to delve into what happened – and why – is the role of the business owner and investor to determine the true health of the business.

Understanding the EV/2P Ratio

What are the EV/2P Ratio

When it comes to raw materials, especially for fossil fuels, it’s essential to evaluate existing and potential production capabilities for such companies. Using the EV/2P Ratio is a powerful tool when evaluating fossil fuel-related companies.

Defining the Ratio

This ratio is calculated by dividing a business’ enterprise value into the company’s reserves. It provides financial analysts, investors and internal business stakeholders with a snapshot of a company’s reserves and the business’ likelihood of preserving operation growth. This standardizes valuations, thereby allowing analysts to compare company-to-company financials.

How to Calculate EV/2P

Enterprise Value (EV) / Total 2P Reserves

Defined as: Enterprise Value = Equity (open market price) + Debt (open market price) – Cash and Cash Equivalents

2P = Proven and Probable Reserves

Illustrating the Calculation

If a company’s capitalization is $300 million and debt consisting of $225 million, along with $30 million for proven reserve value, $20 million in probable reserves, and $25 million in possible reserves, the company’s resulting enterprise value becomes:

$300 million + $225 million = $525 million

The 2P reserves is:

$30 million + $20 million = $50 million

Plugging the numbers into the original formula, it’s: $525 million / $50 million = 10.5x (multiple)

Based on the resulting 10.5 multiple, this ratio provides a current valuation that translates to for every $1 in 2P reserves equals $10.50 of a market valuation.

Reserves are how internal/external stakeholders value the production/growth potential of oil/gas companies. It’s broken down into two categories:

1.) P1 are proven reserves, which are the highest caliber reserves. There’s at least a 9 in 10 percent likelihood (or more) of recoverable reserves. It’s also known as P90.

2.) Probable reserve (also known as P50) has an even chance of either non-recoverability or realized recoverability. This is the next best, but a lesser grade than P1.

These two resource categories are referred to as 2P.

Putting it in Perspective

Depending on the company’s calculated EV/2P Ratio, the business owner or investor can determine a course of action to take.

If it’s higher, it’s more highly valued than its competitors based on the same level of 2P reserves; therefore, the company’s shares are more expensive against its peers. This can give investors pause because other undervalued stocks are more attractive due to a higher likelihood they’ll appreciate.

However, if a company is valued higher, but the company is more efficient or a higher performer, investors also may be interested because its production and earnings justify the higher valuation. That’s why looking at the metric in a silo is not effective.

Debt Concerns

When it comes to debt and analyzing this ratio, fossil fuel businesses are often highly levered since they use massive sums of debt for research and development and continued operations.

Since the EV value looks at debt and equity concurrently, analyzing a company’s capital structure is essential when comparing companies’ valuations. Essentially, if a company has too much debt and if interest rates suddenly increase or it can’t service debt if the price of crude plummets, it may run into debt servicing issues.

While this ratio is effective in providing a level playing field for analytical uses, it’s important to remember that it needs to be used in conjunction with comprehensive financial analysis.

Version 6

Understanding Cash EBITDA

What is Cash EBITDA

While Cash EBITDA isn’t recognized by generally accepted accounting principles (GAAP), it’s a way for company owners and investors to account for deferred revenue during valuation modeling. This financial metric measures a business’ year-over-year change in postponed revenue to analyze a company’s financial situation.

Defining EBITDA

Before Cash EBITDA is defined, EBITDA must be defined.

EBITDA = earnings before interest, taxes, depreciation, and amortization

This metric is used quite often in financial analysis. Business owners, investors and financial analysts use this metric to examine different companies’ fiscal achievements against sector competitors and to determine the business’ profits from its core functions. 

Since financial statements are required by the U.S. Securities and Exchange Commission (SEC) and financial analysts are presented with varied filings, it still needs to be standardized for analysis. Though it’s not GAAP recognized, EBITDA and adjusted EBITDA are often reported by companies that can make peer-to-peer businesses easier to compare financials.

Some believe it’s not the best comparison due to many factors, including varying tax profiles, capital structures, and capitalization policies that affect net income. It’s important to be mindful that EBITDA doesn’t give any details regarding how a business’ working capital varies with its reinvestment into a business’ capital expenditures.

Some say EBITDA overstates profitability. Others believe EBITDA doesn’t factor in the cost of assets in evaluating profitability. For example, if two companies have the same EBITDA, but one is highly levered, the company with no to little debt is in better shape. 

Determining EBITDA

The income statement has tax expenses, net income, and interest expenses on it. If not found on the cash flow statement, the depreciation and amortization figures may be found on the financial statement footnotes. While EBITDA is a start, further refinement of EBITDA by using Cash EBITDA is a better financial definition.

Calculating Cash EBITDA

It’s important to account for deferred revenue properly. Since deferred revenue is revenue remitted in advance for products or services to be delivered at a future date, and revenue is recorded on the income statement when fulfillment happens, Cash EBITDA helps businesses and investors obtain a better picture of a company’s financial situation.

The deferred revenue or prepayment is recorded as a liability since the product or service hasn’t been delivered. Once fulfillment has occurred, it’s recognized as income. Therefore, it’s calculated as follows:

Cash EBITDA = TTM EBITDA + Year-over-Year Change in Deferred Revenue 

TTM EBITDA is the 12-month trailing EBITA. Also referred to as last twelve months (LTM), it’s the immediate 12 months of operating earnings. This way, the figure can be updated on a monthly or quarterly basis as the company adds new accounts.

The second component, derived from the balance sheet, is the annual change in deferred revenue.    

This formula is important and useful because if a new client is booked in the first three months of the year, and during a valuation analysis, if Cash EBITDA isn’t calculated, it would skew the valuation since it wouldn’t include new accounts.        

While GAAP is an important institution in the accounting and financial industry, businesses and investors that use well-regarded financial metrics beyond GAAP standards can make better-informed decisions.

Understanding Qualifying Dispositions

Understanding Qualifying Dispositions

With 57 percent of public companies offering their workers employee stock purchase plans (ESPPs), according to the National Association of Stock Plan Professionals (NASPP), understanding how qualifying dispositions work is an essential skill.

The concept refers to someone selling or otherwise “disposing” of equities who sees advantageous tax benefits. This is especially pronounced when a stockholder’s normal tax income rate differs markedly from prevailing tax rates for long-term investments.

Eligible individuals are those employed by a company that offers such a benefit. There are two different options available for worker participation.

The first option is where employees participate in the ESPP. The second option is through an incentive stock option plan (ISOs). It’s noteworthy to distinguish that the ESPP is for most employees employed after a particular time at a company. However, ISOs are reserved primarily for senior management and executives, such as chief financial officers (CFOs), chief executive officers (CEOs), etc.  

What determines if it’s a qualifying disposition is how long the employee keeps the equities prior to the sale.

ESPP Example

If 100 shares are acquired via ESPP, bought via a 10 percent discount to the prevailing offer of $40, the purchase of 100 shares of stock at $36 equals $3,600. If the stock appreciates to $60 in the future, the difference (and capital gain) would be $2,400 in profits ($6,000 – $3,600).

Qualifying Disposition Example

This scenario breaks down how the discount and, ultimately, how capital gains are treated.

The discount of $4 per share is taxed at the employee’s present wage rate. Depending on the tax rate the employee is taxed at, the liability would be ($4 a share, multiplied by 100, times the tax rate of 30 percent or $120).

Using the ESPP example’s figures, the long-term gain of $24 per share (times 100 shares) is taxed based on the lesser rate of say 15 percent. ($3.60/share times 100 = $360).

Therefore, the entire taxes owed end up being $120 + $360 = $480.

Non-Qualifying Disposition Example

However, for stock liquidations not meeting qualifying disposition criteria, the $2,400 would see a 35 percent capital gains tax ($2,400 multiplied by 35 percent = $840).

Based on the qualifying versus non-qualifying distribution scenarios, the difference of $360 in capital gains savings represents a stark contrast in tax obligations. Therefore, it’s important to determine how to meet a qualifying disposition.

It requires the following criteria to be met. The stock sale date must occur at a minimum of 12 months from the stock purchase date. It also must be held for at least 24 months from the ESPP offer date or the ISO stock warrant date.

While transactions may differ in the quantity of shares sold and for how much, the timing for workers selling the shares is far less variable. It is important for employers to ensure workers are familiar with the tax implications.

 

Sources

https://www.naspp.com/blog/five-trends-in-espps

Understanding the Equity Multiplier

What is Equity Multiplier

Whether you are an investor, an owner, or an internal financial analyst, understanding how the equity multiplier works and how to interpret it is a helpful skill.

Defining the Equity Multiplier

The equity multiplier is a metric that tells the user what percentage of the company’s assets are loaned against shareholders’ equity. The smaller the calculated number for the equity multiplier, the less risky the financing is due to less debt owed by the company. It’s more favorable since there are lower debt servicing costs needed. When liabilities and/or assets change, the company’s equity multiplier changes.

Conversely, the bigger the equity multiplier, the more likely investors will be exposed to financial risk. This is due to the company having more outstanding debt, requiring more cash flows to service ongoing debt repayment, along with normal operations. A good rule of thumb is that anything lower than 2 is good, while anything higher than 2 signifies risk.

Putting It into Context

Since companies obtain financing through a mix of equity, debt, or both, it’s important to measure and monitor how the combination changes over time. Since investors look at the metric, among other financial yardsticks, it can influence how they determine if a company is worth investing in. Investors compare one company to others in the same industry and against historical measures to see how the company rates financially. The equity multiplier is measured relative to past measures, industry standards, or its sector competitors.

The ratio is calculated as follows:

Equity Multiplier = Total Assets / Total Shareholders’ Equity

Both input values are found on the company’s balance sheet, either on the quarterly or annual reports filed with the United States Securities and Exchange Commission.

If a company wants to go public, it can calculate this ratio to determine if its present results are robust for lenders’ review. Say a company has $2 million in total assets and $1.25 million in shareholders’ equity. Based on these numbers, it’s calculated as follows:

= $2,000,000 / $1,250,000 = 1.6  

The equity multiplier in this scenario, which shows a moderate amount of borrowing, may or may not pose an issue for the company’s financial health.

If a business’ total assets are $450 billion, and shareholders’ equity, according to the financial statements, was $150 billion, the company’s ratio is 3X ($450 / $150).

If a different company’s assets are $825 billion with $165 billion of shareholders’ equity, the same resulting ratio is 5X ($825 / $165).

These calculations show that as the ratio of liabilities and asset values adjusts, the equity multiplier also changes because a company uses less debt and more shareholders’ equity to finance the assets. While higher equity multipliers can help companies grow faster, especially during low interest rate and high-growth environments, if borrowing costs rise and/or sales fall dramatically, it can forecast negative growth. Investors favor businesses with low equity multipliers since this indicates the company is using more equity and less debt to finance the purchase of assets.

Regardless of the company or the industry, understanding how the ratio is calculated and used in making investment decisions makes sense for both companies and their potential investors.

Defining An Activity Cost Driver

Defining An Activity Cost Driver, What is An Activity Cost Driver

An activity cost driver is anything that causes a company’s variable costs to either reduce or grow. Since measuring an activity cost driver is a way to streamline the administration of managing production costs, it’s an integral part of activity-based costing.

Examples of activity-cost drivers are warehouse expenses, modifying engineering designs, and retooling, setup, and maintenance costs for machining needs. This can include higher warehouse expenses due to increased rents or leases, which add to the final amount of the product or service’s sales price. Machining costs include initial setups for initial production and ongoing maintenance costs for continued runs. If production needs to be re-engineered to different production parameters, those professional revision costs need to be added to the ultimate product or service cost calculations.

These cost drivers are used as a starting point to project the business’ operational and profitability goals through the use of activity-based costing (ABC), a type of managerial accounting.

ABC accounting is a way to determine the expenses of each output by looking at the inputs used during the company’s operations, be it power for the machinery, Information Technology (IT) needs, or labor.

It’s important to know that one variable expense can impact multiple single activity cost drivers. For example, wage costs and machining expenses can be identified as activity cost drivers in connection with production. The first step is looking at how ABC accounting can determine indirect costs.

Activity-Based Costing Illustration

A business wants to look at how its production space and its lease or real estate and property tax costs are attributable to individual widgets or services, based on the percentage dedicated to the respective product or service. If it’s not allocated properly, determining sales prices and profitability can be negatively impacted.

If a company has two product lines with the same retail prices and production quotas, with direct costs of $700 and $250, it’s important to see how the production area for each product impacts the company’s overall operations. If the first item uses 40 percent of the production area and the second item uses 60 percent of the production area, and the rent is $1,500, the rent needs to be factored in. The first item would see an additional cost of $600 plus the original $700, or a total of $1,300. The second item’s cost would be $900 for the rent and $250 for the item, or a total of $1,150. While the initial direct cost for the first item seems higher than the second item, when factoring in all costs, this time it’s still true – but that’s not always the case.

Once this has been established, and then a company receives a new order, the following illustrates how measuring an activity cost driver, such as performing maintenance on machines after a production run, will cost the company to have it ready for their next order. If it costs a company $200 for machine maintenance and it produces 1,000 widgets, a $0.20/widget cost would be factored into margins and retail pricing.

While this provides an overview of how activity cost drivers work, it is part of a comprehensive approach to how businesses measure their margins and ultimately profitability. 

How to Account for Accretion

What is Accretion?

Whether it’s an individual investor or a business owner looking to increase their earning power, understanding how accretion works is essential for individual and business investors to make the correct decisions going forward.

How Accretion Works for Bonds

Accretion is the gradual increase of a bond’s value over time. As a bond moves toward its maturity date, it increases in value until it reaches its face or par value – or what’s paid to the bondholder upon maturity.

If a bond has a face value of $2,000, yet it’s discounted at $1,900 when it’s offered for sale, the present value of the bond is $1,900, leaving the difference of $100 as the discount. Between the time of purchase and when it matures, the value of the bond will appreciate, up to its par value of $2,000. As the bond increases in value, this is referred to as an accretion discount. 

When it comes to accounting for bond accretion, there are two common methods.

Straight-Line Method

This approach documents the bond’s appreciated monetary gain and is laid out equally over the bond’s time frame until maturity. For a bond with a term of 10 years and a business that publishes its earnings once a quarter, there are 40 earnings releases.

If there’s a $100 discount, spread across 40 quarters, that is $2.50 every three months. The $2.50 is the quarterly accretion until the bond matures.

Constant Yield Method

This method is different from the straight-line method in that the bond’s value appreciation increases in value closer to the bond’s maturity date.

Acquisitions and Accretion

Companies can also benefit from accretion. Through the concept of synergy, where there’s more output from combining multiple entities than the sum of them if still separate, an acquiring company adds the earnings before interest, taxes, depreciation, and amortization (EBITDA), for example, to add to its existing shareholders’ value.

Illustrating How it Works

If Company X wants to increase its earnings per share for its shareholders, an acquisition is one way to do so. Assume Company X earned $1 million in net income the preceding year and has 3 million shares. And then there is Company Z, which had $500,000 in net income over the same time frame, with 1 million shares issued to raise cash. The following is a way to calculate the acquisition accretion value of the new combined company.

Earnings Per Share of Company X: 1,000,000 / 3,000,000 = 0.33

Earnings Per Share of the new company post-acquisition: ($1,000,000 + $500,000) / (3,000,000 + 1,000,000) = $1,500,000 / 4,000,000 = 0.375

Based on the calculation, the earnings per share of the post-acquisition company are $0.375. Compared to the EPS for the original, pre-acquisition Company X, the post-acquisition company is $0.045, resulting in a positive acquisition accretion.

Whether an individual investor is looking to see how bond accretion works or a company is looking at whether an acquisition makes business sense, understanding how accretion works is essential to ensure it’s accounted for properly.

4 Common Liquidity Ratios in Accounting

One way a business can manage its books and viability in the near and long terms is to see how liquid its assets are. Businesses that have better cash positions are naturally geared toward sustaining continued success. One important reason for a business to measure and maintain healthy levels of liquidity is because it promotes better odds that a company will be able to satisfy its short-term debts. There are many ways business can accomplish this, and below are four common ways it can be done.

Current Ratio

One of the few liquidity ratios is what’s known as the current ratio. It’s a way to determine how well a company can pay back its debts.

The current ratio is also known as the “working capital ratio,” showing how well a business can satisfy financial obligations that must be paid back within 12 months. Using an example is a good way to see how it works:

Let’s assume a company has the following assets, it would use the following ratio:

Current Ratio = Current Assets / Current Liabilities

Marketable Securities such as stocks, bonds or purchase agreements maturing in 12 months or less can be considered a current asset. Businesses may also consider cash, accounts receivable, prepaid expenses, office supplies and saleable inventory they have in stock as current assets.

Outstanding bills or accounts payable and short-term debt – within the next 12 months as described above – are considered current liabilities. Other expenses can be interest payable, income and payroll taxes payable, which can also be considered current liabilities.

If the current assets of a business are $250 million, and that is divided by current liabilities of $75 million, the Current Ratio would be 250 / 75, or 3.33

With a current ratio of 3.33, the company is in good financial health because it can pay off its debts easily.

Acid-Test Ratio

The Acid-Test Ratio determines how capable a company is of paying off its short-term liabilities with assets easily convertible to cash.

Also known as the quick ratio, the formula is as follows:

Acid-Test Ratio = Current Assets – Inventories / Current Liabilities

Current assets consist of cash and similar assets (savings/checking accounts, deposits becoming liquid in three months or less), marketable securities and accounts receivable. From there, the summation is divided by the company’s current liabilities expected to be paid in 12 months.

The other way to calculate the acid-test ratio or quick ratio is as follows:

The first step is to look at the company’s current assets that can be liquidated within 12 months. Then inventory must be valued – that which is intended to be sold for purchase. From there, the inventory value is subtracted from the current assets. The resulting value is then divided by the business’ current liabilities.

The acid-test ratio is one way to determine a company’s ability to satisfy current liabilities without selling inventory or getting more lending. With the uncertainty and profitability of selling inventory, one can argue that it gives a better picture of a company’s financial fitness.

For example, if a company comes out with a ratio of 3, this means that a business has $3 for every $1 of liabilities. However, as a company’s quick ratio increases, it might show there’s too much money not being reinvested to increase the company’s efficiency and profitability. A higher quick ratio figure can also indicate that there are too many accounts receivable that are owed but uncollected by the company.

Cash Ratio

As the name implies, the cash ratio determines how financially able a company is to satisfy short-term liabilities with cash and cash equivalents.

Also referred to as the cash asset ratio, this tells how capable a business is of satisfying short-term debts, usually 12 months or less, with cash and cash equivalents only. This ratio is as follows:

Cash Ratio = Cash and Cash Equivalents / Current Liabilities

Examples of cash and cash equivalents include physical currency, minted coins and checks. Cash equivalents include money market accounts, Treasury bills and anything that can be converted into cash in almost real-time.

When it comes to current liabilities, accrued liabilities, short-term debts and accounts payable are examples that are due within one year.

From there, the ratio is as follows to determine a company’s cash asset ratio:

Cash and Cash Equivalents (Cash: $25,000 + Cash Equivalents: $100,000) / Liabilities (Accounts Payable: $30,000 + Short-term debt: $25,000)

$125,000 / $55,000 = 2.27

Based on this calculation, the company would be able to pay off 227 percent of present liabilities with its cash and/or cash equivalents. For creditors and investors evaluating a company, it can show the company has ample liquidity. Creditors are naturally more willing to lend to companies with more cash flow; and investors are interested to see how liquidity is being managed.

Operating Cash Flow Ratio

This ratio measures how efficiently a business can meet present liabilities from the cash flow of its core business operations. It tells a company the number of times over it can satisfy its liabilities based on the amount of cash it generated over a certain time-frame.

This ratio can also include accruals, giving a fair estimate of a business’ short-term liquidity. The formula to determine this ratio is as follows:

Operating Cash Flow Ratio = Cash Flow from Operations / Current Liabilities

The statement of cash flow is where the operation’s cash flow is found. It can also be calculated by determining a company’s net income, plus non-cash expenses, plus working capital changes.

Current liabilities are defined as financial obligations due within the next 12 months. Common ones are accrued liabilities, accounts payable and/or short-term debt.

Once the operating cash flow ratio is calculated, a company’s financial health can be determined. If the ratio is 1.5 or 2, for example, it means the company can cover 1.5 times or double its present liabilities. However, if the ratio is less than 1, then the amount of cash generated from operations is insufficient to satisfy short-term liabilities.

As part of a comprehensive accounting practice, businesses that run these ratio calculations will be able to identify where there’s too little or too much liquidity and reduce current and future financial peril.