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PowerHouse Energy Group (STU:BT81) ROCE % : -29.25% (As of Jun. 2024)


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What is PowerHouse Energy Group ROCE %?

ROCE % measures how well a company generates profits from its capital. It is calculated as EBIT divided by Capital Employed, where Capital Employed is calculated as Total Assets minus Total Current Liabilities. PowerHouse Energy Group's annualized ROCE % for the quarter that ended in Jun. 2024 was -29.25%.


PowerHouse Energy Group ROCE % Historical Data

The historical data trend for PowerHouse Energy Group's ROCE % can be seen below:

* For Operating Data section: All numbers are indicated by the unit behind each term and all currency related amount are in USD.
* For other sections: All numbers are in millions except for per share data, ratio, and percentage. All currency related amount are indicated in the company's associated stock exchange currency.

* Premium members only.

PowerHouse Energy Group ROCE % Chart

PowerHouse Energy Group Annual Data
Trend Dec14 Dec15 Dec16 Dec17 Dec18 Dec19 Dec20 Dec21 Dec22 Dec23
ROCE %
Get a 7-Day Free Trial Premium Member Only Premium Member Only -457.57 -68.16 -4.02 -142.08 -17.54

PowerHouse Energy Group Semi-Annual Data
Dec14 Jun15 Dec15 Jun16 Dec16 Jun17 Dec17 Jun18 Dec18 Jun19 Dec19 Jun20 Dec20 Jun21 Dec21 Jun22 Dec22 Jun23 Dec23 Jun24
ROCE % Get a 7-Day Free Trial Premium Member Only Premium Member Only Premium Member Only Premium Member Only Premium Member Only Premium Member Only Premium Member Only Premium Member Only Premium Member Only Premium Member Only Premium Member Only Premium Member Only -3.53 -284.77 -31.64 -4.17 -29.25

PowerHouse Energy Group ROCE % Calculation

PowerHouse Energy Group's annualized ROCE % for the fiscal year that ended in Dec. 2023 is calculated as:

ROCE %=EBIT/( (Capital Employed+Capital Employed)/ count )
(A: Dec. 2023 )  (A: Dec. 2022 )(A: Dec. 2023 )
=EBIT/( ( (Total Assets - Total Current Liabilities)+(Total Assets - Total Current Liabilities) )/ count )
(A: Dec. 2023 )  (A: Dec. 2022 )(A: Dec. 2023 )
=-1.77/( ( (10.519 - 0.321) + (10.575 - 0.587) )/ 2 )
=-1.77/( (10.198+9.988)/ 2 )
=-1.77/10.093
=-17.54 %

PowerHouse Energy Group's ROCE % of for the quarter that ended in Jun. 2024 is calculated as:

ROCE %=EBIT (1)/( (Capital Employed+Capital Employed)/ count )
(Q: Jun. 2024 )  (Q: Dec. 2023 )(Q: Jun. 2024 )
=EBIT/( ( (Total Assets - Total Current Liabilities)+(Total Assets - Total Current Liabilities) )/ count )
(Q: Jun. 2024 )  (Q: Dec. 2023 )(Q: Jun. 2024 )
=-2.752/( ( (10.575 - 0.587) + (9.367 - 0.54) )/ 2 )
=-2.752/( ( 9.988 + 8.827 )/ 2 )
=-2.752/9.4075
=-29.25 %

(1) Note: The EBIT data used here is two times the semi-annual (Jun. 2024) EBIT data.

* For Operating Data section: All numbers are indicated by the unit behind each term and all currency related amount are in USD.
* For other sections: All numbers are in millions except for per share data, ratio, and percentage. All currency related amount are indicated in the company's associated stock exchange currency.


PowerHouse Energy Group  (STU:BT81) ROCE % Explanation

ROCE % can be especially useful when comparing the performance of capital-intensive companies. Unlike ROE %, which indicates the profitability of Shareholders Equity, ROCE % also considers long-term debt in Capital Employed. This can be helpful when analyzing companies with significant debt, as the result is neutralized by taking debt into consideration.

Generally speaking, a higher ROCE % indicates a stonger profitability for a company. Moreover, it is important to look at the ratio from a long term perspective. Investors tend to favor companies with stable and rising ROCE % trend over those with volatile ones.


PowerHouse Energy Group ROCE % Related Terms

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PowerHouse Energy Group Business Description

Traded in Other Exchanges
Address
Unit 3/3a Garth Drive, Brackla Industrial Estate, Bridgend, Wales, GBR, CF31 2AQ
PowerHouse Energy Group PLC designs non-recyclable waste regeneration facilities to produce electricity, heat, and gases such as hydrogen and Syngas (Synthetic natural gas), whilst removing carbon from the ecosystem. It provides associated engineering and testing services and customer support for the lifetime of the facility. Its offering includes its Distributed Modular Generation (DMG) product platform for the thermal treatment of waste streams, converting it to a synthesis gas, which can then be processed further as required. It generates the majority of revenue from Engineering and related services and includes Exclusivity fees and others.

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